ANATOMY+PHYSIOLOGY
4th Edition
ISBN: 9781260265217
Author: McKinley
Publisher: RENT MCG
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Chapter 24.6, Problem 30WDYL
How is the movement of H+ and HCO3− regulated by type A and type B intercalated cells?
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Chapter 24 Solutions
ANATOMY+PHYSIOLOGY
Ch. 24.1 - Which structure of the urinary system forms urine,...Ch. 24.1 - What are the two means by which the kidney helps...Ch. 24.2 - What tissue composes the fibrous capsule that...Ch. 24.2 - What are the regions of the kidney that drain...Ch. 24.2 - What three anatomic structures of the kidney are...Ch. 24.3 - Prob. 6WDYLCh. 24.3 - Prob. 7WDYLCh. 24.3 - Prob. 8WDYLCh. 24.3 - Differentiate between the function of principal...Ch. 24.3 - What are the two primary cellular components of...
Ch. 24.4 - Prob. 11WDYLCh. 24.4 - What are the three major types of capillaries...Ch. 24.4 - What is the pathway of fluid filtered by the...Ch. 24.5 - How does tubular reabsorption differ from tubular...Ch. 24.5 - How are the components of the filtration membrane...Ch. 24.5 - What is normally filtered across the glomerular...Ch. 24.5 - Prob. 17WDYLCh. 24.5 - What is the value of the NFP if the glomerular...Ch. 24.5 - Prob. 19WDYLCh. 24.5 - If HPg increases, what is the effect on NFP? Is...Ch. 24.5 - Does urine production increase, decrease, or stay...Ch. 24.5 - What are the three factors that regulate...Ch. 24.5 - Prob. 23WDYLCh. 24.6 - What are the significant anatomic and physiologic...Ch. 24.6 - What is the transport maximum of a substance? How...Ch. 24.6 - Prob. 26WDYLCh. 24.6 - Why are proteins said to be transported rather...Ch. 24.6 - How does Na+ reabsorption occur? Which two...Ch. 24.6 - What is the effect of parathyroid hormone on the...Ch. 24.6 - How is the movement of H+ and HCO3 regulated by...Ch. 24.6 - Prob. 31WDYLCh. 24.6 - Prob. 32WDYLCh. 24.6 - Prob. 33WDYLCh. 24.7 - Prob. 34WDYLCh. 24.7 - Prob. 35WDYLCh. 24.8 - Prob. 36WDYLCh. 24.8 - Prob. 37WDYLCh. 24.8 - Prob. 38WDYLCh. 24.8 - Prob. 39WDYLCh. 24 - Prob. 1DYKBCh. 24 - _____ 2. When the kidneys are described as being...Ch. 24 - _____ 3. Which of the following is located within...Ch. 24 - _____ 4. All of the following are capillaries...Ch. 24 - _____ 5. Which of the following is a component of...Ch. 24 - _____ 6. If blood pressure in the glomerulus...Ch. 24 - _____ 7. Which hormone increases Na+ and water...Ch. 24 - _____ 8. If the tubular maximum is exceeded, then...Ch. 24 - _____ 9. The function unique to the nephron loop...Ch. 24 - _____ 10. If antidiuretic hormone (ADH)...Ch. 24 - Trace blood flow into and out of the kidney....Ch. 24 - Describe where filtrate, tubular fluid, and urine...Ch. 24 - Describe the anatomic components of the...Ch. 24 - Prob. 14DYKBCh. 24 - Explain how glomerular filtration rate (GFR) is...Ch. 24 - Discuss the affect of aldosterone and antidiuretic...Ch. 24 - Explain how antidiuretic hormone (ADH) is...Ch. 24 - Describe the significant differences between blood...Ch. 24 - Identify all of the following that are functions...Ch. 24 - Explain the process of micturition.Ch. 24 - Use the following paragraph to answer questions...Ch. 24 - Prob. 2CALCh. 24 - Use the following paragraph to answer questions...Ch. 24 - Martin, a young man of 20, was in a car accident...Ch. 24 - A 19-year-old male named Paul was in a diving...Ch. 24 - A patient with cancer is treated with...Ch. 24 - Prob. 2CSLCh. 24 - Males who suffer from either benign prostatic...
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- By what mechanism does the active transport of Na1 lead to the osmotic flow of water across an epithelium?arrow_forwardDefine what is Na+/K+‑ATPase (NKA)arrow_forwardNa+/k+ pump NCX Ca2+ pump funny channels leak channels chloride shift for all transporters which are active or passive and which are found on apical surface verses basal surface?arrow_forward
- 6) Consider the mechanism of net NaCl secretion across an epithelium shown below: b) What is the driving force for Na+ transport through the paracellular pathway? c) What is the significance of K+ channels located on the basolateral membrane?arrow_forwardWhich Four factors determine the magnitude of solute flux through a mediated-transport system?arrow_forwardHow is the occurrence degree of oxidative stress on the membrane measured?arrow_forward
- Here is a chloride cell in the gill epithelium of a fish. For reference, NKA = Na+/K+ ATPaseNKCC = Na+/K+/Cl- cotransporter. (image 1) The same proteins have been identified in shark rectal gland, marine birds and reptiles (salt glands in nostrils), marine fishes (chloride cells in their gills) and mammals that transport salt in their kidneys. (image 2) When biologists were testing the mechanism of salt excretion in sharks, they used a chemical called ouabain to inhibit the Na+/K+ ATPase to see if there was an effect. Which result would you expect to see with ouabain treatment? A. A decrease in Cl- in the epithelial cells. B. An increase in ADP in the epithelial cells. C. An increase in K+ in the epithelial cells. D. A decrease in Na+ in the epithelial cells.arrow_forwardTwo of the body’s important fluid compartments are those of the interstitial fluid and plasma. How does the liver’s production of plasma proteins interact with those compartments to illustrate the general principle of physiology, Controlled exchange of materials occurs between compartments and across cellular membranes?arrow_forwardWhich variable in Fick's Law corresponds with PO2 levels and why?arrow_forward
- Name the substance responsible for most of the osmoticpressure of the extracellular fluid.arrow_forwardReferring to the figure shown, the movement of glucose is from the lumen of the duodenum through an interstitial cell, out to the extracellular fluid, and into a capillary. What would happen if the action of the Na+–K+ pumps was reduced? A)The rate of flow of glucose into the interstitial cells would be increased. B)The direction of flow of glucose would be reversed. C)The rate of flow of glucose into the interstitial cells would be reduced. D)Nothing would differ: the movement of glucose would be the same as before the reversal.arrow_forwardInterpret the effect of hyperkalemia with reference to Goldman’s equation. a) What happens to rate of K+ diffusion at the MRP equilibrium with elevated extracellular [K+] (and unchanged intracellular [K+])?b) Since this diffusion rate determines the “permeability” of the cell to that K+ ion, what happens to PK+ as a result of this elevated extracellular K+? (Hint- it HAS changed.)c) Since PK+ has changed, and PNa+ is unchanged, what happens to the MRP as a result of this change in PK+? Explain with specific reference to Goldman’s equation but there is no need to cite or calculate any specific numbers, just generalize the result.arrow_forward
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