.

.
marylin monroe
Showing posts with label rest. Show all posts
Showing posts with label rest. Show all posts

Adelfo Cerame - Road to Wheelchair Nationals '12: Getting Ripped For Christmas! Plus, Taking a Week Off Takes Some Courage, But Believe Me - It Will Pay Off!

Image 1: Adelfo at the Buckeye Classics, last year.
Actually, I wanted to start this installment of Adelfo's weekly contest-prep blog along the lines of "another Thursday, another ...", ... well, I guess that won't work out, because exactly those lines were the first words in the email with the weekly write-up Adelfo just sent me. So, I guess, I will just take the chance to sneak in a last-minute tip for a gift. Assuming that you have a friend or family member who really wants to make a change to the way he looks, feels and performs in the coming year, I think Adelfo is still taking new clients... but before he gets mad at me again, because I am pimping his services way too much for his liking, I better shut up now and let Adelfo tell you how he has been preparing for Christmas and his 12-weeks out mark on Christmas Day ;-)

Another Thursday, another blog…  

Damn! Aren’t you guys and, of course, girls ;-) getting tired of reading these Thursday write-ups? Well I hope not because there’s going to be about 13 to 14 more Thursday segments from yours truly ;-)

As you all know from the last installment of this series I am using this week as sort of a benchmark or test run for the show. With Christmas Day I will be hitting my 12-week mark and hopefully make myself an awesome present in terms of just about as lean and mean as possible before, ... well, before I will cram myself with every- and anything my little heart desires. What? You think that sounds stupid? Why would one diet down, just to ruin everything within one day? Well, I guess you have not read the previous installments of this series then. As I've already mentioned repeatedly, if you stay lean year round, keep your body accustomed to burning off extra calories by carefully planned cheat- and refeed-days and don't skimp on your workouts, the occasional holiday binge is not going to have any long-term detrimental effect on your physique. Enjoy your holidays - you have done your homework. It's the lazy rest of the world that's got to feel guilty, not you!
Image 2: No reason to feel guilty! I guarantee, "My 5 Simple Tricks For Guilt Free Thanksgiving Celebrations" will work for every holiday ;-)
How to minimize damage or even progress over the Christmas days? If you have not read them already, I strongly suggest you go back to"My 5 Simple Tricks For Guilt Free Thanksgiving Celebrations", where I describe in some detail how intermittent fasting and keeping your diet in check in the days before and after the holidays will help you to not only compromise your progress, but how you can even make use of a holiday binge as a strategic way of refueling your body and soul ;-) That being said, a related resource you may enjoy are the first issues (esp. Part 2 and Part 3) of the Intermittent Thoughts series, in which Dr.Andro digs into the physiology of intermittent fasting, which - as you all know - has helped me tremendously during this first half of my prep.
With only two more days to go, I am very pleased with how things are working out for me. It looks like I will be hitting my mark… As for the water retention issue, I have been seeing improvements in my physique this week, as in vascularity and separation within my shoulders, forearms, triceps and upper abs. I’ve been pounding at least 2 gallons of water a day to try and flush out as much water as I can. We will see what the end-result on Sunday will look like. I know that I will not be hitting my full potential in conditioning - if I did, the chances that I will be both as muscular, as well as as ripped as possible, on the day of the show, in 14 weeks would decrease, anyways.

Nevertheless, I do feel that I look now about as ripped as when I did the Buckeye Classic last April (cf. image 1). With another 13-14 weeks to improve, I am pretty damn sure that time (and obviously consistency as far as diet and training goes) will take care of the water retention and stubborn body fat I am still carrying. But enough about my 12-week mark! I’ve been bumpin’ my gums about it for the past two weeks, and I’m pretty sure you’re tired of it too. Note: I’ll have pictures up next Thursday on how my physique turns out this Sunday - promise ;-)

Rest, Rest, Rest... and? Well, I guess REST!

Rest, or what some people simply think of as "doing nothing", is in fact one of the most valuable training tools you have. More often than not, it is however taken for granted even by professional athletes and even I commit guilty of taking it for granted in the past, because I had that “gung-ho”,  “rest is for the weak”, or “I’ll sleep when I’m dead” type of mentality. Don’t get me wrong. There's nothing wrong with having a “gung-ho” mentality, but you should be aware of when your body is already "dead" and you begin to take steps back- not forward with every heavy lifting session... train hard, but train smart! Rest, when it’s time to rest, and learn how to listen to what your body wants.
Image 3: A brief update on my initial experience with Slinshot, Recycle and D-Pol by Purus Labs
Quick PurusLabs supplement update (Recycle, D-Pol and SlinShot): For my liking it is still too early to draw any conclusions, but as I promised to keep you up-to-date as far as my newest supplements are concerned, I thought I'd mention that I’ve been getting some pretty decent pumps in the gym, lately. While much of this could obviously be just in my head, I want to remind everyone that this is my deload week, so I’m basically just doing sissy workouts and lifting real light - still, the pump is really noticeable. And when I am practicing my poses, I feel like there was a major improvement in what people like to call the "mind and muscle connection", which is the ability to contract and flex individual muscles intentionally. As with every N=1 experiment, it is however difficult to judge how much of that can be ascribed to Recycle and D-Pol and what may be due to other parameters. With regard to the tarragon based insulin-sensitizer SlinShot, of which I told you that I'd save it for my refeeds, I will probably be able to tell you next week, whether or not it is working. I mean, the plan is to EAT BIG on Christmas, so we’ll see how much "damage" I can do, and whether or not SlinShot can help in repartitioning some of the "damage" into muscle glycogen ;-)
For me the incorporation of carefully planned rest days before it was too late, was the key to what I think is the most profound growth-spurt I have undergone in the past couple of month. Before, I did not only train 6 days a week, I also totally overlooked - or I should say - ignored the value of rest or deload weeks. Not hitting the gym for more than one day? Taking it easy, when you are not hurt? Impossible... no wonder I always felt burned out and sometimes even utterly unmotivated.

Taking more than a day off and the irrational fears of muscle loss, fat gain & co

At first I feared taking too many rest days, especially during contest prep, would hamper my progress. That being said, rationally, I was not even sure what the exact reasons for this gut feelings were. Maybe the fear of...
  • losing muscle, when the latter was not constantly challenged during my diet
  • not being able to get the most out of my body, or
  • not having enough training days to help burn body fat, since I rarely did cardio. 
And, yes, I was one of those guys who used to lift weights constantly thinking about how that would help him burn off body fat, how many calories he would have "left at the gym" and what foods he was now "allowed" to eat after burning X amounts of calories in the course of his last workout. Thus, rather than focusing on increasing my strength and trying to build some lean muscle or at least maintain it, all my efforts in the gym were aimed at simply burning calories - a futile concept, as I have eventually come to realize.

