Ever wondered why some training programmes work for some athletes and not for others? Why some people are genetically gifted athletes? Why there is a fixed set of intervals for all athletes? Why certain drugs work for some and not others? Do compression socks work? What the hell does a VO2 max test tell you, is it just useless information? Is lactate friend or foe? I delve into the sport science world and try to find the answers to train smarter and hopefully become a better athlete. This page is written in my own thoughts and words with a cross-pollination from several other sites and links to the original articles. Some of it might sound like a rant but it is written to make you think. So if you read it without a open mind then your in the wrong place. Enjoy and open your mind.
Showing posts with label metaboreflex. Show all posts
Showing posts with label metaboreflex. Show all posts

Saturday, July 16, 2011

Diaphragm and respiratory training (SpiroTiger).

This is the SpiroTiger (ST) article that I published over a year ago and has been rewritten with a year and a half worth of experience and improvements. Keep in mind that every person is a individual and he or her has their own weaknesses, so there may be different reaction to what I have found.

Background

Most athletes do not even think of training their lungs, they think that they can not train their lungs, that their lungs could not possibly limit their performance. And that their body is limited by how high their heart can beat and how much watts their muscle can push.

When we look at the body in terms of what could limit performance we see that there are a few trainable systems in the body. The muscular system, the cardiac system and the respiratory system. This is a very broad view and obviously each system can be broken down further and interact with each other. When we use certain equipment we can find our weaknesses within these systems and train them. In the case of this article topic, if we find the need to train the respiratory system we have certain means by which we can do this.

What you have found through testing will determine how you can use a breathing device to strengthen your respiratory system. Now there are a few devices out there with which you can train the respiratory system and you can make your own. But the only current one that I am aware of that has a safety system build into it is the SpiroTiger. Any other system you will need a oximeter and capnometer at a minimum to control blood saturation and PCO2 levels, the price of a capnometer would already have overshot the price of a SpiroTiger. The build in sensors for the SpiroTiger monitor the amount of air movement and calculate if you continue at the current breathing rate if you will move into a hypercapnia state in which case the system will shut down as a safety precaution. For Hypercapnia specific work we override the safety features. The bonus is that there is no filters to replace on the ST as with other hypoxi equipment. (hypercapnia and hypoxia work is not supported by the manufacturer and is not recommended unless you have had instruction).

With the ST we can dial in breathing frequencies from 15 up to 60 breaths per minute and change the breathing ratios. Show me another breathing device that can do this and with which you can do endurance work for the breathing muscles? Most work outs on other devices last 30 seconds which will not challenge the respiratory endurance muscles. You may ask why would you use a device and not just go out and train? By challenging your respiratory system specifically you don’t risk over stressing any of your other systems. If your respiratory system is compensating for something else that is a weaker system, you will need to overstress the weaker system first before placing enough stress on the respiratory system, in this way with the ST we can dial in on the respiratory system without stressing other systems that we want to keep recovered.

Training ideas

One idea would be to do a training session, and perhaps you have challenged your cardiac system, but your respiratory system still needs a workout, this is where the respiratory work can come in. But then if you look at it at from another angle if you were perhaps swimming and you were really trying to challenge your lungs by instead of breathing every other stroke and breathing say every fifth or sixth stroke. This could challenge the inhalation and the gas exchange due to the time delay and short period you have to breath, then because your lung are already stressed then it may not be such a great idea to stress them again with the ST.

The idea behind the ST is to train the endurance muscle of the lungs which will train the diaphragm, breathing co-ordination and the inter and intra muscles involved during breathing. By training our respiratory system we may reduce or slow down the effect of the respiratory Metaboreflex (studies from Dempsey).

So the big question that a lot of people will want to know is will breathing training make me faster and stronger? The simple answer to this is it depends on what your limiter is, is your limiter your respiratory system? And then it depends how you use the ST to challenge your limiter?

Diaphragm training

Here are some of my experiences over a year and a half. I used mainly larger bag sizes to challenge my diaphragm strength, with 4-6 ST sessions a week, although I have now reduced this to 3 session unless I am doing hypoxia work. The diaphragm is one of the main supporting core muscles. You can do as many sit ups, planks and traditional core work as you like, but if you can't target your diaphragm all this traditional core work will only make you good at sit ups etc. Plus a six pack is not going to make you race faster. From video footage I know that my technique 'falls apart' from the core area when I am tired at the end of a race. Knowing that the breathing training might have a effect on my core, I decided to totally avoid traditional core work, the only place that I would still target my core is when lifting weight during squatting, dead lift, olympic lift etc. This would allow me to know that any diaphragm strength gain came mainly from the breathing training. Which it did, and it took about 5 months to notice. A year later (still avoiding core specific work) looking at new video footage you can see I do not 'fall apart' from the core anymore, and I am convinced that this is from training my diaphragm with the ST. (I am not suggesting that you do not do core work, but simply that you understand that there are better ways to target the main core muscles).

