Yamakoshi K I, Shimazu H, Togawa T
Am J Physiol. 1979 Nov;237(5):H632-7. doi: 10.1152/ajpheart.1979.237.5.H632.
We devised a hydraulic servo-control system for indirect blood pressure measurement in the rat's tail, by which beat-to-beat systolic and diastolic blood pressure can be obtained. In this method the principle of "unloading vascular wall" proposed by Shirer (1962) is employed. The proposed system is composed of a transmittance photoelectric plethysmograph with an occluding cuff, a small diaphragm actuator for compressing and decompressing the segment by the hydraulic pressure, and an electromagnetic shaker driven by a volume servo circuit in accordance with the signal from the photoelectric plethysmograph. The plethysmographic signal is clamped at a proper value corresponding to the unload vascular volume by the instantaneous hydraulic servo control. The cuff pressure thus automatically controlled follows the intra-arterial pressure in the tail segment. The accuracy of this method was evaluated in comparison with direct measurement of blood pressure recorded simultaneously from 16 unanesthetized spontaneously hypertensive and normotensive rats. Close agreement between the simultaneous data from these two methods were observed.
我们设计了一种用于测量大鼠尾部间接血压的液压伺服控制系统,通过该系统可获得逐搏收缩压和舒张压。此方法采用了Shirer(1962年)提出的“卸载血管壁”原理。所提出的系统由带有阻塞袖带的透射式光电体积描记器、用于通过液压压缩和减压该节段的小型隔膜致动器以及根据来自光电体积描记器的信号由容积伺服电路驱动的电磁振动器组成。通过瞬时液压伺服控制,体积描记信号被钳位在与卸载血管容积相对应的适当值。这样自动控制的袖带压力跟踪尾部节段的动脉内压力。通过与同时从16只未麻醉的自发性高血压大鼠和正常血压大鼠直接测量的血压进行比较,评估了该方法的准确性。观察到这两种方法的同步数据之间具有密切一致性。