The thought of not having done enough, alway hampered my progress

I know this may sound somewhat ridiculous, especially for the lazy guys out there, but it actually took me a whole lot of courage to finally incorporate more rest days into my training regimen, to take a week off or tick to a pre-planned deload week every 6-8 weeks. The results, however, were well worth it. Adequate rest alone, helped me to ...
  • continously increase my strength on all major lifts
  • make greater and more consistent muscle gains
  • be able to hit the gym motivated and refreshed
  • lift really heavy and not just heavy as my exhausted body would allow
  • keep injury free
The latter, i.e. the ability to avoid major (and minor) injuries, may in fact be one of the most fundamental benefits you will get if you allow your body to fully recuperate. After all, what could be worse than not being able to hit the gym at all (look at Branch Warren with his torn quads!) For someone like me, who always seems to attract nagging aches, pains and tweaks during long hauls in his training, it was like a revelation, when I noticed that by just taking the necessary week off , I could totally avoid those tedious injuries.
Recipe of the week: In the good spirit of the Christmas Holidays & the birthday of Jesus Christ… I have put together a classic holiday recipe for you: Eggnog, but with an anabolic twist. Cheers!

Image 4: Eggnog - a classic recipe with an anabolic twist!
Anabolic Eggnog - ingredients:
  • 4 whole organic eggs (blend in blender till frothy) 
  • 1 c. non-fat milk 
  • 40g of vanilla whey protein 
  • 2 tsp. organic vanilla extract 
  • 1 tsp. stevia 
  • powdered or ground cinnamon (sprinkle to liking) 
  • nutmeg (sprinkle to liking)
  • Sailor Jerry’s spiced rum is optional ;-)

    Macros: 71g protein / 12g carbs / 20g fat
After blending the eggs till frothy, add all the other ingredients and blend till frothy, and you can add a couple more sprinkles of cinnamon on top to make your drink look fancy. ;-)
And just to make sure, you are getting the message: The type of Rest, we are talking about, here is not the time it takes to take a nip from your water bottle in-between sets (even if it has BCAAs in it ;-) It also does not mean hitting on the beautiful girl on the stairmaster instead of finishing you HIIT session. Rest, is the time you are spending out of the gym. A day, you spent with friends or family, where you treat your run down body with good nutrition and extra sleep. A day, where you get yourself a massage, take the dog for an extended walk and take your girlfriend out to a fancy restaurant that also carries bodybuilding friendly foods. And of course a day, where you have lot's of time to go and check out mine and Dr.Andro's posts, here at the SuppVersity, to learn new things about exercise and nutrition and to join the discussion... so, what are you waiting for, then? Go for it and rest... Merry Christmas, everyone!

Training for Size & Strength - Does the Rest Matter? Study Finds 7-9% Greater Increase in Muscle Size With Decreasing Rest Periods.

Image 1: If you want to build Arnold-esque arms you better not sit around too long in-between your sets.
"Short rest periods to burn fat, medium rest periods to build muscle and long rest periods to build strength" - it's actually pretty likely that one of your trainers, gym buddies or fatherly mentors told you something along those lines in the past. In view of the results of a soon to be published international study by Brazilian researchers from the State University of Campinas and the Federal University of Rio de Janeiro and their American colleagues from the Eastern Illinois University, the University of Memphis and the Colorado College (Souza-Junior. 2011), this is probably the next item on list of widely accepted bodybuilding myths that have a spark of truth to them... at least for recreational strength trainees who use some creatine monohydrate to promote their strength and mass gains.
Learn more about muscle builder & fat shredder training at the SuppVersity

Optimizing Rest for Size and Strength Gains

When Rodents Squat, We Can Learn A Lot!

Farmer's Walk or Squat? Is Strong- men T. For You?

Full ROM ➯ Full Gains - Form Counts!

Battle the Rope to Get Ripped & Strong

Up Your Squat by 25% With Sodium Bicarbonate
For their study, the results of which are going to be published in the next issue of the Journal of the International Society of Sports Nutrition, Tacito P. Souza-Junior and his colleagues recruited 22 "recreationally trained" men with a minimum of one year resistance training experience at a frequency of 4 sessions a week, who were randomly assigned to one out of two exercise protocols, which differed only in the time the subjects were allowed to rest in-between sets (cf. figure 1).
Figure 1: Identical training protocol for all subjects participating in the study (compiled based on information from Souza-Junior. 2011)
The only difference between the groups was that half of the subjects trained with a constant rest time of 2 minutes between sets over the whole 8 weeks (CI group), while the remaining subjects had to decrease their rest times from week to week (DI group) according to the scheme illustrated in figure 2. The training sessions were supervised and the subjects were " verbally encouraged to perform all sets to voluntary exhaustion". Considering the overall workload and the training frequency, this were probably pretty hard weeks for the 22 trainees.
Figure 2: The rest times decreased according to a standardized protocol by 15 sec each week.
In addition all subjects, who btw. did not follow a standardized diet, consumed the proven creatine + maltodextrin mix (7 day loading phase with 20g/day creatine + 20g maltodextrin followed by a maintenance dose of 5g creatine + 5g maltodextrin taken immediately post workout) that has been used in numerous studies before.

Figure 3: 1RM performance (in kg) for bench press and barbell squat before and after the 8-week training period in subjects with constant and decreasing rest periods (data adapted from Souza-Junior. 2011).
Now, if the initially stated "wisdom" held true, then the 11 subjects with constant rest periods should either have gained more muscle (if you consider 2 minutes a "medium" rest period) or built more strength (if you would say that 2 minutes belong to the realm of "long" rest periods) - yet figures 3 and 4 seem to indicate that neither of that was the case.
Figure 4: Muscle CSA (in cm²) of arm and tigh muscles before and after the 8-week training period (data adapted from Souza-Junior. 2011).
If we have do yet a closer look at the effect sizes, there is yet a notable advantage of the DI protocol in terms of the measured increases in muscle CSA with +14% and +19% in arm and tigh CSA in the constant rest interval group (CI) and +21% and +28% in the decreasing rest interval (DI) group.
SuppVersity Classic: Full ROM = More Growth, More Strength, More Structural Changes & More Sustainable Gains & Fat Loss - Insights from Realistic 8 Weeks Leg Training + 4 Weeks Detraining | more
There is a spark of truth to every myth To give you an idea of how significant - and I am talking about "posing significance" not statistical significance here - this is, I have calculated the respective increases in arm- and tigh-circumference, which would differ by 0.4cm and 0.7cm, respectively. Not really outstanding, but nevertheless an important finding of which the researchers say that it lends support to the notion that
decreasing [rest] interval[s] seems to be more efficient than constant interval to produces [sic!] hypertrophic responses.
It has yet to be stated that the 11 subjects in the decreasing rest interval group paid dearly for this increase in muscular hypertrophy, as their "exercise performance" as measured by the total workload per session decreased profoundly from week 1 to week 8: -35% total volume for barbell squats and -30% for bench presses.