The biggest challenge in any work out is for this to transfer to the sport that you do, you lift weights so that it would transfer to cycling, you might do cross country skiing in winter to become a better cyclist in summer, you might run and bike to become a better cross country skier. With the breathing training it is the same concept. I want to be able to use a larger portion of my Vital Capacity (VC) so in effect increase my Tidal Volume (TV). But over the past year this work hasn’t really transferred, although I have been able to reduce my breathing frequency (RF). So the plan now is to use a bag size and RF that resembles my TV and RF at the level where things become critical in my body, and in this way challenge my respiratory system which could possibly make a structural change. Time will tell.


Hypercapnia and cool downs


I have misused the ST and used if for hypoxi work, always using a oximeter and pulse watch to check that I control my SpO2. I played with this idea over the summer and took it one step further into my cool downs and recovery in between sessions. What does this mean? I do not do a cool down in the traditional sense anymore. I use hypercapnia. We all know that Lactate is our friend and the body uses it as a fuel. Some background. During exercise, hydrogen ions H+ accumulate in the body which leads to a drop in the body’s intermuscular pH which will affect muscle performance. The more the body relies on glycolysis as the primary energy system the higher the production of H+ and lactate. Although the level of lactate has very little to do with the pH. Lactate gets produced as a by product and helps to buffer the H+ which there fore helps to prolong our workout. (The H+ may have a negative effect on the coupling of Ca++ and Mg-- on ATP production). So by keeping lactate in our system we have firstly a good source of energy plus we have a buffer system for the H+.

Now by cooling down traditionally we are taking away blood from the vital system. Because blood is needed again for the muscle and we are taking away the Lactate needed to fuel our brain, heart and get rid of the bad H+. So this is how I have done it, with out any negative results and keeping lactate and blood available where it is needed for faster recovery.

As soon as I can, after a race when every one else is 'cooling down' I use respiratory intervention to cool down instead, using hypercapnia. This creates a respiratory induced acidosis, (during exercise your body creates metabolic acidosis). Initially this will create some more H+ , but also your body will increase the CO2 level, Increase CO2 will release O2 from haemoglobin which will aid recovery. I do this for some time and it depends on how tired my respiratory system is, I will never push it further based on a time. Simply feeling and generally aim for several minutes. followed by a second session later in the evening. What I will start to add to this idea now is to first load the haemoglobin with O2 directly before the hypercapnia so that there is more O2 that can be released from the haemoglobin and possibly myoglobin. The early release of O2 through CO2 creates a better use of lactate and helps shuttle the H+ out of the system. And that is my recovery, only thing I might ad to at the end is a walk, thats it. 

Hypercapnia and warm up 

I have added hypercapnia in my warm up. Similar to above, so I have done my normal warm up which is up to race pace, straight from this I will go on the ST and go hypercapnic for 5 min.  From here I am ready to go. This season I will experiment with hypocapnia before the hypercapnia then race. The same idea could be used in between intervals. (5 min at hypercapnia is a ball park figure as it is just long enough to get the desired result but not so long that I am sitting around losing the optimal blood flow from the warmup). 

All these ideas are trial and error, and they are individual dependant, some people may respond to it, some may not, the results will depend on your limiters. Some people may benefit from a more hypocapnia versus hypercapnia state just before their race start dependant on the type of race start and how there body reacts. Other people who have more of a respiratory limitation might benefit from doing some race pace breathing before a race or hard session as to avoid or slow down the process of the metaboreflex reaction during the race. I wanted to integrate ST work into my training, so go hiking with it, but I decided against this as a lot of the time my blood saturation is already very low, and adding more stress with breathing which would likely lead to a even further drop in blood saturation would not be the smartest idea if I want to increase the muscle recruitment (this assumes that the blood saturation is a reflection of the muscle tissue saturation which is not always the case).

Lastly, would I recommend buying a SpiroTiger? Put it this way I have bought a second ST, which is a upgrade from the first one I owed. The SpiroTiger is a powerful tool if used correctly. Find your limiter, figure out how it will react, then trial it and apply the physiology instead of following every one else just because they do it. 

Wednesday, September 8, 2010

SpiroTiger

SpiroTiger:  Spiro what? sounds like a fuzzy little animal that lives in the woods!  Rather it is currently the only training device that can train your lungs effectively.  Sure there are other low cost devices such as Powerbreathe and PowerLung out there, but they will only allow one to train the respiratory muscles for about 30 seconds before one goes blue in the face and keels over panting.

