Physiological Pressures

Physiological pressures are force-per-area measurements generated within living tissues and fluid compartments, and they are essential for understanding how the nervous system is perfused, protected, and regulated. In neuroscience, pressure gradients drive blood and cerebrospinal fluid movement, while the balance among arterial pressure, intracranial pressure, and cerebral perfusion pressure influences oxygen delivery to brain tissue; changes in vessel diameter or compartment volume can shift these relationships. Measuring and modeling these pressures supports research and clinical monitoring in brain injury, hydrocephalus, and cerebrovascular disease, helping investigators interpret neural dysfunction and assess factors that preserve cerebral blood flow.

Physiological Pressures - Related Videos

Research

JoVE Journal - Biology
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Imaging Ca2+ Signals in Small Pulmonary Veins at Physiological Intraluminal Pressures

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2025

In this protocol, we present a novel technique for recording and analyzing Ca2+ signals in intrapulmonary veins (small pulmonary veins or PVs) at physiological intraluminal pressures. The technique involves isolating small PVs, incubating them with a Ca2+ indicator, cannulating and pressurizing them, confocal imaging of Ca2+ signals, and data analysis.

Education

JoVE Lab Manual - Biology

Physiology of the Circulatory System - Concepts

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2019

Homeostasis Conditions in the external environment of an organism can change rapidly and drastically. To survive, organisms must maintain a fairly constant internal environment, which involves continuous regulation of temperature, pH, and other factors. This balanced state is known as homeostasis, which describes the processes by which organisms maintain their optimal internal conditions. To maintain homeostasis, organisms have developed structures with distinct functions. Physiology is the...

Physiology of the Circulatory System - Student Protocol

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2019

Measuring Circulatory System Function in Humans ExpandBefore starting the experiment go to the front of the room and collect an alcohol swab, a sphygmomanometer, and a stethoscope. Clean the earpieces with the alcohol swab and then insert them into your ears. To check if the stethoscope is in the on position, gently tap the flat metal disc called the diaphragm. If you hear a sound it's on. If not, turn the metal disc and tap again and keep turning and tapping the disc until you hear a sound.

Synthesis and Microdiffraction at Extreme Pressures and Temperatures

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Cited by 5 •

2013

The laser heated diamond anvil cell combined with synchrotron micro-diffraction techniques allows researchers to explore the nature and properties of new phases of matter at extreme pressure and temperature (PT) conditions. Heterogeneous samples can be characterized in situ under high pressure by 2D mapping and combined powder, single-crystal and multigrain diffraction approaches.

Measuring Pressure Volume Loops in the Mouse

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Cited by 16 •

2016

This manuscript describes a detailed protocol for the collection of pressure-volume data from the mouse.

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