The subjects who used constant rest periods, on the other hand, increased their total volume by +20% for squats and by +30% for bench presses. That being said, all powerlifters out there better stick to their constantly (long) rest periods if they do not want to compromise their game.

Adelfo Cerame - Pre-Contest-Prep: Rest, Recovery and the Underestimated Value of Taking a Week Off.

Image 1: If this is how you feel, than it is about time you take one week off from whatever routine you are on.
It's only Thursday and I feel like I could use an extended weekend (luckily this will be one, with Monday being a holiday, here in Germany ;-), already. Some feel like it's life or work that is getting in their ways, for others its their hobbies, like blogging and training (that's me ;-), but, after all, if we are honest with ourselves, in almost all cases there is "no one" or "nothing" that really stands in our way, other than we, ourselves. I mean, oftentimes we are so busy with our everyday routines that we begin to feel to be externally controlled, although, in almost all cases, we are the ones who decide / believe that we must follow the exact same routine day in and day out.

The results of this practice, in the best case, are boredom and discontent - in the worst case, however, our routines will burn us out and make us sick. Adelfo, our man at the  2012 Wheelchair Nationals, is well aware of the fallacy of routines - especially when it comes to going to the gym day in and day out and he knows that taking a day off before you feel it is utterly necessary is way smarter than digging a whole out of which you cannot escape, no matter how "hard" you rest ;-)

One Week Out = One Week Off

I'm taking a week off from training, before the hot phase of my contest preparation begins. The time, this stands out of question, is well spent to heal my nagging pains, to rest my body, who has already been sending me the first signs of a cold and, most importantly, to be able - mentally as well as physically - to really kickstart my contest preparation in October.
Image 2: Comparison shots from September, 1st to September 21 2011 - the prep has not yet begun, therefore no major changes in this time of experimentation (photos by Adelfo Cerame, 2011)
As it happens, I am also just reading Rob Regish's Blueprint. In his book, Regish mentions that a depressed immune system, and subsequent infections, like if you're getting a cold out of nowhere are tell-tale signs that is is about time to take a week off from training... Now, while this idea obviously was not new to me, reading it black (or should I say blue ;-) on white, from someone with Robb's years of experience in training people, and as one among a whole host of other valuable tips, really helped to put me at ease with my decision to take the week off... Let's be hones, I assume for many of you it won't be different: we are always hesitant to just stay at home lying lazy on the couch, when we "ought" to be in gym. For some its the fear to gain fat, for other's (as myself) it's because we are afraid to lose some of the muscle we have been working so hard for over the past weeks, months and years. And this fear haunts us, although we all "know" (our brain knows, but our hearts don't) that all we will lose (if anything) is some easily replenishable muscle protein, i.e. there won't be any substantial loss of muscle mass, the muscles will only lose some volume.

"You should always listen to your body!"

Well, I guess you will have heard this verdict before "listen to your body" - but what if your heart, certainly a part of your body, cries - "I am afraid I could lose muscle!" and it cries so loud that you can hardly hear the your aching muscles under the pain of weeks and months of continuous training. Now, what can your do? I guess, the best thing will be to advice your brain to tell your heart to shut up and rest. At least that is what I decided to do and to take my mind off the issue of losing muscle or getting fat, I am sitting down and getting the plan for my contest preparation stream-lined. I am planning my workouts (and off times !), sketching the meals I will be eating and deciding on which  the foods that will make up the majority of my diet in the next 4-5 months.

"Rest appropriate nutrition" - cutting back carbs, when you don't need them

Image 2: Healthy post-workout meal of the week - 7oz raw wild caught salmon, 12oz sweet potatoe, 6 carrots, 1c mangoes, 1 tbs raw blue agave and some refreshing coconut milk - the all natural sports beverage!
A pros pos nutrition, I am still fasting 16 hours and feeding for 8 hours, but during my off week all my meals are high in protein and fat and low in carbohydrates. Examples would be ...
  • raw milk, carrots and raw cheese, or 
  • raw/seared steaks / sashimi with carrots or fruit and coconut oil, or
  • raw wild caught salmon from image 3, but without the sweet poatoe 
Basically a high quality protein source + some additional fat (if the former is not high in fat) + a minimal amount of carbs from veggies or fruit. I must admit that I still sneak in a meal from time to time, but this is partly psychological, because I know that this is the last week I can to it without messing up my contest prep, where I have already planned on the three days were I will deliberately "break" my diet:  thanksgiving, christmas and my birthday... and even those will be pre-planned refeeds.

Refeed? I guess you have already been waiting for this keyword to occur. After all, I promised you to report on my experience with a fruit based refeed... Well, I gorged on fruits just as I would have done with pancakes and the processed carbs that I usually eat on my re-feeds, and... I would have to say that even though I stuffed myself with fruits I did not get that comatose or sick feeling that I usually get, with the crappy foods from the grocery store. While I am still not a 100% sold on the idea, I am toying with the idea to start out my prep with fruit-based refeeds. We will see whether this will be sustainable, once I start getting leaner... for now, it works fine, though.

Adelfo Cerame's personal blueprint: Mens sana in corpore sano

Video 1: Adelfo does single arm cable rows 2 weeks before the hot phase of his contest preparation.
As far as my training is concerned, I have been toying back and forth with some of the suggestions from Regish's Blueprint. I've been reading the whole book on the past weekend and am still in the process of sorting out those training principles of which I think that they make a valuable addition to my routine. Don't get me wrong, the book is awesome, but if there is one thing I have learned in the past, then this is never to copy a routine from someone else to a T. Yet despite the fact, that there are some profound differences as far as the nutritional protocol is concerned (this is quite obvious, as the book outlines a muscle building not a contest prep diet), I really do like the weight training protocols and I hope to find a way to combine my constantly evolving contest prep diet with some of the training strategies from Regish's Blueprint...

