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使用激光多普勒血流仪和¹³³Xe清除法测量松质骨中的微血管血流。

Measurement of microvascular blood flow in cancellous bone using laser Doppler flowmetry and 133Xe-clearance.

作者信息

Hellem S, Jacobsson L S, Nilsson G E, Lewis D H

出版信息

Int J Oral Surg. 1983 Jun;12(3):165-77. doi: 10.1016/s0300-9785(83)80063-5.

Abstract

Blood flow in cancellous bone with varying vascular density was investigated simultaneously with Laser Doppler Flowmetry (LDF) and 133Xe-clearance. The cancellous bone subapical to 2 contralateral incisors in the mandibles of 17 young pigs was used as an experimental model. Light from a 2 mW He-Ne-laser was guided through an optical fibre to a flowmeter probe. Stainless steel probe-holders firmly inserted in the pulpal canals of the two incisors served as the probe entrance to cancellous bone for blood flow recording. Due to the Doppler effect, the light scattered by circulating blood cells undergoes a frequency shift. The back-scattered light picked up by optical fibres in the probe, was guided to a photosensitive device, where it was demodulated. After signal processing, a signal referred to as the Blood Flow Value (BFV) was recorded on a pen recorder. Rhythmical variations (vasomotion) in BFV with frequencies from 2-11 cycles/min were observed in 6% of recordings made initially after probe-holder implantation, and in 34% of the recordings made 5 weeks later. On this occasion, a marked increase in BFV was recorded. Histological examination showed increased vascularity in the bone tissue. The reproducibility error of LDF was 7.4% and temporal changes in BFV, apart from vasomotion, were 8.3%, provided no injections or manipulations of the probe were made. Spatial variations in BFV were found to be related to the vascular density. 2 successive recordings by LDF from the same bone area were highly correlated (r = 0.98). The corresponding figure for 2 logarithmic decay rates of locally injected 133Xe was 0.76. No correlation between BFV and 133Xe-clearance could be demonstrated.

摘要

利用激光多普勒血流仪(LDF)和¹³³Xe清除率同步研究了具有不同血管密度的松质骨中的血流情况。选用17只幼猪下颌骨中双侧2颗对侧切牙根尖下方的松质骨作为实验模型。来自2毫瓦氦氖激光器的光通过光纤传导至血流仪探头。牢固插入两颗切牙髓腔的不锈钢探头支架作为探头进入松质骨记录血流的入口。由于多普勒效应,循环血细胞散射的光会发生频率偏移。探头中的光纤收集到的后向散射光被传导至一个光敏装置,在那里进行解调。经过信号处理后,一个称为血流值(BFV)的信号被记录在笔式记录仪上。在最初植入探头支架后进行的记录中,有6%观察到BFV出现频率为2 - 11次/分钟的节律性变化(血管运动),而在5周后进行的记录中,这一比例为34%。在这个时候,记录到BFV显著增加。组织学检查显示骨组织中的血管增多。LDF的重现性误差为7.4%,在未对探头进行注射或操作的情况下,除血管运动外,BFV的时间变化为8.3%。发现BFV的空间变化与血管密度有关。LDF对同一骨区域进行的连续两次记录高度相关(r = 0.98)。局部注射¹³³Xe的两个对数衰减率的相应数字为0.76。未证明BFV与¹³³Xe清除率之间存在相关性。

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