ADH (Anti-diuretic hormone) is important in maintaining homeostasis in mammals. ADH is released from hypothalamus in response to high tissue osmolarity (=less water in blood). In response to ADH, the collecting duct and distal tubule In the kidney become more permeable to water; which Increases water reabsorption Into caplllaries: The amount of hormone released is controlled by a negative feedback loop. Based on the model presented, what is the relationship between ADH release, osmolarity and production of urine? poni As tissue osmolarity rises, more ADH is released, causing less water to be excreted 05 urine As tissue osmolarity rises, less ADH is released, causing less water to be excreted as unne As tissue osmolarity rises more ADH is released, causing more water t0 be excreted as urine As tissue osmolarity rises, less ADH is released, causing more water to be excreted 0: unne Tivo of the above

Respuesta :

Bases on the model presented, the relationship between ADH release, osmolarity and production of urine can be presented as: As tissue osmolarity rises, more ADH is released, causing less water to be excreted.

ADH is the Anti-Diuretic Hormone released by the hypothalamus, but stored in the posterior pituitary. It is also called vasopressin and plays two roles in the body. It is involved in the constriction of blood vessels as well as maintaining the osmolarity of the body.

Osmolarity can be defined as the concentration of solutes in the body in per liter solvent. It is necessary to maintain the osmolarity of the body in order to prevent any diseases.

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