I will also try and use my week wisely to do some meditating, soul searching and spend some time with the Lord, as I like to be spiritually healthy just as I am physically healthy. And, in case spirituality is not for you and you do not feel like taking a week off, anyway, you may want to check out the promised training video (video 1), head to the gym and treat yourself to a large portion of wild-caught salmon with delicious sweet potatoes and some carrots (cf. image 2) ;-)

Intra-Set Rest Periods Boost Power (+38%) & Strength Gains (+65%) Without Hampering Muscle Hypertrophy

Up your strength /check! Up your power /check! Up your muscle gains in the long term /likely!
Intra-Set Rest Periods? No, that's not identical to "clustering" or "cluster training", although it may appear as if it was. Ok, let's briefly summarize what IRS / clustering is: Basically the idea is to perform the exact same amount of reps and thus work with a heavier weight than usual to induce greater gains (usually strength gains). Now how can you do that? Well, one possibility would be to simply add another set, so that you would now be doing 4 set of 10 reps instead of the usual 3 sets of 10 reps. Unfortunately, this is yet nothing but another instance of the notorious more helps more approach of which you should by now have realized that it is pointless and ineffective.

Now things are getting a little complicated, because contrary to a classic clustering regimen, where you would add weight to the bar, do say 8 reps, take 10 breaths and rep out the other two, the intra-set rest (IRS) period protocol in the Oliver study employed a tightly controlled and not an "ad hoc" variety of "clustering". Contrary to the control group who performed a regular 4x10 routine, the IRS group broke their 4 sets of 10 with 120s rest between sets up to eight sets of five with only 60s of rest in-between the exercises (see table 1 for more details)
Table 1: Overview over the workout program (adapted based on Oliver 2013)
It's easy to see, there is no black magic involved. Same lifts, same plan, same progression, but different set x rep scheme and inter-set rest for the STD vs. ISR groups. In the fourth unloading week, tests were conducted and the same protocol was repeated with accordingly increased weights. All sessions were supervised and the compliance was 95% over the whole 3x4 week study period.

Remember: This is not "clustering"! When you "cluster" your training volume will increase, the IRS protocol, on the other hand, is standardized in a way that the total workload will (and in in the study at hand did) remain the same.
The participants of the study had all been doing upper + lower body resistance training for at least 2 years and were thus familiar with the basics of strength training, before the study they received nutritional counseling which is probably the reason that all of them increased their protein intake significantly (ca. +50g to ~190-200g/day; no inter-group difference).

The same goes for the changes in muscle fiber and body composition. All subjects experience an increase in MHC-IIa fibers (glycolytic) and gained lean mass continuously. Unfortunately, they also gained body fat, so that the body fat % (DEXA measured) did not change at all.

The power and strength advantage

What did however react to the modified rest times were the changes in strength and power on all the major lifts. According to Oliver, et al.
Table 2: Effect size and qual. inferences on intergroup difference; (t)rivial, s - (s)mall, (m)edium., (l)arge (Oilver. 2013).
"Only subjects in ISR experienced an increase [in 1RM bench press & squats] at 4, 8 and 12 weeks. This corresponded to greater increases at 4 (ISR, 6.6±6.6 kg; STD, -1.4±6.2 kg; p= 0.012), 8 (ISR, 9.9±6.8 kg; STD, 2.9±5.8 kg, p = 0.016) and 12 (ISR, 15.1±8.3 kg; STD, 9.1±3.7 kg; p = 0.051) weeks.

[...] Again, only ISR increased at 4, 8 and 12 weeks. Greater percent increase from baseline was observed in ISR at 4 and 8 weeks (p = 0.017 and 0.034, respectively), with 12 weeks approaching significance (p = 0.082)." (Oliver. 2013)
Similar differences were observed on the power output strength, where the group difference at both 8 weeks (ISR, 151.0±74.0 W; STD, 97.5±60.9 W; p = 0.084) and 12 weeks (ISR, 282.1±104.1 W; STD, 204.9±70.2 W; p = 0.063) approached significance with subjects in ISR showing a greater increase. Interestingly, the advantage became even more obvious, when the changes for normalized for the subjects' body weight (from p = 0.084 to p = 0.016 and p = 0.063 to p = 0.038 after 8 and 12 weeks, respectively - that means what may be at best a trend on an absolute level is a statistically significant advantage if you take the muscle mass into account, as well)

Bottom line: It sure looks as if IRS would in fact be a viable training strategy for anyone training for muscle hypertrophy, strength and power. Neither the workload, nor the workout time changes and still the results improve. And I can hardly phrase it better than Oliver et al. did:
Suggested read: "Training for Size & Strength: Does Rest Matter? Study Finds 7-9% Greater Increase in Muscle Size With Decreasing Rest Periods." (read more)
"Based on these results, it could be suggested the incorporation of ISR in the hypertrophic phase of a traditional or non-traditional periodized training program would allow for greater improvements  in strength and power. 

Whether these improvements would result in greater gains in strength and power output over an entire mesocycle is unknown, but hypothetically entering the strength and power phases of a training mesocycle at higher performance ability (strength and power) would allow a continued improvement above that achieved during traditional training models." (Oliver. 2013)
What? Oh, yes... I will tell you if the researchers ever conduct this study. To be honest, I am yet pretty sure that this is not going to happen. After all, the results won't be patentable and since we are dealing with healthy people (worse athletes!) the governments of the Western Obesity Belt are more likely to burn a few additional millions to find new pharmacological methods to prolong the misery of the increasingly obese majority of their citizens - I mean, who would vote for them if they told people that we already had the solution to the obesity epidemic, but it was not available in convenient pill form?

References:
  • Oliver JM, Jagim AR, Sanchez AC, Mardock MA, Kelly KA, Meredith HJ, Smith GL, Greenwood M, Parker JL, Riechman SE, Fluckey JD, Crouse SF, Kreider RB. Greater Gains In Strength And Power With Intra-Set Rest Intervals In Hypertrophic Training. J Strength Cond Res. 2013 Jun 3. [Epub ahead of print]
     

Optimal Rest Between Workouts? Despite Inter-Personal and Exercise-Specific Differences 72h May be a Valid Rule of Thumb - Especially for Compound Movements

As usual, there is no one size fits it all answer when it comes to the "optimal" inter-workout rest times - 72h in-between workouts w/ compound movements does yet seem reasonable.
As Korak et al. point out in their latest research paper, previous studies yielded diverse results, when it comes to the "optimal" recovery time between resistance training sessions: In fact, there is a study for all recommendations ranging from 1-7days between resistance training exercise bouts may be needed for replication of previous performance.

