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首页> 外文期刊>Microvascular Research: An International Journal >Wide-field functional imaging of blood flow and hemoglobin oxygen saturation in the rodent dorsal window chamber.
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Wide-field functional imaging of blood flow and hemoglobin oxygen saturation in the rodent dorsal window chamber.

机译:啮齿动物背窗室中血流和血红蛋白氧饱和度的广域功能成像。

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The rodent dorsal window chamber is a widely used in vivo model of the microvasculature. The model consists of a 1cm region of exposed microvasculature in the rodent dorsal skin that is immobilized by surgically implanted titanium frames, allowing the skin microvasculature to be visualized. We describe a detailed protocol for surgical implantation of the dorsal window chamber which enables researchers to perform the window chamber implantation surgery. We further describe subsequent wide-field functional imaging of the chamber to obtain hemodynamic information in the form of blood oxygenation and blood flow on a cm size region of interest. Optical imaging techniques, such as intravital microscopy, have been applied extensively to the dorsal window chamber to study microvascular-related disease and conditions. Due to the limited field of view of intravital microscopy, detailed hemodynamic information typically is acquired from small regions of interest, typically on the order of hundreds of mum. The wide-field imaging techniques described herein complement intravital microscopy, allowing researchers to obtain hemodynamic information at both microscopic and macroscopic spatial scales. Compared with intravital microscopy, wide-field functional imaging requires simple instrumentation, is inexpensive, and can give detailed metabolic information over a wide field of view.
机译:啮齿动物的背窗腔是微脉管系统的一种广泛使用的体内模型。该模型由啮齿动物背部皮肤中暴露的微血管的1cm区域组成,该区域通过手术植入的钛框架固定,从而可以看到皮肤的微血管。我们描述了背窗腔的外科手术植入的详细协议,使研究人员能够执行窗腔植入手术。我们进一步描述了室的后续广域功能成像,以在感兴趣的cm大小区域上以血液氧合和血流的形式获得血液动力学信息。光学成像技术(例如活体显微镜检查)已广泛应用于背窗腔,以研究与微血管相关的疾病和状况。由于活体显微镜检查的视野有限,因此通常会从感兴趣的小区域(通常在数百个妈妈的数量级)中获取详细的血液动力学信息。本文所述的宽视场成像技术是对活体显微镜的补充,使研究人员能够在微观和宏观空间尺度上获得血液动力学信息。与活体显微镜相比,广域功能成像需要简单的仪器,价格便宜,并且可以在广阔的视野内提供详细的代谢信息。

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