Muscle Fatigue and Physiology
Questions about muscle function, fatigue, lactic acid metabolism, and muscle contraction principles
Questions
During heavy exercise, we get cramps in the legs due to the accumulation of
- Carbon dioxide
- Lactic acid
- Alcohol
- Water
Glycogen is degraded to lactic acid by enzymes in muscles and liver when the animal is
- Exhausted
- Starved
- Killed
- Defaecated
- Copulated
Muscles get fatigued due to accumulation of
- Adenosine triphosphate
- $CO _2$
- Lactic acid
- Phosphate molecules
Rigor mortis in due to
- Depletion of ATP
- Excess ATP
- Excess availability of calcium
- Release of magnesium
All or none law is not applicable for
- Single skeletal muscle fibre
- Whole skeletal muscle
- Single smooth muscle fibre
- Whole cardiac muscle
Lactic acid deposition leads to
- Tetany
- Muscle fatigue
- Muscle strain
- Convulsions
All or none law is associated with
- Muscle fibre
- Neuron
- Uriniferous tubule
- Both A and B
In the anaerobic reaction of muscle, lactic acid is produced which causes painful tiredness. Where and by which mechanism lactic acid is catabolized?
- In muscle by monokinase action
- In muscle by Lohmans reaction
- In liver by Cori cycle
- In liver by phosphogen reaction
Lactic acid generated during muscle contraction is elaborated to form glycogen in
- Liver
- Pancreas
- Kidney
- Muscle
Muscle fibres that show, presence of well developed sarcoplasmic reticulum and are easily fatigued during exercise are likely to be in close association with
- Limb bones
- Wall of intenstine
- Heart
- Wall of fallopian tube
Muscles, which are immune to fatigue, are
- Striped muscles
- Cardiac muscles
- Jaw muscles
- Skeleton muscles
Which of the following type of muscles are not fatigued soon?
- Cardiac muscle
- Smooth muscle
- Voluntary muscle
- Both A and B
Feeling of fatigue after running fast for some time is due to
- Loss of energy
- Accumulation of lactic acid in muscles
- Formation of succinic acid
- Formation of biuret crystals
Anaerobic breakdown of glycogen due to repeated activation of muscles leads to accumulation of
- Uric acid
- Phenylalanine
- Lactic acid
- Glutamic acid
- Tyrosine
Substance that accumulates in a fatigued muscle is
- Pyruvic acid
- Lactic acid
- CO$ _2$
- ADP
When muscles begin converting glucose into lactic acid?
- Muscles run out of oxygen
- Accumulation of creatine in the muscles
- Muscle collapse
- All the above
During strenuous exercise, glucose is converted into
- Glycogen
- Pyruvic acid
- Starch
- Lactic acid
Panting after vigorous exercise is due to
- Oxygen debt
- Continuity of deep breathing even after exercise
- Continuity of mouth breathing started during exercise
- Requirement of rapid dissipation of energy
All or none law is not applicable for
- Whole skeletal muscle
- Single skeletal muscle
- Whole cardiac muscle
- Single smooth muscle fibre
Prolonged activation of striated muscle causes it to fatigue. What is the reason?
- Breakdown of glycogen into lactic acid in muscle during aerobic respiration
- Breakdown of lactic acid in muscle during anaerobic respiration
- Breakdown of lactic acid into glycogen during anaerobic respiration
- Produce ethanol in muscle
Lactic acid causes fatigue in muscles due to
- Sensitivity of neuromuscular junction
- Acidity
- Binding of muscle calcium
- Causing expulsion of cations
When a threshold stimulus is applied to a muscle, the muscle fibres will contract fully or will not contract at all. This is known as:
- Sliding filament theory
- All or none principle
- Maximal oxygen uptake
- Contraction period
State whether the following statements are true or false.
A drop in the force of contraction after prolonged stimulation is known as muscle fatigue.
- True
- False
Fill up the blanks in the above paragraph and select the correct option.
- i- Skeletal muscles ; ii-heavy exercise ; iii-glucose
- i- Skeletal muscles ; ii-mild exercise ; iii-glycogen
- i- Skeletal muscles; ii-heavy exercise ; iii-glycogen
- i- Cardiac muscles; ii-heavy exercise ; iii-glycogen
- End products of alcoholic - Ethanol + ${CO} _{2}$
- End products of lactic acid fermentation - Lactic acid + ${CO} _{2}$
- Glycolysis - Cytoplasm
- Key product of glycolysis - Pyruvic acid
In which of the following situation we have to use R.I.C.E. remedy?
- Frcature
- Sunstroke
- Contusion
- Epilepsy
Which of the following is not true about rigor mortis?
- It is irreversible.
- It is not a permanent contraction.
- ATP increases in muscles.
- Time of onset is not same in all muscles.
The longest phase in a single muscle twitch in a vertebrate is about 50 millisec and is ................. phase.
- Latent
- Contraction
- Relaxation
- All are equal
Rigor mortis is
- Contraction of muscles after death
- Contraction of muscles before death
- Shivering of muscles
- None of the above
TLV' stands for
- Temperature limit value
- Threshold Limit Value
- Tropical limit value
- Time Limit value
Exposure to $H _{2}S$ for a short period, causes
- Vomiting
- Mortality
- Fatigue
- Unconsciousness
Contraction of shortest duration is of
- Heart
- Eyelids
- Arm
- Jaws
When supra maximal stimulus is given then
- Muscle contraction is more than normal
- Muscle contraction is less than normal
- Muscle contraction is below average
- None of the above