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The characteristics of laser-Doppler flowmetry for the measurement of regional cerebral blood flow.

机译:激光多普勒血流仪的特点,用于测量局部脑血流量。

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The fundamental characteristics of laser-Doppler flowmetry (LDF), especially the depth of cerebral blood flow (CBF) measurement, have not been widely studied in the brain tissue; however, LDF has been widely used in recent clinical and experimental studies. We investigated the depth of CBF measurement and other characteristics related to the use of LDF in the brain. In an animal experimental study, the distribution of laser light and the depth of CBF measurement of LDF were measured by using modified LDF probes. CBF in various conditions was also measured by the LDF and hydrogen clearance method. Laser light of low output lost directivity and was dispersed into a hemispherical form in the brain tissue. The depth of CBF measurement was approximately 100 to 400 microns, depending on the intensity of the emitted laser light, and was affected by changes of CBF. In the physiological condition, the close correlation between the values of CBF by the LDF and hydrogen clearance method was obtained. After cardiac arrest, the CBF value of LDF did not immediately show a 0 value. LDF has several special characteristics, and the sample volume was very small. It is important to pay attention to the several special characteristics of LDF.
机译:激光多普勒血流仪(LDF)的基本特性,尤其是脑血流深度(CBF)的测量,尚未在脑组织中得到广泛研究。然而,LDF已被广泛用于最近的临床和实验研究中。我们调查了CBF测量的深度以及与在大脑中使用LDF相关的其他特征。在一项动物实验研究中,使用改进的LDF探针测量了激光的分布和LDF的CBF测量深度。还通过LDF和氢清除法测量了各种条件下的CBF。低输出的激光失去方向性,并在脑组织中分散成半球形。 CBF测量的深度大约为100至400微米,具体取决于所发射激光的强度,并且受CBF变化的影响。在生理条件下,通过LDF得到的CBF值与氢清除法之间具有密切的相关性。心脏骤停后,LDF的CBF值未立即显示为0值。 LDF具有几个特殊的特征,并且样品量很小。重要的是要注意LDF的几个特殊特性。

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