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Two-photon microscopy of cortical NADH fluorescence intensity changes: correcting contamination from the hemodynamic response

机译:皮层NADH荧光强度变化的双光子显微镜:校正血液动力学反应中的污染

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Quantification of nicotinamide adenine dinucleotide (NADH) changes during functional brain activation and pathological conditions provides critical insight into brain metabolism. Of the different imaging modalities, two-photon laser scanning microscopy (TPLSM) is becoming an important tool for cellular-resolution measurements of NADH changes associated with cellular metabolic changes. However, NADH fluorescence emission is strongly absorbed by hemoglobin. As a result, in vivo measurements are significantly affected by the hemodynamics associated with physiological and pathophysiological manipulations. We model NADH fluorescence excitation and emission in TPLSM imaging based on precise maps of cerebral microvasculature. The effects of hemoglobin optical absorption and optical scattering from red blood cells, changes in blood volume and hemoglobin oxygen saturation, vessel size, and location with respect to imaging location are explored. A simple technique for correcting the measured NADH fluorescence intensity changes is provided, with the utilization of a parallel measurement of a physiologically inert fluorophore. The model is applied to TPLSM measurements of NADH fluorescence intensity changes in rat somatosensory cortex during mild hypoxia and hyperoxia. The general approach of the correction algorithm can be extended to other TPLSM measurements, where changes in the optical properties of the tissue confound physiological measurements, such as the detection of calcium dynamics.
机译:量化功能性大脑激活和病理状况期间烟酰胺腺嘌呤二核苷酸(NADH)的变化可提供对大脑代谢的重要见解。在不同的成像方式中,双光子激光扫描显微镜(TPLSM)成为细胞分辨率测量与细胞代谢变化相关的NADH变化的重要工具。但是,NADH荧光发射被血红蛋白强烈吸收。结果,体内测量受到与生理和病理生理操作有关的血液动力学的显着影响。我们基于脑微脉管系统的精确图,在TPLSM成像中对NADH荧光激发和发射进行建模。探索了红细胞对血红蛋白的光吸收和光散射,血容量和血红蛋白氧饱和度,血管大小以及相对于成像位置的位置变化的影响。提供了利用生理惰性荧光团的平行测量来校正所测量的NADH荧光强度变化的简单技术。该模型适用于TPLSM测量轻度缺氧和高氧时大鼠体感皮层中NADH荧光强度的变化。校正算法的一般方法可以扩展到其他TPLSM测量,其中组织光学特性的变化会混淆生理测量,例如钙动力学的检测。

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    《journal of biomedical optics》 |2011年第10期|p.1-14|共14页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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