Myogenic Vasodilation

Myogenic vasodilation is an intrinsic widening of blood vessels caused by reduced pressure or stretch in vascular smooth muscle, helping regulate tissue blood flow. When transmural pressure falls, smooth-muscle membrane depolarization and calcium entry through voltage-gated channels decrease, reducing contraction and allowing the vessel to relax; this response occurs largely independently of neural or endothelial signals. In neuroscience, myogenic vasodilation contributes to cerebral autoregulation by stabilizing blood flow despite changes in systemic pressure. Studying this mechanism helps explain vascular responses in the brain and informs research on hypertension, stroke, traumatic brain injury, and other conditions that disrupt neurovascular function.

Myogenic Vasodilation - Related Videos

Research

JoVE Journal - Biology

Fabrication of Myogenic Engineered Tissue Constructs

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Cited by 11 •

2009

Here, we demonstrate fabrication of collagen-based, tissue constructs containing skeletal myoblasts. These 3-D engineered constructs may be used to replace or repair tissues in vivo. For our purposes, we have designed these as an atrioventricular electrical conduit for the repair of complete heart block[1].

Research

JoVE Journal - Medicine
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Assessing Endothelial Vasodilator Function with the Endo-PAT 2000

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Cited by 165 •

2010

A noninvasive procedure to assess endothelial function is demonstrated using the Endo-PAT 2000.

Assessing Myogenic Response and Vasoactivity In Resistance Mesenteric Arteries Using Pressure Myography

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Cited by 24 •

2015

Pressure myography is used to assess vasoactivity of small arteries that develop sustained constriction when pressurized. This manuscript provides a detailed protocol to assess in isolated segments of small mesenteric arteries from rats, vasoactivity and the effect of intraluminal pressure on vascular diameter.

Preparation of Primary Myogenic Precursor Cell/Myoblast Cultures from Basal Vertebrate Lineages

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Cited by 32 •

2014

In vitro culture systems have proven indispensible to our understanding of vertebrate myogenesis. However, much remains to be learned about nonmammalian skeletal muscle development and growth, particularly in basal taxa. An efficient and robust protocol for isolating the adult stem cells of this tissue, the myogenic precursor cells (MPCs), and maintaining their self-renewal, proliferation, and differentiation in a primary culture setting allows for the identification of conserved and divergent...

Vasodilation of Isolated Vessels and the Isolation of the Extracellular Matrix of Tight-skin Mice

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Cited by 1 •

2017

We describe the isolation of cardiac extracellular matrix from C57Bl/6J control mice, tight-skin mice, and tight-skin mice treated with the IRF5 inhibitory peptide. We also describe the vasodilation studies on the isolated vessels from C57Bl/6J, tight-skin mice and tight-skin mice treated with the IRF5 inhibitory peptide.

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