「Endocrinology/VasopressinADH/ControlToWaterIntake/basic」の版間の差分

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Water intake {~increases~=decreases} plasma osmolarity, and reabsorption (through the water channels, which are increased by vasopressin, ADH) {~=increases~decreases} plasma osmolarity.  Since these effects are in the {~=same~opposite} direction, with sweating, negative feedback {~facilitates~=inhibits} (the synthesis, secretion, and blood concentration of) vasopressin (anti-diuretic hormone, ADH).
Water intake {~increases~=decreases} plasma osmolarity, and reabsorption (through the water channels, which are increased by vasopressin, ADH) {~increases~=decreases} plasma osmolarity.  Since these effects are in the {~=same~opposite} direction, with sweating, negative feedback {~facilitates~=inhibits} (the synthesis, secretion, and blood concentration of) vasopressin (anti-diuretic hormone, ADH).
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2019年11月27日 (水) 07:32時点における版

POINT!
WaterIntakeBeforeBasicFeedbackToADH-Eng.jpg

① Water intake decreases plasma osmolarity, and reabsorption (through the water channels, which are increased by vasopressin, ADH) increases plasma osmolarity. These effects are in the same direction (red).

WaterIntakeDuringBasicFeedbackToADH-Eng.jpg

② Since these effects are in the same direction (red), negative feedback inhibits (blue) (the synthesis, secretion, and blood concentration of) vasopressin (anti-diuretic hormone, ADH). This decreases the number of water channels and the reabsorption of water. The plasma osmolarity-decreasing effect of the reabsorption decrease, and the plasma osmolarity becomes adequate.

Challenge Quiz

1.

Water intake increases decreases plasma osmolarity, and reabsorption (through the water channels, which are increased by vasopressin, ADH) increases decreases plasma osmolarity. Since these effects are in the same opposite direction, with sweating, negative feedback facilitates inhibits (the synthesis, secretion, and blood concentration of) vasopressin (anti-diuretic hormone, ADH).