artificial microvascular network Search Results


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Hemanext Inc artificial microvascular network
Artificial <t>microvascular</t> network (AMVN). (a) Each AMVN device has three identical capillary network units that meet at a single outlet. Up to three of these network units can be made adhesive using relevant adhesion molecules (e.g. laminin and fibronectin). (b) The perfusion rate of the RBC sample in either an adhesive or a nonadhesive network is determined by image analysis of the RBC flow in the post-capillary venules of the network unites (rightmost inset). Arrows indicate flow direction. (A color version of this figure is available in the online journal.)
Artificial Microvascular Network, supplied by Hemanext Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/artificial+microvascular+network/artificial+microvascular+network/pmc07016416-264-34-28
Average 90 stars, based on 1 article reviews
artificial microvascular network - by Bioz Stars, 2026-09
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Artificial microvascular network (AMVN). (a) Each AMVN device has three identical capillary network units that meet at a single outlet. Up to three of these network units can be made adhesive using relevant adhesion molecules (e.g. laminin and fibronectin). (b) The perfusion rate of the RBC sample in either an adhesive or a nonadhesive network is determined by image analysis of the RBC flow in the post-capillary venules of the network unites (rightmost inset). Arrows indicate flow direction. (A color version of this figure is available in the online journal.)

Journal: Experimental Biology and Medicine

Article Title: Blood rheology biomarkers in sickle cell disease

doi: 10.1177/1535370219900494

Figure Lengend Snippet: Artificial microvascular network (AMVN). (a) Each AMVN device has three identical capillary network units that meet at a single outlet. Up to three of these network units can be made adhesive using relevant adhesion molecules (e.g. laminin and fibronectin). (b) The perfusion rate of the RBC sample in either an adhesive or a nonadhesive network is determined by image analysis of the RBC flow in the post-capillary venules of the network unites (rightmost inset). Arrows indicate flow direction. (A color version of this figure is available in the online journal.)

Article Snippet: SSS is an inventor of some of the technology discussed in this review; he has received compensation as consultant, and research funding from New Health Sciences, Inc. (d/b/a Hemanext) which is commercializing the artificial microvascular network technology.

Techniques: Adhesive