The renal medulla is the innermost part of the kidney. The renal medulla is split up into a number of sections, known as the renal pyramids. Blood enters into the kidney via the renal artery, which then
splits up to form the arcuate arterioles. The arcuate arterioles each in turn branch into interlobular arterioles, which finally reach
the glomeruli. At the glomerulus the blood reaches a highly disfavourable pressure
gradient and a large exchange surface
area, which forces the serum portion of the blood out of the vessel into the renal
tubules. Flow continues through the renal
tubules, including the proximal tubule, the Loop of Henle, and finally leaves the kidney by means of the collecting duct, leading to the renal ureter. The renal medulla (latin renes medulla = kidney middle) contains the structures of
the nephrons responsible for maintaining the salt and water balance of the blood.
These structures include the vasa rectae
(both spuria and vera), the venulae rectae,
the medullary capillary plexus, the loop of Henle, and the collecting tubule.[1] The renal medulla is hypertonic to the filtrate
in the nephron and aids in the reabsorption
of water. The portion of blood that is passed through
the glomerulus is the plasma, not serum.
Blood is filtered in the glomerulus, and is
not a selective process. Ions such as
sodium, chloride, potassium, and calcium
are easily filtered, as is glucose, because filtration is based on size. Proteins are not
passed through the glomerular filter
because of their large size, and do not
appear in the filtrate or urine unless a
disease process has affected the
glomerular capsule or the proximal and distule tubules of the nephron.
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