PIO 212
Renal and Body Fluids Physiology
2 Unit(s) (LH 30)
Course Description
At the end of the course, the students should be able to
1. sketch a cross section of a kidney; identify the renal cortex, renal medulla, renal calycies,
medullary pyramids, renal pelvic space, renal artery, renal vein, and ureter;
2. describe renal blood flow, renal plasma flow, glomerular filtration rate, and filtration fraction
and list typical values;
3. explain the concept of renal clearance. Use the clearance equation and an appropriate
compound to estimate the glomerular filtration rate, renal plasma flow, and renal blood flow;
4. describe the effects of reductions in GFR on plasma creatinine concentrations and plot the
relationship;
5. discuss the role of the ascending limb of the loop of Henle in producing a high renal interstitial
fluid osmolality. From the loop of Henle, contrast the tubular fluid and interstitial fluid
osmolality changes that allow either a dilute or a concentrated urine to be produced and
excreted;
6. describe processes that lead to acid-base disturbances and list the common causes;
7. identify major routes and normal ranges for water intake and loss, and predict how changes
in intake and loss affect the distribution of total body water.
8. list the various body fluid compartments and their ionic compositions
9. describe the methods used in measuring the body fluid compartments and
10. discuss the role of the kidney in maintaining homeostasis of body fluids
Course Outline
Macroscopic, microscopic and ultra-structure of the kidney. Elements of renal functions.
Glomerular filtration. Concept of clearance. Tubular reabsorption and secretion. Renal blood flow.
Body fluid and electrolyte balance. Buffer mechanism and pH regulation. Counter-current system.
Micturition. Abnormalities of renal functions. Composition and estimation of body fluid
compartments. Concept of water and electrolyte balance. Role of the kidney in body fluid
homeostasis.
300 Level