「SHolroydAtWeilCornellMedQatar/Endocrinology/VasopressinADH/ControlToSweating」の版間の差分

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{{Point|When plasma osmolarity is increased by sweating, the negative feedback increases (synthesis, secretion, blood concentration of) ADH.}}
{{Point|Following sweating, the plasma osmolarity increases, and negative feedback decreases (synthesis, secretion, and blood concentration of) ADH.}}


[[メディア:6-ADHcontrol-sweat.mp4|narrated video explanation]]
[[メディア:6-ADHcontrol-sweat.mp4|narrated video explanation]]
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[[ファイル:ADHControlToSweating2Eng.jpg|left|500px]]
[[ファイル:ADHControlToSweating2Eng.jpg|left|500px]]
[[メディア:WaterDuringADHcontrol.mp4|video just after ADH increased responding to sweating]]<br>
[[メディア:WaterDuringADHcontrol.mp4|video just after the increased in ADH following sweating]]<br>
Steps 3 and 4:  With too little effect of ADH, water channels, and reabsorption, the negative feedback increases (synthesis, secretion, blood concentration of) ADH.  The water channels-increasing effect of ADH will increase, increasing the number of water channels.  This increases the reabsorption of water by the kidney.
Steps 3 and 4:  With too little effect of ADH, water channels, and reabsorption, the negative feedback increases (synthesis, secretion, and blood concentration of) ADH.  The water channels-increasing effect of ADH will increase, increasing the number of water channels.  This increases the reabsorption of water by the kidney.
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[[ファイル:ADHControlToSweating3Eng.jpg|left|500px]]
[[ファイル:ADHControlToSweating3Eng.jpg|left|500px]]
[[メディア:ADHcontrol-sweat-end.mp4|video showing the changes in plasma and urine after ADH increased responding to sweating]]<br>
[[メディア:ADHcontrol-sweat-end.mp4|video showing the changes in plasma and urine after the increased in ADH caused by following sweating]]<br>
Step 5:  The ratio of Na<sup>+</sup> to water reabsorption by the kidney decreases.  This means plasma osmolarity decreases.  The increased plasma osmolarity from sweating will decrease returning to normal.   
Step 5:  The ratio of Na<sup>+</sup> to water reabsorption by the kidney decreases.  This means plasma osmolarity decreases.  The increased plasma osmolarity from sweating will decrease returning to normal.   
Because a lower ratio of Na<sup>+</sup> is reabsorbed, the fluid left in the tubule now has a higher osmolarity.  The increase in the number of water channels increases water reabsorption so there is less water.  Overall, the urine becomes more concentrated and low volume.
Because a lower ratio of Na<sup>+</sup> is reabsorbed, the fluid left in the tubule now has a higher osmolarity.  The increase in the number of water channels increases water reabsorption so there is less water.  Overall, the urine becomes more concentrated and low volume.
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//LEVEL:2  
//LEVEL:2  
//RAND  
//RAND  
After sweating, negative feedback {~=increases~decreases} (synthesis, secretion, blood concentration of) ADH.
Following sweating, negative feedback {~=increases~decreases} (synthesis, secretion, and blood concentration of) ADH.


//LEVEL:3  
//LEVEL:3  
//RAND  
//RAND  
After sweating, negative feedback {~=increases~decreases}  water channels in the kidney.  
Following sweating, negative feedback {~=increases~decreases}  water channels in the kidney.  


//LEVEL:2  
//LEVEL:2  
//RAND  
//RAND  
After sweating, negative feedback {~=increases~decreases}  water reabsorption by the kidney.
Following sweating, negative feedback {~=increases~decreases}  water reabsorption by the kidney.


//LEVEL:3  
//LEVEL:3  
//RAND  
//RAND  
After sweating, negative feedback {increases~=decreases}  urine volume.  
Following sweating, negative feedback {increases~=decreases}  urine volume.  


//LEVEL:3  
//LEVEL:3  
//RAND  
//RAND  
After sweating, negative feedback {~=increases~decreases}  urine osmolarity.
Following sweating, negative feedback {~=increases~decreases}  urine osmolarity.