As general guidelines, the National Strength and Conditioning Association (NSCA) states that increased recovery time is needed between heavy lifting days and that upper body musculatures recovers faster than lower body musculature and single joint lifts require less recovery time than multi-joint lifts (NSCA. 2008).
Learn more about limits to training volume and the risk of "overtraining":

Never Train Just "To Burn Calories", Folks!

"Cardio" ↔ Overtraining & Muscle Loss?

Is There Such a Thing as "Overtraining"?

2 Alternative Methods to Test for Overtraining

Heart Rate Variability to Test for Overtraining

Overtraining & Self-Inflicted Hypothyroidism
Korak et al.'s "careful review of the literature cited in the NSCA guidelines" does yet reveal that most of the references are based on anecdotal evidence in older review papers or other textbooks and no quantitative evidence of recovery patterns were collected in the investigations cited supporting upper body versus lower body recovery or single versus multi-joint lift recovery.
"Recent investigations have sought to quantitatively determine the number of days needed for recovery to occur. While these investigations have extended the knowledge concerning lifting recovery as a whole, they have not delineated if discrepancies exist between multi-joint, single-joint, upper body, and lower body" (Korak. 2015).
Accordingly, Korak et al. conducted a study that was designed to quantify muscle recovery patterns between single- (SJ) and multi-joint (MJ), and upper body (UB) and lower body (LB) exercises at 24 and 48 h.
Table 1: Overview of the lifting protocol used in the study at hand (Korak. 2015)
A secondary objective was to examine the efficacy to self-evaluate recovery using the classic perceptual subject ratings of perceived exertion scale (RPE)  and the more novel perceived recovery scale (PRS). Based on the data Korak et al. hoped to be able to finally answer the question:

How much recovery is actually needed between two resistance training sessions?

To this ends, 10 recreationally strength trained college age males (26 ± 6 years) were recruited. The subjects had to complete 2 sets of 10 exercises. At an intensity equal to 85% of their 10-RM they had to perform 8 reps for first set of the exercise, which was intended  to induce standardized fatigue before the subsequent set to failure. For the second they performed 10 reps to failure at the predetermined 10-RM.
"The protocol was replicated during two additional sessions with days of rest (either 24 or 48h) between the next two lifting sessions serving as the independent variable. A counter-balanced crossover design was used. Half of the participants repeated their workout 24 h after the baseline session and rested for 48 h before their fourth and final session (e.g. baseline Monday, 24 h session on Tuesday, and 48 h session on Thursday). The other half completed their third session 48 h after baseline testing and their fourth and final session 24 h later (e.g. baseline Monday, 48 h session on Wednesday, and 24 h session on Thursday). Participants were instructed to refrain from other exercise, alcohol, and to maintain regular diet and sleeping patterns from 48 h prior to their baseline testing session until completion of the study" (Korak. 2015).
The same sequence of exercises was incorporated in the baseline and all treatment sessions. All participants completed 10 different exercises. Resistance exercises included: flat barbell bench press (BP), seated dumbbell military press (MP), barbell dead lift (DL), machine leg press (LP), knee extension (KE), machine triceps extension (TE), dumbbell side raises (SR), machine chest fly (CF), and seated machine hip abduction/adduction (HipAB/AD).
Figure 1: Box and whisker plot comparisons of cumulative means for Δ in repetitions from baseline for upper body (UB), lower body (LB), multi-joint (MJ), and single-joint (SJ) exercises at 24 and 48 h (n = 10; middle line = median; top and bottom boxes represent 2nd and 3rd quartiles; error bars represent min and max scores). Red signifies "on average not recovered", grey signifies "on average recovered" and green indicates "supercompensated", i.e. on average participants did a minimal amount of extra reps (Korak. 2015).
The data in Figure 1 shows how the recovery times (24h and 48h)  affected the number of reps the subjects were able to perform. It's easy to see that the short rest period of only 24h lead to significant decreases in the number of reps the subjects were able to perform in almost all subjects.
McLester et al. found similar results - Full recovery from all exercises was achieved only after 72h. With leg extensions it was yet not a compound, but an isolation exercise which had the longest recovery times (McLester. 2003).
What do previous studies say? It's always good to put things into perspective; and for the study at hand this means that we have to compare the results to studies by McLester et al. (2003) and Jones et al. (2006) who conducted similar small-scale studies with 3 sets and 8 and 3 sets and 8 exercises, respectively. In contrast to the study at hand, both McLester & Jones had their subjects perform all sets to failure and compared recovery times of 24, 48, 72, 96h and in the case of Jones et al. also 120h. In both studies 72h would have been sufficient for full recovery, but the study by Jones et al. who used trained vs. untrained subjects in the McLester study shows that the majority of subjects (8/10) were fully recovered after only 48h.

What all three studies (McLester, Jones & Korak) have in common, though, is that a recovery time of only 24h was not sufficient for full recovery in the vast majority of the trained (Jones & Korak) and untrained, but healthy (McLester) subjects.
If you scrutinize the data in Figure 1, you will also notice the following in part surprising revelations..
  • the performance decline was most pronounced for the multi-joint movements (BP, MP, DL, LP) and least pronounced if not non-existent for the single joint exercises,
  • there was a tendency for the lower body to recover faster than the upper body that stands in contrast to the broscientific advice that training legs would require longer recovery periods,
  • the recovery after lower body exercises was in fact so rapid that there was a measurable supercompensation effect (=subjects did more reps than before) even after only 48h of recovery in a handful of subjects.
Due to the large inter-subject variability and in view of the fact that the effects were tested only acutely, the scientists suggestions that "72 h of recovery should be implemented for multi-joint barbell lifts targeting the same muscle groups in slower recovering lifters" does still have to be considered a "rule of thumb".
Figure 2: Percentages of participants classified as recovered A from multi-joint (MJ), single-joint (SJ), upper 2 body (UB), and lower body (LB) exercises at 24 and 48 h when ∆ in reps from baseline was averaged 3 based on exercise type (Korak. 2015).
Furthermore, it's possible that you belong to the lucky 30% of trainees who perform the same number of reps after only 24h of recovery from an intense multi-joint exercise (Figure 2, left) and still need extra time to recover to make progress in terms of strength and size gains. Next to inter-individual variations the significance of the results of the study at hand are thus hampered by the assumption that being able to perform the same number of reps on a given exercise after a certain amount of rest signifies "optimal" recovery.
Same number of reps = full recovery? As I previously hinted at, the assumption that you can determine optimal recovery times by testing the ability to perform a certain number of reps on subsequent workouts is questionable.

