Showing posts with label alertness. Show all posts
Showing posts with label alertness. Show all posts

Sunday, July 18, 2010

Substance review: Caffeine part III


Part III and the final post in the caffeine substance review, click for Part I and Part II.

Conclusion:
If caffeine is to be used as a cognitive sports enhancement supplement then it should be used infrequently and for competition events only. Furthermore it should be used in specific relationship to the type of sport. The studies examined all used significant dosages of caffeine, so while the occasional coffee wont hurt you routine I would be careful of multiple cups and in supplementing any existing casual habit with a specific supplement.

In all situations caffeine should be avoided during training sessions. It has been shown to not improve intentional learning and any gains from being able to push harder will only build up tolerance come game time or race day.

If you participate in a sport where your primary goal is power without endurance (e.g a lineman, power lifter or sprinter) you should probably limit caffeine use altogether. You will not benefit as greatly from creatine's endurance use while if you use a creatine supplement then the torque you gain will be lost.

If your role has features that are more comprised of intermittent sprints or flat out endurance (say midfielder, wide receiver or a mixed martial artist who goes the distance) then you will find caffeine to be a benefit. It will improve your working memory and reaction speed allowing you to better execute the techniques and plays you have trained for, while decreasing any feelings of fatigue you are experiencing. Be wary though, while in low doses caffeine elevates mood, the dosages used in the studies could be significant enough to make you jittery and on edge.

As a general supplement to enhance cognition in sports it seems limited in application due to lack of effect in actual learning, the possibility of negating existing supplements effectiveness and the side-effects of the large dosages required to see significant effects.

What to watch out for
While you should be able to eat chocolate and drink green tea as per normal you should monitor how much caffeine you intake as part of your coffee, tea, soda and energy drink consumption habits. In addition if your existing diet or supplements contain any of the following, then they contain caffeine and need to be considered in light of the above:

  • Guarana (sometimes labelled as Pullinia capana)
  • Kola nut
  • Yerba mate
  • Yaupon Holly
Further reading:

Saturday, July 17, 2010

Substance review: Caffeine part II


Continued from Part I.

Knowing how caffeine works we can hypothesise about how it will effect our body and mind during sport. Combining this with what has already been formally tested and gather a good idea of how to use caffeine or whether to use it at all.

Physical effects:

Caffeine is usually absorbed at around 15 minutes after oral consumption and intuitively the adrenaline rush it produces seems to be ideal for surges of power. Sports like football, tennis and basketball constantly use a number of repetitive bursts that could benefit. Apart from being quickly absorbed, caffeine has a half-life of around 4-6 hours, all other things being equal. That kind of time is generally longer than your average football match and so it follows that caffeine could have potential benefit in endurance sports too.

A number of older articles (eg this one) have suggested that caffeine was unsuitable for short burst events, but since then reasearch has indicated significant advantages. Swimmers found that their VO2 max and velocity increased. In more universally applicable research, short sprinting bursts also displayed improved performance in both sprinters and the same group of reasearchers found similar advantages in a similar test with team athletes.

For endurance athletes the evidence is more consistent over a greater period of time, with significant increases witnessed as far back as the 70s. Apparently the first studies were on cyclists by David Costill who showed an approximate 20% decrease in fatigue, however I have been unable to source this article. There are several more recent studies which back this original research up. A Kalmar and Cafferelli study showed increased endurance in leg extensions of more than 16% in voluntary contractions. It has been shown that caffeine increases an endurance athelete's perception of fatigue and the placebo effect of caffeine has also been measured to significantly improve performance even in the absence of caffeine.

There are a number of other studies (I reccomend a quick search on PubMed) to a point where you could reach information overload. Generally the various studies' usefulness is limited due to the sample size or methodology flaws. This review of the existing caffeine literature sums it up rather nicely:

these benefits [of caffeine] are likely to occur across a range of sports, including endurance events, stop-and-go events (e.g., team and racquet sports), and sports involving sustained high-intensity activity lasting from 1-60 min (e.g., swimming, rowing, and middle and distance running races). The direct effects on single events involving strength and power, such as lifts, throws, and sprints, are unclear.

There is also the question of Caffeine's interaction with other supplements, in particular one of the most popular of modern supplements: creatine. Research by Vandenberghe et al has shown that caffeine has a very detrimental effect on creatine use for dynamic power, however both a Doherty et al study and a very recent Smith et al study showed that caffeine had no detrimental effect when combined with creatine. Smith's showed a creatine and caffeine (amongst other supplements) stack improved performance over a placebo. At first glance you might take the modern research over the later, but I would argue that the negative effects on creatine are still a significant concern.

Articles have raised concerns about Vandenberghes' methodology, focusing on a lack in wash-out periods for creatine. This is completely misplaced when you observe the placebo was in fact just creatine and so the methodology was sound. By contrast the stack tested by Smith et al does not isolate which ingredient is contributing to the performance so it could be any portion that is enhancing performance or even being held back by other ingredients. More damning is the fact the trial is single blind only and using a proprietary supplement. It is better to point to Doherty et al, who allows us to see that caffeine is useful in short sprint situations which leads us to an interesting situation. It appears as though caffeine negates the explosive power of creatine but not the mass and increases endurance in repeated interval exercise.

