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11.
目的 研究电阻应变式传感器(RSS)在不同下肢骨折类型手术中的应用。方法 选择2020年10月—2022年8月中国科学技术大学附属第一医院收治的外伤性下肢骨折患者99例,按照骨折类型分为股骨粗隆间骨折组79例、股骨干骨折组15例、股骨颈骨折组5例。患者均在牵引床上行闭合复位内固定术,使用RSS测量3组不同骨折类型手术中的初始牵引力、牵引时长、松解牵引力。记录手术时间、术中出血量,术后评分及3组不同骨折类型手术前后血色素变化及输血情况;比较使用不同内固定方式(长髓内钉、短髓内钉、空心钉)的术中牵引力和手术出血量、手术时间;比较长髓内钉固定患者和短髓内钉固定患者时下肢旋转角度。结果 3组不同骨折类型初始牵引力、牵引时长、松解牵引力、手术时长、术中出血量、术后评分比较,差异均有统计学意义(P <0.05)。3组不同骨折类型术前、术后血红蛋白、红细胞压积比较,差异均有统计学意义(P <0.05)。3组术中输血情况比较,差异有统计学意义(P <0.05),术后输血情况比较,差异无统计学意义(P>0.05)。使用不同内固定方式的患者牵引总时长、年龄、术中出血量、手术时间比较... 相似文献
12.
Conductance properties and voltage dependence of an anion channel in amphibian skeletal muscle 总被引:3,自引:0,他引:3
Single anion-selective channels were studied in excised membrane patches of adult frog toe muscle. The conductance and the probabilityp
o of the main open state were determined for various ionic compositions of the extra-and intracellular solutions. =280 pS in symmetrical 110 mM NaCl, pH 7.4 solutions at 15°C. Higher values were found at elevated internal or external NaCl concentrations, in 70 mM external CaCl2 and at lower extracellular pH. Thep
o(E) curve declined steeply with hyperpolarization and was shifted towards more negative potentials at increased internal ionic strength and at higher external pH. Positive shifts were induced by extracellular Ca. The results show that the anion channel saturates at Cl concentrations >110 mM, that the potential profile of an open channel is almost symmetrical and that channel gating is affected by neighboring channels. It is suggested that the anion channel has a voltage sensor (effective gating charge 4.3) and a similar collection of local fixed charges on the extra- and intracellular sides as voltage-gated cation channels. 相似文献
13.
智能化穴位温度检测仪的研制及实验研究 总被引:3,自引:0,他引:3
在经络穴位的生物物理属性中,由于皮肤温度比较灵敏,易于观察,又能及时反映该处血管的舒缩变化。作者利用铂电阻作为测温控头,用微机进行数据处理,并利用该系统进行人体皮肤温度的检测及分析。结果表明:皮肤温差点基本上是循经分布的。 相似文献
14.
本文介绍了一种采用红外光电式换能器,通过在桡动脉处测量血液容积,并采用单片机软件运算,实现无创性连续血压测量的方法。 相似文献
15.
Background
As assessment with inertial-measurement-units (IMUs) increases in research and in clinics, it is important to be aware of the repeatability of these sensors. The objectives of this experiment were to evaluate the measurement repeatability of IMU joint angles using a repeatable robot controller and an anthropomorphic leg phantom and to determine effects of joint speed and sensor positioning on the angles collected by these sensors. Comparisons to an electro-goniometer and three-dimensional (3D) motion capture cameras were also completed.Methods
Two dual-IMU setups (posterior and lateral) were tested concurrently with an electro-goniometer and 3D motion capture cameras using a repeatable robot controller and a leg phantom. All modalities were attached to the phantom, which was flexed 10 times using a pre-programmed motion pathway during each test. Mean angles were compared across tests. Effects of joint speed, sensor re-positioning, and anatomical placement of the sensors on repeatability were assessed.Results
Re-positioning caused greater deviation to the maximum and minimum angles than differences in speed. Overall, the means?±?standard deviations, and 95% confidence intervals of the maximum angles across all tests for the 3D camera markers, electro-goniometer, posterior IMUs, and lateral IMUs were 119.4?±?0.3° (119.4, 119.5), 112.4?±?0.5° (112.3, 112.5), 116.2?±?2.4° (115.7, 116.7), and 118.3?±?1.1° (118.1, 118.6).Conclusions
Both posterior and lateral IMU setups demonstrated acceptable repeatability in measurement of range of motion that was advantageous to manual goniometer methods. Posterior and lateral IMU setups demonstrated overlapping standard deviations about their means. 相似文献16.
