首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >VESGEN 2D: automated, user-interactive software for quantification and mapping of angiogenic and lymphangiogenic trees and networks.
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VESGEN 2D: automated, user-interactive software for quantification and mapping of angiogenic and lymphangiogenic trees and networks.

机译:VESGEN 2D:自动化的用户交互软件,用于量化和绘制血管生成和淋巴血管生成树和网络。

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摘要

Quantification of microvascular remodeling as a meaningful discovery tool requires mapping and measurement of site-specific changes within vascular trees and networks. Vessel density and other critical vascular parameters are often modulated by molecular regulators as determined by local vascular architecture. For example, enlargement of vessel diameter by vascular endothelial growth factor (VEGF) is restricted to specific generations of vessel branching (Parsons-Wingerter et al., Microvascular Research72: 91, 2006). The averaging of vessel diameter over many successively smaller generations is therefore not particularly useful. The newly automated, user-interactive software VESsel GENeration Analysis (VESGEN) quantifies major vessel parameters within two-dimensional (2D) vascular trees, networks, and tree-network composites. This report reviews application of VESGEN 2D to angiogenic and lymphangiogenic tissues that includes the human and murine retina, embryonic coronary vessels, and avian chorioallantoic membrane. Software output includes colorized image maps with quantification of local vessel diameter, fractal dimension, tortuosity, and avascular spacing. The density of parameters such as vessel area, length, number, and branch point are quantified according to site-specific generational branching within vascular trees. The sole user input requirement is a binary (black/white) vascular image. Future applications of VESGEN will include analysis of 3D vascular architecture and bioinformatic dimensions such as blood flow and receptor localization. Branching analysis by VESGEN has demonstrated that numerous regulators including VEGF(165), basic fibroblast growth factor, transforming growth factor beta-1, angiostatin and the clinical steroid triamcinolone acetonide induce 'fingerprint' or 'signature' changes in vascular patterning that provide unique readouts of dominant molecular signaling.
机译:量化微血管重塑作为一种有意义的发现工具,需要对血管树和网络中特定于位点的变化进行制图和测量。血管密度和其他关键血管参数通常由局部血管结构确定的分子调节剂调节。例如,通过血管内皮生长因子(VEGF)扩大血管直径仅限于特定的血管分支世代(Parsons-Wingerter等人,Microvascular Research 72:91,2006)。因此,在许多连续较小的世代中平均血管直径不是特别有用。新的自动,用户交互软件VESsel Generation Analysis(VESGEN)可以量化二维(2D)血管树,网络和树网络组合中的主要血管参数。该报告回顾了VESGEN 2D在血管生成和淋巴血管生成组织中的应用,该组织包括人和鼠的视网膜,胚胎冠状血管和禽绒膜尿道膜。软件输出包括彩色图像图,其中量化了局部血管直径,分形维数,曲折度和无血管间隔。诸如血管面积,长度,数量和分支点之类的参数的密度根据维管树内特定于位置的世代分支进行量化。唯一的用户输入要求是二进制(黑白)血管图像。 VESGEN的未来应用将包括3D血管结构和生物信息学方面的分析,例如血流和受体定位。 VESGEN的分支分析表明,许多调节剂,包括VEGF(165),碱性成纤维细胞生长因子,转化生长因子β-1,血管生成抑制素和临床类固醇曲安奈德丙酮酸酯可诱导血管形成的“指纹”或“特征”变化,从而提供独特的读数占主导地位的分子信号传导。

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