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Opto-mechanical microbridles for the determination of structural and functional properties of small resistance arteries

机译:光学微生物用于测定小耐药性的结构和功能性能

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This work presents a polydimethylsiloxane (PDMS) system (named microbridle) monolithically integrating optical (microlenses, air mirrors etc.) and mechanical elements (cantilever) for the real time monitoring of dilatation and contraction events in small resistance arteries. Structural (response to intraluminal pressure changes) and functional properties (response to vasoactive substances) of mesenteric arteries were determined with the microbridle structure and compared to those obtained with conventional myograph systems. Both systems provide comparable data although microbridles were found advantageous in terms of precision, resolution (below the μm) and reliability for the poor contrast between sample and surrounding medium that impede reliable myography recordings.
机译:该工作介绍了一种聚二甲基硅氧烷(PDMS)系统(名为Microbridle)单整体上积分光学(微透镜,空气镜等)和机械元件(悬臂),用于实时监测小型抵抗动脉中的扩张和收缩事件。用微细结构确定肠系膜动脉的结构(对腔内压力变化的响应)和功能性(对血管活性物质),并与常规象形图系统获得的那些相比。两种系统都提供了可比的数据,尽管在精度,分辨率(μm以下)和可靠性的可靠性方面发现了妨碍可靠的偏错的样本和周围介质之间的可靠性,但是妨碍了可靠的界面记录之间的可靠性。

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