Gilbertson LG Doehring TC Livesay GA Rudy TW Kang JD Woo SL 《Annals of biomedical engineering》1999,27(6):839-843
This study investigated a previously unaccounted for source of error in a high-capacity, six degree-of-freedom load cell used in multi-degree-of-freedom robotic testing of musculoskeletal joints, an application requiring a load cell with high accuracy in addition to high load capacity. A method of calibration is presented for reducing the error caused by changes in universal force-moment sensor (UFS) orientation within a gravitational field. Uncorrected, this error can exceed a magnitude of 1% of the full-scale load capacity—the manufacturer-stated accuracy of the UFS. Implementation of the calibration protocol reduced this error by approximately 75% for a variety of loading conditions. This improvement in load cell accuracy (while maintaining full load capacity) should improve both the measurement and control of specimen kinetics by robotic/UFS and other biomechanical testing systems. © 1999 Biomedical Engineering Society.
PAC99: 8719Rr, 8780Vt, 0620Fn, 0620Dk, 8719Ff 相似文献
17.
Rohini Srivastava Sonali Ray Meenakshi Sharma Nitin Sahai Ravi P. Tewari Basant Kumar 《Journal of medical engineering & technology》2020,44(7):423-430
Abstract This paper presents the hardware implementation of low delay, power-efficient, rate-adaptive dual-chamber pacemaker (RDPM) using a piezoelectric sensor. Rate adaptive pacemaker has the ability to sense the patient’s activity by means of some special sensors and it controls the pacing rate according to the patient’s activity. Ideally, there should be no delay between sensing and the subsequent pacing operation performed by the pacemaker. However, delay in the responses of various components in the circuitry produces an accumulative delay effect in any practical circuit. Physical activity and the physiological needs of the patient can be easily adapted by the rate-responsive pacemakers using a wide range of sensor information. The piezo-electric sensor recognises the pressure on human muscles because of physical activity and converts it to an electrical signal, which is received by the pulse generator of the pacemaker. When the patient is in the rest mode, the heart rate is the only parameter that is to be detected by the pacemaker. Thus, the heart rate and the physical activity both are the inevitable parameters for the design of RDPM. Performance analysis of the proposed RDPM shows a significant reduction in the delay between sensing and pacing. Device utility analysis shows that the proposed design not only requires lesser memory but also reduces the number of components on the chip. Therefore, it becomes very clear that the proposed pacemaker design will consume much lesser power. 相似文献
18.
压阻传感器在脉搏信号测试上的应用研究 总被引:3,自引:0,他引:3
脉搏是心脏和血管状态重要生理信息的外在反映,作者首先分析了在脉搏测量中传感器和放大电路设计的问题-即脉搏信号的特殊性,然后介绍膜型及囊型两种压力传感器;并给出脉搏信号放大电路。指出测量方法的进一步发展和对临床应用的意义。 相似文献
19.
S. Zhang G. Wright M. A. Kingston P. Rolfe 《Medical & biological engineering & computing》1996,34(4):313-315
The first in vivo evaluation of a pO2 sensor constructed with a novel copolymer is described. The performance of the sensor is assessed under dynamic conditions
in vitro and in vivo. This sensor is more stable and reliable than the control sensor with a heparintreated polyethylene membrane. 相似文献
20.
本文介绍了盲人智能探路手杖的研究.该系统由单片机控制,采用两只超声波传感器的探测模式,对盲人行进路上的路况进行探测和分析,并针对不同的路况发出相应的提示信息,以达到辅助盲人安全行走的目的. 相似文献