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基于容积振动法的如厕时血压检测系统研究

Study on blood pressure detection system in toilet based on the volume-oscillometric method

作者: 曲晓威  雷云菁  张彤  宋义林 
单位: 黑龙江大学机电工程学院(哈尔滨 150080) 通信作者:宋义林,博士,教授,硕士研究生导师 E-mail:syl@hlju.edu.cn
关键词: 无创血压检测;  容积振动法;  股动脉;  如厕时;  家庭医学监测 
分类号:R318.6
出版年·卷·期(页码):2020·39·4(425-430)
摘要:

目的 开发基于容积振动法的股动脉部位无创血压检测系统,以实现人们在日常如厕时就可完成血压的日常监测,改善了普通家庭血压检测的检测不规律、有拘束、因被检测者紧张导致的检测数据不准确等的不足。方法 系统的检测部位为大腿股动脉,检测方式采用机械式提升。充气气囊局部加压,压力传感器测压的检测模式。为提高光电传感器的检测精度,本研究探究了传感头尺寸。传感头发光二极管与光电二极管布置以及气囊安装的最佳参数。最后对 7 名健康的大学师生进行了检测试验并以上臂式电子血压计作为对比实验仪器,对系统的性能和精度进行了实验评价。结果 本系统与上臂式电子血压计测得的收缩压的相关系数为 r= 0.94,舒张压的相关系数为 r = 0.93,两者具有良好的直线相关性;并且,收缩压和舒张压均有 95%以上的实验结果分布在 95%置信区间的范围之内,说明两种测量方法具有良好的一致性。结论 以容积振动法为检测方法以大腿股动脉为检测对象,实施如厕时无创性血压检测是可行的。

Objective A noninvasive blood pressure detection system based on the volume-oscillometric method is developed, and daily monitoring of blood pressure can be realized while people on the toilet. The system improves the deficiencies of blood pressure detection in ordinary families, such as irregular, restrained,and inaccuracy caused by the tension. Methods The femoral artery is used as the detection object, and the detection mode of mechanical lifting, local pressurization by air bag and pressure measurement by pressure sensor is adopted in the system. In order to improve the detection accuracy of photoelectric sensors, we discuss the optimal parameters of sensor head size, arrangement of light emitting diodes and photodiodes, and airbag installation. Finally, the performance and accuracy of the system are evaluated by using seven healthy university teachers and students as the subjects and the arm type electronic sphygmomanometer as the comparative experimental instrument. Results The correlation coefficients of systolic blood pressure (SBP) and diastolic blood pressure (DBP) measured by the system and the electronic sphygmomanometer are r = 0.94 and r = 0.93 respectively, both have good linear correlation; and, more than 95% of the experimental data of the systolic blood pressure and diastolic blood pressure are distributed within the 95% confidence interval, showing good consistency in the two measurement methods. Conclusions It is feasible to use the volume-oscillometric method to detect noninvasive blood pressure of femoral artery while people on the toilet.

参考文献:

[ 1 ] 蒋国强.家用医疗设备的应用设计及发展前景展望[J]. 中国医疗器械信息, 2018, 24(3):43-44.

Jiang GQ. Application design and development prospect of home medical equipment [ J ]. China Medicine Device Information, 2018, 24(3):43-44.

[ 2 ] 尚磊,李华. 家庭自测血压在社区高血压管理中的价值[ J].中国老年保健医学, 2016, 14 (2):75-78.

Shang L, Li H. The value of home blood pressure measurement in community-based hypertension management[ J]. Chinese Journal of Geriatric Care, 2016, 14 (2):75-78.

[ 3 ] 中国高血压联盟《家庭血压监测指南》 委员会. 2019 中国家庭血压监测指南[ J]. 中国医学前沿杂志(电子版), 2019,11(5):21-25.

[ 4 ] 赵保华. 脑溢血 120 例临床特点分析[ J]. 中国实用医药,2010, 5(22):44-45.

[ 5 ] 黄建,赵海,朱剑,等. 基于光电容积法的人体血压检测系统设计[C] / / 第八届沈阳科学学术年会论文集. 沈阳:第八届沈阳科学学术年会, 2011.

[ 6 ] Thomas JS, Pallavi A. Adaptive non-invasive blood pressure measurement[J]. International Journal on Recent and Innovation Trends in Computing and Communication, 2015, 3 ( 4 ): 2447-2451.

[ 7 ] 陈涛,刘源,王中鲜,等. 多功能坐便器的开发及其在家庭医疗监测中的应用[ J]. 黑龙江大学工程学报, 2016, 7( 1):73-78.

Chen T, Liu Y, Wang ZX, et al. Development of multifunctional toilet and its application in home health care [ J]. Journal of Heilongjiang Hydraulic Engineering College, 2016, 7 ( 1 ):73-78.

[ 8 ] 宋义林,张彤,高树枚. 基于容积脉搏波振幅梯度的血压检测法的研究[J]. 生物医学工程研究,2018,37(3):281-285.

Song YL, Zhang T, Gao SM. Study on blood pressure detection based on volume pulse wave amplitude gradient [ J]. Journal of Biomedical Engineering Research, 2018, 37(3):281-285.

[ 9 ] Matsumura K, Yamakoshi T, Rolfe P, et al. Advanced volume-compensation method for indirect finger arterial pressuredetermination:comparison with brachial sphygmomanometry[ J].IEEE Transactions on Biomedical Engineering, 2017, 64 ( 5):1131-1137.

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