首页> 外文期刊>American Journal of Physiology >A self-calibrating telemetry system for measurement of ventricular pressure-volume relations in conscious, freely moving rats.
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A self-calibrating telemetry system for measurement of ventricular pressure-volume relations in conscious, freely moving rats.

机译:一种自校准遥测系统,用于测量有意识的自由运动大鼠的心室压力-容积关系。

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Using Bluetooth wireless technology, we developed an implantable telemetry system for measurement of the left ventricular pressure-volume relation in conscious, freely moving rats. The telemetry system consisted of a pressure-conductance catheter (1.8-Fr) connected to a small (14-g) fully implantable signal transmitter. To make the system fully telemetric, calibrations such as blood resistivity and parallel conductance were also conducted telemetrically. To estimate blood resistivity, we used four electrodes arranged 0.2 mm apart on the pressure-conductance catheter. To estimate parallel conductance, we used a dual-frequency method. We examined the accuracy of calibrations, stroke volume (SV) measurements, and the reproducibility of the telemetry. The blood resistivity estimated telemetrically agreed with that measured using an ex vivo cuvette method (y=1.09x - 11.9, r2= 0.88, n=10). Parallel conductance estimated by the dual-frequency (2 and 20 kHz) method correlated well with that measured by a conventional saline injection method (y=1.59x - 1.77, r2= 0.87, n=13). The telemetric SV closely correlated with the flowmetric SV during inferior vena cava occlusions (y=0.96x + 7.5, r2=0.96, n=4). In six conscious rats, differences between the repeated telemetries on different days (3 days apart on average) were reasonably small: 13% for end-diastolic volume, 20% for end-systolic volume, 28% for end-diastolic pressure, and 6% for end-systolic pressure. We conclude that the developed telemetry system enables us to estimate the pressure-volume relation with reasonable accuracy and reproducibility in conscious, untethered rats.
机译:使用蓝牙无线技术,我们开发了一种植入式遥测系统,用于测量有意识的自由运动大鼠的左心室压力-容积关系。遥测系统由压力传导导管(1.8-Fr)组成,该导管连接到小型(14-g)可完全植入的信号发射器。为了使系统完全遥测,还对遥测中的血液电阻率和平行电导率进行了校准。为了评估血液电阻率,我们使用了四个在压力传导导管上间隔0.2 mm的电极。为了估算并联电导,我们使用了双频方法。我们检查了校准的准确性,冲程量(SV)测量以及遥测的可重复性。遥测估计的血液电阻率与使用体外比色皿法测得的血液电阻率一致(y = 1.09x-11.9,r2 = 0.88,n = 10)。通过双频(2和20 kHz)方法估计的平行电导与通过常规盐水注入方法测得的平行电导(y = 1.59x-1.77,r2 = 0.87,n = 13)具有很好的相关性。下腔静脉阻塞时,遥测SV与流量SV密切相关(y = 0.96x + 7.5,r2 = 0.96,n = 4)。在六只清醒大鼠中,不同天(平均间隔三天)重复遥测之间的差异相当小:舒张末期容积为13%,收缩末期容积为20%,舒张末期压力为28%和6收缩末期压力的%。我们得出的结论是,开发的遥测系统使我们能够以合理的准确性和可重现性评估有意识的,不受束缚的大鼠的压力-体积关系。

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