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A bio-telemetric device for measurement of left ventricular pressure-volume loops using the admittance technique in conscious, ambulatory rats

机译:一种利用电导技术在有意识的非卧床大鼠中测量左心室压力-容积环的生物遥测设备

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This paper presents the design, construction and testing of a device to measure pressure-volume loops in the left ventricle of conscious, ambulatory rats. Pressure is measured with a standard sensor, but volume is derived from data collected from a tetrapolar electrode catheter using a novel admittance technique. There are two main advantages of the admittance technique to measure volume. First, the contribution from the adjacent muscle can be instantaneously removed. Second, the admittance technique incorporates the nonlinear relationship between the electric field generated by the catheter and the blood volume. A low power instrument weighing 27 g was designed, which takes pressure-volume loops every 2 min and runs for 24 h. Pressure-volume data are transmitted wirelessly to a base station. The device was first validated on 13 rats with an acute preparation with 2D echocardiography used to measure true volume. From an accuracy standpoint, the admittance technique is superior to both the conductance technique calibrated with hypertonic saline injections, and calibrated with cuvettes. The device was then tested on six rats with 24 h chronic preparation. Stability of animal preparation and careful calibration are important factors affecting the success of the device.
机译:本文介绍了一种测量,意识和动态大鼠左心室压力-容量环的装置的设计,构造和测试。用标准传感器测量压力,但使用新型的导纳技术从四极电极导管收集的数据得出体积。导纳技术测量体积有两个主要优点。首先,可以立即消除相邻肌肉的贡献。其次,导纳技术结合了导管产生的电场与血容量之间的非线性关系。设计了一种重27 g的低功率仪器,该仪器每2分钟进行一次压力-体积循环,并运行24 h。压力-体积数据无线传输到基站。该设备首先在13只大鼠身上进行了验证,该设备带有2D超声心动图术,用于测量真实体积。从精度的角度来看,导纳技术优于用高渗盐水注射液校准的电导技术和用比色皿校准的电导技术。然后用24小时的长期准备对六只大鼠进行测试。动物准备工作的稳定性和仔细的校准是影响设备成功的重要因素。

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