In Vivo Microcirculation

In vivo microcirculation is the movement and regulation of blood through arterioles, capillaries, and venules within living tissues, where oxygen, nutrients, and metabolic waste are exchanged. Its function depends on vessel diameter, endothelial signaling, blood viscosity, red blood cell deformation, and interactions between circulating leukocytes and the vessel wall. Studying these processes in intact organisms, often through real-time imaging and physiological measurements, reveals how local perfusion adapts to tissue demand. In biology and medicine, in vivo microcirculation research helps characterize inflammation, wound healing, tumor vascularization, and vascular disease, supporting improved models of tissue function and therapeutic response.

In Vivo Microcirculation - Related Videos

Research

JoVE Journal - Biology
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The Mouse Cremaster Muscle Preparation for Intravital Imaging of the Microcirculation

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Cited by 46 •

2011

A tissue preparation is described for visualization and experimental manipulation of the living microcirculation. In anesthetized male mice, the thin, highly vascularized cremaster muscle is prepared for intravital microscopy to study microvascular networks including arterioles, capillaries and venules. This preparation is readily adapted for rats and hamsters.

Research

JoVE Journal - Neuroscience

Intravital Microscopy of the Mouse Brain Microcirculation using a Closed Cranial Window

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Cited by 36 •

2010

Intravital microscopy to follow temporal and spatial hemodynamic and inflammatory events in the pial microcirculation.

Intravital Microscopy of the Microcirculation in the Mouse Cremaster Muscle for the Analysis of Peripheral Stem Cell Migration

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Cited by 4 •

2013

Intravital microscopy of the mouse M. cremaster microcirculation offers a unique and well-standardized in vivo model for the analysis of peripheral bone marrow stem cell migration.

Research

JoVE Journal - Biology
Free Sample

Microiontophoresis and Micromanipulation for Intravital Fluorescence Imaging of the Microcirculation

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Cited by 3 •

2011

Microiontophoresis entails movement of ions from a micropipette in response to a difference in electrical potential between the inside and outside of the micropipette. Biologically active molecules are thereby delivered in proportion to electrical current. We illustrate acetylcholine microiontophoresis in conjunction with micromanipulation to study endothelium-dependent vasodilation in the microcirculation.

Laser Doppler: A Tool for Measuring Pancreatic Islet Microvascular Vasomotion In Vivo

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Cited by 7 •

2018

Pancreatic islet microvascular vasomotion regulates islet blood distribution and maintains the physiological function of islet β cells. This protocol describes using a laser Doppler monitor to determine the functional status of pancreatic islet microvascular vasomotion in vivo and to assess the contributions of pancreatic islet microcirculation to pancreatic-related diseases.

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