Song Yi-lin, Gao Shu-mei, Ikarashi Akira, Yamakoshi Ken-ichi
School of Mechtronic engineering, Heilongjiang University, Harbin.
Zhongguo Yi Liao Qi Xie Za Zhi. 2009 Mar;33(3):167-71.
A handy-type monitoring system for cardiovascular haemodynamic functions based on the volume-compensation and electrical admittance method is developed. In this system, the inconvenient and discomfort due to cuff occlusion of the biological segment for BP measurement is improved by developing a new device using a local pressurization method, the stability for the physiological information detection is improved by developing a new detecting system, and the noise during detection using the system is greatly reduced by using a newly developed nozzle-flapper type electro-pneumatic converter. Also, for electrical admittance cardiography to estimate CO, the applicability of a two-compartment coaxial cylindrical model and the optimal position of a spot-electrode array that is used to replace the conventional band-electrode are discussed in this research. Experimental result shows that the monitoring system should satisfy non-invasive BP and CO measurement on beat by beat, and the comfort of measurement is significantly improved.
开发了一种基于容积补偿和电阻抗方法的便携式心血管血流动力学功能监测系统。在该系统中,通过采用局部加压方法开发新装置,改善了因测量血压时袖带对生物段的压迫所带来的不便和不适;通过开发新的检测系统,提高了生理信息检测的稳定性;通过使用新开发的喷嘴-挡板式电-气转换器,大大降低了使用该系统检测时的噪声。此外,对于用于估计心输出量的电阻抗心动描记法,本研究讨论了双室同轴圆柱模型的适用性以及用于替代传统带状电极的点电极阵列的最佳位置。实验结果表明,该监测系统应能逐搏满足无创血压和心输出量测量,并且测量舒适度显著提高。