Glomerular Blood Hydrostatic Pressure

Glomerular blood hydrostatic pressure is the force exerted by blood within the glomerular capillaries, and it drives the first step of urine formation in the kidneys. Blood enters through the wider afferent arteriole and leaves through the narrower efferent arteriole, maintaining capillary pressure that pushes water and small solutes across the filtration barrier into Bowman’s capsule while retaining cells and most proteins. This pressure works against opposing forces, including plasma oncotic pressure and fluid pressure in the capsule, to determine the net filtration rate. Its regulation is essential for maintaining fluid balance, controlling blood pressure, and assessing kidney function in health and disease.

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JoVE Core - Calculus

Applications of Integration to Find Hydrostatic Pressure

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2026

Hydrostatic force is a fluid's total force at rest on a surface. For a horizontal surface submerged at a fixed depth, the pressure is constant and calculated as the product of fluid density, gravitational acceleration, and depth. In the case of a vertical dam wall submerged in water, this force is not evenly distributed due to the increasing pressure with depth. This variation arises from the cumulative weight of the water above each point. Integration is used to account for the continuous...

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2025

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2025

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Glomerular Filtration: Net Filtration Pressure

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2025

Glomerular filtration, a key process in the kidneys, is regulated by three main pressures: Glomerular blood hydrostatic pressure (GBHP), Capsular hydrostatic pressure (CHP), and Blood colloid osmotic pressure (BCOP). GBHP, with an average value of 55 mmHg, promotes filtration by pushing water and solutes through the filtration membrane. This is balanced by two opposing forces: CHP, a "back pressure" exerted against the filtration membrane by fluid already in the capsular space and renal tubule,...

Noninvasive Blood Pressure Measurement Techniques

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2023

Source: Hamna J. Qureshi and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana Here we will highlight the key similarities and differences of noninvasive blood pressure measurement techniques between humans and rodents and examine the engineering principles that govern blood pressure. The principles that govern current cuff technology to acquire systolic and diastolic pressures will also be discussed. Commercially available cuffs that connect...

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