The PowerLung is more like gym training for the lung where as the SpiroTiger was designed to train the endurance muscle of the lungs which will train the diaphragm, breathing co-ordination and the inter and intra muscles involved during breathing.

If used correctly will a athlete develop a larger VO2? Will you run/bike/ski/swim faster? Will you have more power? It all depends on what is limiting your performance... if you have a respiratory limitation and then strengthen this limiter then the answer to the previous questions is a possible yes. So for the same given heart rate, power output and effort your lungs could be more efficient.  Depending on how much you use and abuse the SpiroTiger (abuse because there is some unofficial protocols for hypoxia (IHT) training, disclaimer: The Spiro Tiger is not ( NOT ) build to be used as a IHT equipment but only as a diaphragmatic endurance training equipment the reason is the O2 and pCO2 reactions) you could improve the gas exchange in the lungs, improve muscle coordination of the muscles involved.  Example: If a athlete was tested to have a limitation of the respiratory system and strengthened the lungs he will likely be able to race or train longer before his diaphragm muscles starts to tire out, where upon his vT or TV (Tidal Volume) might likely drop (smaller TV), his breathing rate will increase and the body will have one of several reactions, one could be metaboreflex (here is another explanation, metaboreflex) or the ECGM (Extended Central Governor Model).   The better we can train our weakest system (which can be found through various tests) the better we can train the system before the ECGM or CGM "kicks in".

You may ask don't we train our lungs when doing normal exercise?  Yes and no!  How often can you stress your respiratory system to get the training effect you want for the lungs? If your lungs is not your weakest link and example your muscle utilisation is the limiter and you train just up to the point where the muscle is stressed (assume the other two systems do not compensating for it) then it is unlikely you will be able to efficiently and regularly train the respiratory system through normal exercise.

With the SpiroTiger a athlete can effectively train his lungs every day, but within reason, I wouldn't use it the day before a race or hard session in case the breathing muscles involved has not recovered in time.

Abit more on the device and my own findings using the SpiroTiger: The device works with a hand held unit that can be programmed for breathing frequency and bag size.  The unit will also give information if you continue to breath incorrectly at the current breathing rate (inhaling more air than is being exhaled and vice versa) that you will start to hyperventilate or go hypercapnia in which case the machine will shut down as a safety precaution.  Apart from washing the device there is zero maintenance cost to it.  A Pulse Oximeter is used as part of my Spiro training to monitor blood oxygen saturation which is also vital when doing Hypercapnia workouts. 

Using it one will unlikely see any difference for some weeks. The main problem with the device is boredom, working out session which is interesting and fits in with my normal training programme.

Is it a training session?  Damn right, a average session is about 25 - 45 minutes. Sometimes after a session I am totally knackered, out of breath and my stomach muscles hurt!   Why my stomach muscles are hurting is probably because  I am using my diaphragm more than normal. The Diaphragm plays a big part in core stabilization.  So strengthening of the diaphragm with breathing training could prevent or slow the process of a athlete falling apart at the core. 

I have noticed huge differences in breathing using the SpiroTiger as part of a warm up before a race or hard training session. Yup breathing into a bag that resembles a over sized condom in front of your team mates does make one look like a plonker! But while they are lying on the floor from the last sprint session and I am already walking down the hill for the next rep who's laughing then!  Some differences I have notice both from daily use and as part of a warm up is, not gulping or gasping for air, I seem to recover (respiratory) quicker between intervals.  I don't have erratic breathing patterns in the early parts of a session and my lungs don't hurt as much anymore. A warm up may vary depending on what kind of race warm up a athlete needs respiratory wise.  One theory is a warm up of the diaphragm to give a metaboreflex reaction before the start of a race so you have pushed the respiratory rate into over drive so that when the race starts the body doesn't panic and the metaboreflex is delayed. Or you simply need to control the CO2 level, so you could go either hypercapnia or hypocapnia all dependent on your race start type. There is no specific protocol and it is very individual, I myself am still trying different variations to see what works. 

Another area that I have noticed differences compared to the past has been when training at altitude (IHT and Hypercapnia is not suported by the manufacturer, a athlete should work with a physiologist or doctor when planning to use the SpiroTiger for other than what the manufacturer recommends). With all of this there could be other factors also involved but I believe a lot has to do with how I have trained my lungs which was previously not possible. Another area I will summarise in a later blog is the use of hypercapnia for recovery which comes mainly from Russian studies.

SpiroTiger is not the solution to winning a race that will make you go from zero to hero, but it will add another tool to your training box. Keep in mind when training the respiratory system with this device that you are only training a part of the whole working system and the results are very individual. For further reading on SpiroTiger training visit the SpiroTiger FaCT, SpiroTiger Time to try harder.