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首页> 外文期刊>Sensors and Actuators, A. Physical >Totally passive wireless biopotential measurement sensor by utilizing inductively coupled resonance circuits
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Totally passive wireless biopotential measurement sensor by utilizing inductively coupled resonance circuits

机译:利用电感耦合谐振电路的全无源无线生物电势测量传感器

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摘要

A measurement method to measure biopotentials with a passive LC resonator is presented. The sensor consists of an LC resonance circuit where the capacitive component is a varactor and the biopotential electrodes are connected over the varactor ends. This induces a change in the varactor capacitance which can be measured over an inductive link as modified reflected impedance. The sensor itself dissipates virtually no energy at all but of course, some energy is lost in form of resistive losses in the sensor wires and components. The sensor is inexpensive to manufacture and since it is a totally passive device, it is very suitable for implantable applications. Two different measurement methods to sense the reflected impedance are also presented: a slope detector and a phase locked detector. Measurement results from human ECG are discussed that are measured with the both suggested measurement methods. The sensor is proven to be suitable for biopotential measurements with some limitations regarding the movements between the sensor and the receiver device. The properties and performance of the two different measurement devices are discussed. The measurement range, i.e. distance between the sensor and the measurement coils was approximately 5 cm in air for the both measurement devices. However, it seems that the phase locked measurement device suits better to the measurements than the slope detector since its signal-to-noise ratio remains almost constant throughout the measurement range (distance).
机译:提出了一种利用无源LC谐振器测量生物电势的测量方法。传感器由LC谐振电路组成,其中电容组件是变容二极管,生物电势电极连接在变容二极管两端。这会引起变容二极管电容的变化,可以通过感应链路将其测量为变化的反射阻抗。传感器本身几乎不消耗任何能量,但是当然,一些能量会以电阻损耗的形式在传感器导线和组件中损耗。该传感器制造成本低廉,并且由于它是完全无源的设备,因此非常适合植入式应用。还介绍了两种用于感测反射阻抗的不同测量方法:斜率检测器和锁相检测器。讨论了使用两种建议的测量方法测量的人心电图测量结果。事实证明该传感器适用于生物电势测量,但在传感器和接收器设备之间的移动方面存在一些限制。讨论了两种不同测量设备的特性和性能。对于两个测量装置,在空气中的测量范围,即传感器与测量线圈之间的距离约为5cm。然而,似乎锁相测量设备比斜率检测器更适合于测量,因为其信噪比在整个测量范围(距离)内几乎保持恒定。

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