fully analysed (100% sure)
Acute adaptation - Referred to as "responses" to exercise and are changes that occur
within the body during and shortly after an exercise bout
Chronic adaptation - Changes in the body that occur after repeated training bouts and
that persist long after a training session is over
Overload - When the neuromuscular system experiences a training stress that it is not
accustomed to experiencing
Motor unit recruitment - Refers to the process in which tasks that require more force
involve the activation of more motor units
Ex. An individual performing a 225 pound bench press would need to turn on more
motor units than would be required to perform a 135 pound bench
Rate coding - Refers to control of motor unit firing rate (number of action potentials per
unit of time). Within certain limits, the faster the firing rate, the more force is produced.
Ex. A motor unit that was activated at a rate of 20 times per second during the 50-pound
bench press may be firing at 30 times per second during the 100-pound bench press
Size principle - In general, motor units that stimulate slow-twitch motor units stimulate
fewer fibers than motor units that stimulate fast-twitch fibers.
So, smaller motor units are recruited at lower force levels and larger motor units are
recruited at higher force levels
Phosphagen system - The primary source of ATP for short term, high-intensity activities
Glycolysis - The breakdown of carbohydrates (either glycogen stored in the muscle or
glucose delivered in the blood) to produce ATP
Protein/peptide hormones - Insulin, growth hormone
Steroid hormones - Derived from a common precursor (cholesterol) and include
hormones such as testosterone (the primary sex hormone) and estrogen (the primary
female sex hormone)
Anabolic hormones - Testosterone, growth hormone, and insulin; tend to stimulate
growth process in tissues
Catabolic hormones - cortisol: function to use tissue degradation to help maintain
homeostasis of variables such as blood sugar