frost said:Combination of jet lags,intercontinental flights and heavy training got me overtrained some time ago and I had to cut training quite a bit. This obviously caused CTL to drop (not to mention a dramatic drop in FTP). Last weekend I was on a first long ride for ages which ended ~190 TSS. Not very surprisingly,with CTL in thirties I got very close to a total bonk at the end of the ride. At summer season 190 TSS I would call an "extended warmup" ;-)
This got me thinking about the old power wisdom "ftp is how hard you can ride,ctl how long you can ride hard".
What actually happens in the body with increased "base" or CTL that allows riding harder for longer? Increased glycogen storage is clearly an adaptation but what more?
Definitely best answered by the ex.phys. blokes but let me see if I can make a mess of it :-)
There are three main energy sources for endurance exercise: fat, glycogen, exogenous CHO (bloodstream -> consumed). PC (phospho-creatine) is important for sprinting of course but contributes negligible energy to a 3-4-5 hr ride.
I belive the most important adaptations are:
(1) "Fat burning" (Kreb's) enzymes IIRC whose levels are linked to training volume/duration - loosely speaking "endurance" training. This energy store is essentially unlimited in healthy adults.
(2) Glycogen stores increase with endurance training but glycogen alone only gets you so far (at a decent pace!).
(3) Ability to utilize exogenous CHO? Not sure is this is an adaptation or more a result of (re) learning to properly fuel during long rides.
You might find this of interest or some links off the main page re #1
en.wikipedia.orgCitrate synthaseOpen ↗
As I said, it's really best answered by those who know this area inside and out. Apologies in advance!