Figure 3: Box and whisker plot comparisons of cumulative means for perceived recovery scale (PRS) ratings for upper body (UB), lower body (LB), multi-joint (MJ), and single-joint (SJ) at 24 and 48 h (Korak. 2015).
This is specifically true, if we take into account how the subjects felt. The perceived recovery scores (0 = still totally exhausted, 12 = fully recovered), for example, suggest that even the lucky 30% of subjects who were able to perform the same amount of reps on multi-joint movements after only 24h of recovery felt at best decently reasonably recovered (score 8). A fact which raises the question: How did they feel after 72h? If that had been tested and the result was a 10 on the 1-12 scale, I would be more inclined to subscribe to the scientists conclusion that their study suggests "72 h of recovery should be implemented for multi-joint barbell lifts targeting the same muscle groups in slower recovering lifters" (Korak. 2015).

What remains to be seen, though, is how "splitting", i.e. doing exercises for one muscle group on day A and those for the others on day B, C, D, etc., affects the "optimal" recovery times. In conjunction with the inter-personal differences, it would thus appear best to start with 72h rest for full-body and 48h rest for split workouts and to judge whether that's enough or not based on whether you can increase your performance on the big four, i.e. squats, bench presses, deadlifts and pull-ups, whether that's enough or not | Comment on Facebook!
References:
  • Jones, Eric J., et al. "Stability of a practical measure of recovery from resistance training." The Journal of Strength & Conditioning Research 20.4 (2006): 756-759.
  • Korak, John A., James M. Green, and Eric K. O'Neal. "Resistance Training Recovery: Considerations for Single vs. Multi-joint Movements and Upper vs. Lower Body Muscles." International Journal of Exercise Science 8.1 (2015): 10. 
  • McLester, John R., et al. "A Series of Studies---A Practical Protocol for Testing Muscular Endurance Recovery." The Journal of Strength & Conditioning Research 17.2 (2003): 259-273.
  • National Strength and Conditioning Association. Essentials of Strength and Conditioning-3rd Edition. Champaign, IL: Human Kinetics, 2008.

Training, Detraining, Retraining: Build Bigger and Stronger Muscles by Taking 3 Weeks Off!?

Image 1: This dog obviously knows how beneficial it is to take 3 weeks off and detrain. If we go by his physique, he did probably not realize that without (pre-)training and retraining the distinct line between detraining and laziness becomes as blurred - as blurred, by the way, as many it is for training junkies like me ;-)
I plead guilty! Guilty of not taking enough time off - against better judgment. In that, it is not the idea that I would "lose muscle" that urges me to the gym, it is not that I would be afraid to get fat and I could probably even stifle my desire to lift heavy objects, if it was not for the little man in my ear who keeps telling me: "Well, you won't get fat and you won't lose muscle, but think about it: You are fit, young and strong! Why waste your time idling around? Go for it hit the weights and let the veins pop" ... and alas, his words are too convincing to put my gymbag back into the locker and write one of the 237 blogposts I am constantly thinking about and never finding the time to compile. Thanks to Steven Arcera, who, by the way, is somewhat of the productive, digital counterpart of the little man in my ear, as he is constantly pricking new ideas into my brain by posting questions, links to studies and hypothesis on my Facebook wall, I do now have a scientifically validated counterargument that could (theoretically ;-) shut the small nag up... for 3 full weeks!

6 Weeks on, 3 weeks off, 6 weeks on OR 15 weeks on - what is more "productive"?

Aside from the longer, more in-depth articles here at the SuppVersity, the studies, we are dealing with on a daily basis are usually not older than max. 4 weeks. In view of the fact that even "Prof. Dr.", i.e. me, is only human, it sometimes happens that I a) either miss the publication of an interesting paper or b) file it under "candidates" and then forget about it... the latter happened with a study, Steven referenced in a brief discussion we had on facebook about "priming muscles for new growth". Since the results do however fit in pretty nicely with the concept of "skeletal muscle hypertrophy" I have been trying to establish in the course of the latest installments of the Intermittent Thoughts (yes, there will be a follow up on testosterone tomorrow ;-), I decided that it was about time to finally acknowledge the results of a May 2011 paper by Riki Ogasawara et al. (Ogasawara. 2011).

In their 15-week randomized trial, Ogasawara and his colleagues put 15 young (24.7y), previously untrained male subjects onto identical training regimen. In three supervised training sessions per week the subjects performed 3 sets of 10 reps at 70% of their predetermined 1-RM max. The latter was re-assessed every three weeks and the weight was adjusted appropriately. After 6 weeks of training 8 randomly selected subjects "had" to take 3 weeks off (retraining group), while the rest of the subjects kept their regular 3x per week training schedule (continuous group). At the beginning of week 9, the now "detrained" subjects resumed their training regimen, until after week 15, a final testing session was scheduled to provide the data we need to answer a question, of which I know that it already preys on your minds:  "Did the three weeks away from the gym compromise the progress in the retraining group?" 
Figure 1: Development of triceps brachii and pectoralis major CSA of the continuously training and the detraining/retraining group in the course of the 15-week study period (data adapted from Ogasawara. 2011)
If you take a cursory glance at the data in figure 1, the answer to this question must be "YES!" (I think I just heard the little man in my ear rejoice ;-) - there is no debating: the triceps cross-sectional area (CSA) of the continuous trainers grew 2.4% more, the pectoralis major even 5.7% more, but with the given standard deviations of >7% and >10%, the little man in my ear will be having a hard time to convince me that I would miss out on muscle gains, when I took three weeks of - and that, even if I were a bloody beginner.

