A photoplethysmographic (PPG) technique to assess blood flow in bone tissue has been developed and tested. The signal detected by the PPG consists of a constant-level (DC) component-which is related to the relative vascularization of the tissue-and a pulsatile (AC) component-which is synchronous with the pumping action of the heart. The PPG probe was applied on the skin over the patella. The probe uses near-infrared (804 nm) and green (560 nm) light sources and the AC component of the PPG signals of the two wavelengths was used to monitor pulsatile blood flow in the patellar bone and the overlying skin, respectively. Twenty healthy subjects were studied and arterial occlusion resulted in elimination of PPG signals at both wavelengths, whereas occlusion of skin blood flow by local surface pressure eliminated only the PPG signal at 560 nm. In a parallel study on a physical model with a rigid tube we showed that the AC component of the PPG signal originates from pulsations of blood flow in a rigid structure and not necessarily from volume pulsations. We conclude that pulsatile blood flow in the patellar bone can be assessed with the present PPG technique.

译文

已经开发并测试了一种用于评估骨组织血流的光电容积描记 (PPG) 技术。PPG检测到的信号由恒定水平 (DC) 分量 (与组织的相对血管化有关) 和脉动 (AC) 分量组成,该分量与心脏的泵送动作同步。将PPG探针涂在髌骨上的皮肤上。探针使用近红外 (804 nm) 和绿色 (560 nm) 光源,并且两个波长的PPG信号的AC分量分别用于监测髌骨和上覆皮肤中的脉动血流。研究了20名健康受试者,动脉闭塞导致消除了两个波长处的PPG信号,而局部表面压力对皮肤血流的闭塞仅消除了560 nm处的PPG信号。在对具有刚性管的物理模型的并行研究中,我们表明PPG信号的AC分量来自刚性结构中的血流脉动,而不一定来自体积脉动。我们得出的结论是,可以使用目前的PPG技术评估pa骨中的脉动血流。

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