//LEVEL:3  
//LEVEL:3  
//RAND  
//RAND  
After sweating, negative feedback {increases~=decreases}  plasma osmolarity.
Following sweating, negative feedback {increases~=decreases}  plasma osmolarity.


//LEVEL:3  
//LEVEL:3  
//RAND  
//RAND  
After sweating, the plasma osmolarity {decreases~=increases}.  The effect would be the {=same as~opposite to} that of ADH, water channels and reabsorption of water by the kidney, which {=decreases~increases} plasma osmolarity.  The effect of (the synthesis, secretion and blood concentration of) ADH would be {=too little~too much}.  Negative feedback {~=increases~decreases} (synthesis, secretion, blood concentration of) ADH.  This in turn {~=increases~decreases} the number of water channels in the kidney causing {~=increased~decreased} water reabsorption. Urine osmolarity will {~=increase~decrease} while volume will {increase~=decrease}.  This will {~=decrease~increase} plasma osmolarity, {~=returning to normal~separating from normal}.
Following sweating, the plasma osmolarity {decreases~=increases}.  The effect would be the {=same as~opposite to} that of ADH, water channels and reabsorption of water by the kidney, which {=decreases~increases} plasma osmolarity.  The effect of (synthesis, secretion, and blood concentration of) ADH would be {=too little~too much}.  Negative feedback {~=increases~decreases} (synthesis, secretion, and blood concentration of) ADH.  This in turn {~=increases~decreases} the number of water channels in the kidney causing {~=increased~decreased} water reabsorption. Urine osmolarity will {~=increase~decrease} while volume will {increase~=decrease}.  This will {~=decrease~increase} plasma osmolarity, {~=returning to normal~separating from normal}.
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2019年6月5日 (水) 16:17時点における版

POINT!

narrated video explanation

video prior to sweating
Prior to sweating, we assume our subject is in homeostasis with normal plasma and urine osmolarities and volumes.

ADHControlToSweating1Eng.jpg

video just after sweating
Steps 1 and 2: The subject sweated. Water will leave the plasma and its osmolarity will increase.

Sweating will increase, and the ADH, water channels, and reabsorption of water by the kidney will decrease plasma osmolarity, having the opposite effect. Thus, in this case with high plasma osmolarity, the the plasma osmolarity-decreasing effect of ADH, water channels, and reabsorption would be too little.

ADHControlToSweating2Eng.jpg

video just after the increased in ADH following sweating
Steps 3 and 4: With too little effect of ADH, water channels, and reabsorption, the negative feedback increases (synthesis, secretion, and blood concentration of) ADH. The water channels-increasing effect of ADH will increase, increasing the number of water channels. This increases the reabsorption of water by the kidney.

ADHControlToSweating3Eng.jpg

video showing the changes in plasma and urine after the increased in ADH caused by following sweating
Step 5: The ratio of Na+ to water reabsorption by the kidney decreases. This means plasma osmolarity decreases. The increased plasma osmolarity from sweating will decrease returning to normal. Because a lower ratio of Na+ is reabsorbed, the fluid left in the tubule now has a higher osmolarity. The increase in the number of water channels increases water reabsorption so there is less water. Overall, the urine becomes more concentrated and low volume.

Challenge Quiz

1.

Following sweating, negative feedback increases decreases (synthesis, secretion, and blood concentration of) ADH.

2.

Following sweating, negative feedback increases decreases water channels in the kidney.

3.

Following sweating, negative feedback increases decreases water reabsorption by the kidney.

4.

Following sweating, negative feedback increases decreases urine volume.

5.

Following sweating, negative feedback increases decreases urine osmolarity.

6.

Following sweating, negative feedback increases decreases plasma osmolarity.

7.

Following sweating, the plasma osmolarity decreases increases . The effect would be the same as opposite to that of ADH, water channels and reabsorption of water by the kidney, which decreases increases plasma osmolarity. The effect of (synthesis, secretion, and blood concentration of) ADH would be too little too much . Negative feedback increases decreases (synthesis, secretion, and blood concentration of) ADH. This in turn increases decreases the number of water channels in the kidney causing increased decreased water reabsorption. Urine osmolarity will increase decrease while volume will increase decrease . This will decrease increase plasma osmolarity, returning to normal separating from normal .