If we now assume that with my reluctance to take even a complete week off, my size gains would already have reached the "quasi-plateau" that is situated to the right of the logarithmic graph which describes the CSA development of the continuous training group, one could even make an argument that I and any other advanced trainee, whose gains have been slowing down over the last couple of weeks, would see an even more profound "growth boost" after 3 weeks of detraining, than the previously untrained subjects in the Ogasawara study. In fact, the increase in the amount of muscle mass I  would be able to accrue per week, might not only compensate (within the statistical margin ;-), but rather surpass the gains I thought I constantly fear I could "miss" during my off time.
Figure 2: Development of bench press 1RM strength and triceps brachii maximum voluntary contractive force of the continuously training and the detraining/retraining group in the course of the 15-week study period (data adapted from Ogasawara. 2011)
Moreover, the fact that the strength gains, in general, and the maximum voluntary contractile force the subjects were able to apply to a Biodex dynamometer with their elbow extensors, in particular, exhibit similar or even smaller differences (cf. figure 2), provide additional arguments by the means of  which I could probably convince myself that detraining is not for retiring athletes only.
Figure 3: Development of bench press 1RM strength (left) and triceps brachii maximum voluntary contractive force to triceps brachii CSA ratio (data adapted from Ogasawara. 2011)
And if that is still not enough to lay aside the dumb- and barbells for at least 2 weeks (you see I am negotiating again ;-), I could make a point that I do not only want to look strong, but also want to be strong; and as the right graph in figure 3 shows quite clearly, the three-weeks detraining period lead to 2.3% larger, yet again statistically non-significant increase in the pound per pound force production of the triceps muscle of the study participants in the retraining group.

Detraining is neither for pussies nor for retiring athletes, only

I guess, the foregoing subheading, summarizes the main take-away message of the study quite nicely. In view of the non-existent loss in muscle mass and strength in the course of the detraining period and the subsequent "growth spurt" (relative steep linear vs. leveled logarithmic increases in weeks 9-15), it should be obvious that the incorporation of strategic detraining periods into your training schedule is more than a welcome opportunity for laziness (something that totally turns me off, btw.). It is rather a phase where the reconstruction processes you have learned about in the Hypertrophy 101 and the subsequent installments of the Intermittent Thoughts will carve the way for future gains. Whether this will suffice to soothe the little man in your ear, I don't know... maybe you can negotiate a 2-weeks detraining period for the start ;-)

Chronic Resistance Training Reduces the Anabolic Signaling in Response to Exercise - 12 Days of Detraining Restore It

This rodent obviously knows about the value of detraining as a means to restore the signaling protein response that gets blunted over weeks of continuous training (photo from livescience.com)
Ah, some really good stuff in the news, or rather in the journals as of late (for the news version of the articles, you obviously got to come here, to the SuppVersity ;-). So, let's skip any lengthy preludes and let's start with a simple question pertaining to the topic of the day: "When was the last time you took 2 weeks or more off?" What? Last year, when you were down with the flu? No, that does not count. I am talking about detraining, here; so only voluntary off-times will be reckoned as off time... I thought so, you haven't taken off in years, right? Well, what if I told you that this may be the reason your gains have not taken off either? Interested? Yeah, that's what I thought.

Chronic resistance training reduces its own anabolic effect, detraining restores it

I guess in the end, all of us knew this instinctively: The unbelievable gains you make as a rookie vs. the slow and arduous road you will be walking later in your "career" as a trainee are too obvious for anyone not to suspect that the marginal utility of exercise declines.

Learn more about domain sizes, protein synthesis and  "muscle bulding" in Part II of the Intermittent Thoughts on Building muscle.
Now, one of the most common and certainly accurate hypothesis to explain this phenomenon is that the restructuring processes that starts when you hit the early domain size limit is more time consuming than just "pumping more protein into the muscle" - a process, which happens more or less automatically, a previously sedentary individual picks up a dumb- or barbell ;-)

With the impending publication of a study by researchers from the Ritsumeikan University, the University of Tokyo, the Nippon Sport Science University and the  University of Mississippi we do now have evidence for another, yet probably not unrelated reason to the exponential decline in marginal utility: The amelioration of the exercise induced phosphorylation of signaling proteins, due to which the marginal utility of your workouts decreases over time.

What did the scientists do?

In the experiment, the results of which Riki Ogasawara and his colleagues summarized an discussed in their latest paper, the researchers randomized a group of male Sprague-Dawley rats (10 weeks of age, 356.1 ± 4.4 g body weight) to four groups (+control) performing either continuous training (1S, 12S, 18S), in the form of 1 exercise session (1S), 12 exercise sessions (12S), or 18 exercise sessions (18S) every other day (Mo, Tue, Wed, Fr, Su, Tue, ...), or continuous training + detraining (DT), in the form of 12 sessions of exercise every followed by 12 days of detraining.
    Figure 1: The "muscle builder" mTOR and the pertaining signaling cascade(s); remember that the line with the bar at the end indicates an antagonism → higher mTOR = higher phosphorylation of p70SK and it's downstream target rpS6, but lower 4E-BP1 (my orange markups; original from ebiotrade.com).
    The exercise itself was mimicking a leg-training regimen, in the course of which, the gastrocnemius muscle was trained by stimulating 5 contractions, with a 5-s interval between contractions, per set for 5 sets (5-min rest intervals in-between the sets).
    "The voltage (~30 V) and stimulation frequency (60 Hz) were adjusted to produce maximal isometric tension. Before every exercise session, peak twitch torque was measured. Torque signals were collected continuously at a sampling rate of 1024 Hz using a 16-bit analog-to-digital converter (PowerLab/16SP;AD Instruments, Japan) and analyzed using Power Lab Chart 5 software (AD Instruments, Japan). " (Ogasawara. 2013)
    24h after the last exercise session, the rats were anesthetized and exsanguinated. The muscles were removed immediately after death and both muscle size, volume and weight, as well as the expression of the signaling proteins p70S6 kinase, p90RSK, 4E-BP1 and S6 ribosomal protein (rpS6) were measured.

    So what's that all about? Did the rats become more muscular?

    As you can see from  my plot of the protein responses on the left and the respective effects the different training (+detraining) protocols had on the muscle weight of the rodents on the right hand side of figure 2, the chronic resistance training protocols lead to statistically significant reductions in the post training p70S6K and rpS6 expression, which were restored in response to the detraining protocol.
    Figure 2: Phosphorylation status of p70S6K (Thr389), p90RSK (Thr573), 4E-BP1 (total) an rpS6(Ser235/236) on the left and body weight, as well as muscle weight  in both exercised (RT ) and non-exercised (CON) rodents measured on the day after the last workout of the respective training group (Ogasawara. 2013).
    Notwithstanding, the fact that the muscle gains were (expressed relative to the respective control group) statistically identical, shouldn't surprise you. After all, the growth benefits of the detraining protocol will show only in the weeks after your absence from the gym. The rodents in the study at hand, however, were subjected to only one training session after the detraining period and killed afterwards. Therefore, the main message the data on the increase in muscle weight in the DT compared to its control group is sending us is that short periods of detraining won't cost you precious muscle mass.

