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During strenuous exercise, which of the following changes most influences total peripheral resistance?
A. Decreased blood viscosity
B. Decreased Sympathetic cholinergic activity
C. Increased sympathetic adrenergic activity
D. Vasodilation in skeletal muscle
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- During low intensity, long-duration exercise (long-distance running, for example), fatigue is NOT believed to be caused by: 30. A. The declining levels of muscle glycogen and blood glucose levels. B. The loss of extracellular electrolytes through sweating. C. The partial fatigue of neurons within the Cerebrum. D. The decrease in interstitial temperature observed in active muscle fibers.Vasodilation in the heart and skeletal muscles during exercise is primarily due to the effects of a. alpha-adrenergic stimulation. b. beta-adrenergic stimulation. c. cholinergic stimulation. d. products released by the exercising muscle cells.Which of the following statements is false? a. The sympathetic nervous system releases epinephrine and norepinephrine, which are positive chronotropic and inotropic agents. b. The endocrine system regulates cardiac output through chronotropic and inotropic hormones and through hormones that regulate water balance .c. The parasympathetic nervous system releases acetylcholine,which is a strongly negative inotropic agent. d. Factors such as electrolyte concentrations, body temperature,and age all affect cardiac output.
- Which of the following variables does NOT exhibit the same graphical response (plotted as a line graph) from rest towards maximal endurance (aerobic) exercise as that of VO2? a. Diastolic blood pressure b. Cardiac output c. Stroke volume d. Heart rate e. Systolic blood pressureWhich of the following rows describes the change in heart rate, blood flow to skin, and glucose storage that would be expected to occur immediately following stimulation of the parasympathetic nervous system? Select one: a. Heart Rate Blood Flow to Skin Glucose Storage Increased Increased Decreased b. Heart Rate Blood Flow to Skin Glucose Storage Decreased Decreased Increased c. Heart Rate Blood Flow to Skin Glucose Storage Decreased Decreased Decreased d. Heart Rate Blood Flow to Skin Glucose Storage Increased Increased IncreasedIncreased action potentials from the sympathetic nervous system would cause which of the following? a. release of acetylcholine at sinuatrial nodal cells b. release of acetylcholine at cardiac muscle cells c. increased strength of contraction d. decreased heart rate
- A. Neuromuscular junction ere a nerve cell contacts a muscle cell relaying a signal to contract in the form of an action potential is В. C. Motor end plate Axon terminals D. Sarcolemma 36-Primary cilia present in endothelial cells, they exhibit a major role in the production of a potent vasodilator that is A. NO gas B Smooth muscles surrounding blood vessels C. Skeletal muscles surrounding veins D. 9+0 structure 37-In the structure of microtubules doublets in the axoneme, all the tubules contain. wall in which ............ is a major component. A. Dynein arm, tektin B. Tubulin, tektin and they share a C. Tektin, Dynein arm D. Nexin connection, interdoublet link 38-The best-studied type of myosin motor protein is A. Myosin II It has two heavy chains with four light chains. B. Myosin V C. Myosin VI D. Myosin X 39-During cell crawling, the formation of a protrusion at the front of the cell is necessary for a cell to move forward. Two types of protrusions depending on actin dynamics. A…The atrioventricular node is located in the: A. right atrium B. right ventricle C. septum between the right and left atrium D. juncture between the right atrium and ventricle Preganglionic parasympathetic neurons release NT that binds to: A. nicotinic acetylcholine ligand-gated receptors B. muscarinic acetylcholine GPCRs C. beta-1 norepinephrine GPCRs D. norepinephrine ligand-gated receptorsa calcium channel blocker or an antagonist drug will produce a. vasoconstriction b. increase in blood pressure c. increase in total peripheral resistance d. reduction in cardiac muscle contractility
- a. What changes in the Pulse Rate and Blood Pressure will you notice as a person exercises? Make a concept map regarding the explanation behind the changes in the PR and BP as a person exerted physical activity. b.What changes in the Pulse Rate and Blood Pressure will you notice before and after eating? What's the possible explanation behind such changes? c. What changes in the Pulse Rate and Blood Pressure will you notice from reclining to standing position? Explain the possible explanation as the subject changed his body position from reclining to sitting and then to a standing position.A 32-year-old male is diagnosed with primary hypertension. His physician recommends a new drug for hypertension that acts by decreasing vascular smooth muscle contractile activity without affecting ventricular contractility. Which of the following is the most likely site of action for the new drug? a. -adrenergic receptors b. Calmodulin c. Troponin d. Tropomyosin e. Protein kinase AWhich of the following would result in higher force production at lower action potential frequencies W. increase SERCA activity X. increase DHPR sensitivity Y. increase acetylcholineesterase activity Z. increase Ca2+ release