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使用声光可调谐滤波器(AOTF)显微镜获取小鼠大脑中近乎同步的血红蛋白饱和度和氧分压图谱。

Near-simultaneous hemoglobin saturation and oxygen tension maps in mouse brain using an AOTF microscope.

作者信息

Shonat R D, Wachman E S, Niu W, Koretsky A P, Farkas D L

机构信息

Center for Light Microscope Imaging and Biotechnology, and Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Biophys J. 1997 Sep;73(3):1223-31. doi: 10.1016/S0006-3495(97)78155-4.

Abstract

A newly developed microscope using acousto-optic tunable filters (AOTFs) was used to generate in vivo hemoglobin saturation (SO2) and oxygen tension (PO2) maps in the cerebral cortex of mice. SO2 maps were generated from the spectral analysis of reflected absorbance images collected at different wavelengths, and PO2 maps were generated from the phosphorescence lifetimes of an injected palladium-porphyrin compound using a frequency-domain measurement. As the inspiratory O2 was stepped from hypoxia (10% O2), through normoxia (21% O2), to hyperoxia (60% O2), measured SO2 and PO2 levels rose accordingly and predictably throughout. A plot of SO2 versus PO2 in different arterial and venous regions of the pial vessels conformed to the sigmoidal shape of the oxygen-hemoglobin dissociation curve, providing further validation of the two mapping procedures. The study demonstrates the versatility of the AOTF microscope for in vivo physiologic investigation, allowing for the generation of nearly simultaneous SO2 and PO2 maps in the cerebral cortex, and the frequency-domain detection of phosphorescence lifetimes. This class of study opens up exciting new possibilities for investigating the dynamics of hemoglobin and O2 binding during functional activation of neuronal tissues.

摘要

一种新开发的使用声光可调滤光器(AOTF)的显微镜被用于生成小鼠大脑皮质的体内血红蛋白饱和度(SO2)和氧分压(PO2)图谱。SO2图谱是通过对在不同波长下收集的反射吸光度图像进行光谱分析生成的,而PO2图谱是使用频域测量从注射的钯卟啉化合物的磷光寿命生成的。当吸气氧气从低氧(10% O2)逐步升至常氧(21% O2)再到高氧(60% O2)时,整个过程中测量到的SO2和PO2水平相应且可预测地上升。软脑膜血管不同动脉和静脉区域的SO2与PO2关系图符合氧合血红蛋白解离曲线的S形,进一步验证了这两种图谱绘制方法。该研究证明了AOTF显微镜在体内生理研究中的多功能性,能够在大脑皮质中几乎同时生成SO2和PO2图谱,并对磷光寿命进行频域检测。这类研究为研究神经元组织功能激活过程中血红蛋白与氧气结合的动态变化开辟了令人兴奋的新可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8372/1181022/1ac4f240356d/biophysj00030-0096-a.jpg

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