biochemistry; biomembrane transport; blood vessels; cardiovascular system; enzymes; filtration; haemodynamics; hydrostatics; kidney; molecular biophysics; neurophysiology; nitrogen compounds; numerical analysis; patient care; physiological models; sodium; sorption; NO; Na; RSNA fixed kidney; afferent arteriolar pressure; afferent arteriolar resistance; blood flow; cardiovascular model; efferent arteriolar resistance; glomerular filtration rate; glomerular hydrostatic pressure; increased RSNA effect; intact kidney RSNA; intact kidney sodium reabsorption; kidney function; left kidney RSNA fixation; long-term sodium intake reduction; mathematical model; myogenic response; nitric oxide release; normal steady state value; proximal tubule sodium reabsorption; renal nerve effect analysis; renal sympathetic nerve activity; renal vascular resistance; renin secretion; right kidney RSNA change; sodium excretion reduction; sodium filtration; sodium intake response; sodium restriction; Abstracts; Analytical models; Art; Fluids; Kidney; Mathematical model; Steady-state;
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机译:钠摄入增加期间长期肾交感神经活动抑制的数学模型
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