Macroscopic Vessel Distribution

Macroscopic vessel distribution describes the visible arrangement and branching of major arteries, veins, and other blood vessels across organs and body regions. This organization directs blood through hierarchical vascular pathways, with larger vessels dividing into progressively smaller branches that supply defined tissue territories and return blood through corresponding venous routes. In medicine, assessing macroscopic vessel distribution supports anatomical education, diagnostic imaging, surgical planning, and interpretation of vascular disease. Recognizing normal vessel territories also helps clinicians identify obstruction, malformation, hemorrhage, or altered perfusion and provides a framework for relating gross anatomy to tissue function and clinical outcomes.

Macroscopic Vessel Distribution - Related Videos

Research

JoVE Journal - Chemistry

A Technique to Functionalize and Self-assemble Macroscopic Nanoparticle-ligand Monolayer Films onto Template-free Substrates

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2014

A simple, robust and scalable technique to functionalize and self-assemble macroscopic nanoparticle-ligand monolayer films onto template-free substrates is described in this protocol.

Education

JoVE Science Education - Engineering

Stability of Floating Vessels

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2023

Source: Alexander S Rattner and Kevin Rao Li Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA The objective of this experiment is to demonstrate the phenomenon of stability of floating vessels - the ability to self-right when rolled over to the side by some external force. Careful design of hull shapes and internal mass distribution enables seagoing vessels to be stable with low drafts (submerged depth of hull), improving vessel...

Monitoring the Wall Mechanics During Stent Deployment in a Vessel

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2012

Stent-induced arterial strain distributions are characterized using an optical surface strain measurement system. This visualization technique is used to gain insights into the impact of stent implantation on the host vessel.

Operation of High-pressure Reactor Vessels

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2023

Robert M Rioux, Pennsylvania State University, University Park, PA The use of gases in a synthetic chemistry laboratory is essential for carrying out a variety of highly facile and atom economical transformations. Reactions such as hydrogenation, oxidation, and amination require the use of gases like hydrogen, oxygen, and ammonia. Due to the poor solubility of these gases in typical reactant solutions, high pressures are necessary to achieve a meaningful reaction rate. Not only are these gases...

Purification of Mouse Brain Vessels

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Cited by 90 •

2015

We describe a protocol allowing the purification of the mouse brain's vascular compartment. Isolated brain vessels include endothelial cells linked by tight junctions and surrounded by a continuous basal lamina, pericytes, vascular smooth muscle cells, as well as perivascular astroglial membranes.

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