    Don't hesitate, dare growing like a rookie again - dare taking a week off!

    In a previous study, by Ogasawara et al. I have likewise discussed here at the SuppVersity, the researchers have already shown that a "6-weeks-on vs. 3-weeks off" training-detraining regimen produces identical gains in muscle growth as continuous training w/out  producing the logarithmic decline in marginal gains that brings skeletal muscle hypertrophy to a screetching halt over time (read more)
    The novel information about the decline and restoration of the signaling proteins this study provides would support the longstanding hypothesis that continuous exercise blunts its own growth response. And what's more it's also supported by various human studies. In 2006, for example, Coffey et al. were able to show that the phosphorylation of p70S6K and rpS6 in response to resistance training was almost completely blunted in highly resistance-trained subjects (power lifters), while it did occur in the untrained controls (Coffey. 2006).Morever, Ogasawara et al. have shown last year already that an even longer detraining period of 3 weeks lead to much steeper inclines in muscle CSA in human subjects than continous training (see figure next to the paragraph below and read up all the details in the respective SuppVersity article from October 2012)

    Collectively, these results clearly suggest that the notion of planned, regular detraining periods could have benefits that go way beyond the well-known ability to protect you from getting caught in the downward spiral of chronic overtraining, as it will also "reset" the anabolic response to a given workload.

    And while you can hardly expect the results to be anywhere similar to those you've hopefully experienced, when you were still a scrawny beginner, the data from the study at hand does suggest that there will be an increase in the marginal utility of your workouts after one or two weeks of detraining. Moreover, there is no reason to be afraid that you could lose muscle within this short time period. Based on the absolute numbers in the study at hand (cf. figure 2), you could rather expect to see a non-significant increase in muscle mass that will occur during shorter (1-2 weeks) detraining phases.

    If you have no idea what macro- and micro-cycles are or are clueless about how to incorporate phases of detraining and - as a possible alternative with potentially similar effects - tapering into your routine, I suggest you go back to part VI of the Step by Step Guide to Your Own Workout
    Just don't forget, that just as it was the case in the previously mentioned 2012 human study by Ogasawara et al., you will see and feel the beneficial effects of the detraining period, not before you are back on the grind for 1-2 weeks. If you look back at the protocol, Ogasawara et al. used, the fact that the gains were "just" identical (even that would be a huge plus: after all you get the added bonus of reduced risk of injury, overtraining, etc. without missing out on a single additional mm on your arms, chest, shoulders, quads, hams, and what not) would actually support my gut feeling that a detraining period (= no training at all) of three weeks after "only" 6 weeks, could be a little too long. In the study at hand, which is obviously not a human stud and did not involve a regular full-body split routine, it did after all take no more than 12 days, i.e. 9 days less for the signaling responses to return to baseline.

    Further speculations about optimal off-times and respective increases in muscle gains would be mere speculation, so that I would suggest, we will postpone more concrete suggestions until the next paper from Ogosawara's group at the Research Organization of Science and Technology to be published. If we assume that it will take another 3 months, which happens to be the interval between the aforementioned human study and the study at hand, you better mark the first two weeks of April 2013 in your calendar, if you don't want to miss the respective SuppVersity post on the matter ;-)



    Regular periods of detraining are not the only thing you should keep in mind, when you lay out your workout routine. A study I wrote about in June 2012, for example showed that appropriate periodization can help you "Cut 12% Body Fat in 12 Weeks, Get Stronger, Bigger and Better Conditioned" (read more)
    In short, what is it, this paper brings to the table and what are the implications? The "new" information this paper has to offer pertains to the restorative effects of detraining n the exercise induced protein signaling cascade that will eventually result in skeletal muscle hypertrophy (=muscle gains). The differential protein expression in the different training groups tell us, that the 12 days of detraining effectively restored the p70S6K an  rpS96 that declines with each and every workout during periods of continuous training.

    The practical implications of these findings, should actually be obvious: Incorporating regular periods of detraining in your macrocycles and most importantly sticking to the plan, will not just help you to avoid overtraining with all it's negative side effects, it will also prevent the hypertrophy response to your workouts from diminishing and thus propel your lean mass gains.
    Update: Steven Acerra called my attention to an older study by Kadi et al. who report distinct effects of detraining on the satellite cell response to heavy resistance training (Kadi. 2004). According to the results of their study, the often overlooked contribution of the satellite cells to the structural underpinnings of skelatal muscle appears to peak early in the detraining phase with the maximal number of satellite cells per muscle fiber being achieved after 10 days of detraining and a return to pre-training levels after 90 days. Despite the fact that a straight forward extrapolation of practical recommendations based on these observations alone is not feasible, the researchers observations do confirm that there is a multilayered benefit to short (~14 day) detraining periods.
    Whether 12 days is the "optimal" length for a detraining period, if this "optimum" depends on the length, intensity and type of the previous training period, whether it's body part specific (like stop training arms for two weeks to restore your growth response in the biceps and triceps) and whether or not the training status of an individual has any impact on the time that's necessary for the "reset" to take place, will have to be elucidated in previous studies. That the SuppVersity is going to be the place, where you will read about these first, is something I probably don't have to tell you, right?

    References: 
    • Coffey VG, Zhong Z, Shield A, Canny BJ, Chibalin AV, Zierath JR, and Hawley JA. Early signaling responses to divergent exercisestimuli in skeletal muscle from well-trained humans. FASEB J. 2006; 20: 190-192. 
    • Kadi F, Schjerling P, Andersen LL, Charifi N, Madsen JL, Christensen LR, Andersen JL. The effects of heavy resistance training and detraining on satellite cells in human skeletal muscles. J Physiol. 2004 Aug 1;558(Pt 3):1005-12. Epub 2004 Jun 24.
    • Ogasawara R, Yasuda T, Sakamaki M, Ozaki H, Abe T. Effects of periodic and continued resistance training on muscle CSA and strength in previously untrained men. Clin Physiol Funct Imaging. 2011 Sep;31(5):399-404.
    • Ogasawara R, Kobayashi K, Tsutaki A, Lee K, Abe T, Fujita S, Nakazato K, Ishii N. mTOR signaling response to resistance exercise is altered by chronic resistance training and detraining in skeletal muscle. J Appl Physiol. 2013 Jan 31. [Epub ahead of print]