Cognitive effects:

If caffeine puts the body into an adrenaline fuelled state and constricts blood vessels in the brain, it could easily be expected that it would have negative effects on cognition. Some meta-analysis (an analysis of existing results from papers) paints a comprehensive picture of the effects. Perhaps surprisingly it appears that while there is no positive impact on memory recall, there is generally no negative effect either. Of specific interest to sports is that generally caffeine improves concentration, reaction time and passive learning, but not in intentional learning. Similarly its ability to improve mood is relative to dosage.

A negative side of caffeine's use as a supplement is using to the point of tolerance build up. As you would intuitively expect, individuals that regularly consume caffeine display less of the symptoms and withdrawal from heavy usage commonly results in side effects like headaches as blood vessels expand in the brain, tiredness and a lack of motivation. This is something athletes should certainly avoid. An increase in drowsiness is not beneficial physically or mentally, nor is a dependence on caffeine to operate at a previous baseline level of performance.

In Part III we will analyse the usefulness of caffeine as a sports supplement.

Sources and further reading:
http://www.ausport.gov.au/ais/nutrition/supplements/supplement_fact_sheets/group_a_supplements/caffeine
http://www.trifuel.com/triathlon/nutrition/caffeine-and-endurance-000402.php

Thursday, July 15, 2010

Substance review: Caffeine


So I've just sat down and sucked back an energy drink laden with caffeine and I'm getting some familiar feelings. After a few minutes of staring at a mountain of emails, I start becoming more alert and I'm now ploughing through them. The sluggish feeling is shrugged and my fingers rain forth words in a flurry of activity.

Caffeine has been consumed in some form or another for almost as long as we've been able to record history, probably at first through the drinking of teas. Its pharmacological effects became better studied with the rise in the popularity of coffee during the 15th century. Caffeine was isolated as the active ingredient in products like tea and coffee by Friedlieb Runge in the early 19th century, but it took the modern application of the food and beverages industries' marketing to really kick off consumption.

The caffeinated soda drink Coca Cola was launched in the late 19th century before rocketing to its status as an American icon and the undisputed champion of the soft drink market. Red Bull then upped the stakes in the late 20th century when it successfully promoted a westernised version of an Asian energy syrup, more than tripling the caffeine content (per 100ml) of Coca Cola. Fast forward to today and we have a $5.7 billion industry for energy drinks along with the more traditional outlets like tea, coffee and soft drink.

I can only assume caffeine is such a popular stimulant because not only is it legal in just about every country in the world, but it also has some pretty obvious effects. I'm feeling a boost in productivity right now, people also note they feel more alert and their mood is elevated. These all sound like positive attributes for a mental enhancer, but most of the caffeine in the highly caffeinated drinks comes from decaffeinated coffee. If people are decaffeinating their drinks then it follows that people out there feel there are some significant negative effects of caffeine.

Caffeine works because it closely mimics the neurotransmitter adenosene and competes with it when attaching to receptors. Whereas adenosene's job is slow the nerve cell activity down before periods of rest, Caffeine attaches to the same receptors but does not effectively activate the receptors that slow down cell activity.

The pituitary gland is a part of the brain that regulates many bodily function including metabolism. It recognises the increased levels of cell activity caused by the caffeine blocking adenosene's effect so it triggers the release of epenephrine.

Epenphrine is commonly known as adrenaline, the hormone that puts the body in a state of preparedness for danger. This includes phenomena like reducing blood flow to the skin to stop bleeding, increasing blood flow to the muscles to improve activity and the liver releasing sugar for a quick energy burst. It also constricts blood vessels in the brain which can aid in some types of headaches.

Caffeine constricting blood vessels in the brain sends warning signals over its usefulness as mental stimulant. Other problems with caffeine include the side-effects of withdrawal from constant use. After constant consumption of caffeine sensitivity to adenosene would have increased to compensate for the caffeine inhibiting its effects. This in turn leads to increased sleepiness, lack of motivation and concentration - all of great concern to cognitive performance.

What then is the trade off in caffeine's use? How do we decide whether the benefit of caffeine's epenephrine release is worth the cost?

In the next post I will discuss the implications of some its effects onto an athlete who wants performance bothphysically and mentally.

Sources and further reading:
http://emedicine.medscape.com/article/1182710-overview
http://www.newscientist.com/article/dn8401-coffees-effects-revealed-in-brain-scans.html
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6T0R-4D2MVP5-1&_user=10&_coverDate=08/01/2004&_rdoc=1&_fmt=high&_orig=search&_sort=d&_docanchor=&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=b4e918620e14631692debfeed9ed1d0a

Photo by Carlos Porto