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Reflectance-Based Organic Pulse Meter Sensor for Wireless Monitoring of Photoplethysmogram Signal

机译:基于反射率的有机脉冲仪表传感器,用于光电肌谱信号的无线监测

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This paper compares the structural design of two organic biosensors that minimize power consumption in wireless photoplethysmogram (PPG) waveform monitoring. Both devices were fabricated on the same substrate with a red organic light-emitting diode (OLED) and an organic photodiode (OPD). Both were designed with a circular OLED at the center of the device surrounded by OPD. One device had an OLED area of 0.06 cm 2 , while the other device had half the area. The gap distance between the OLED and OPD was 1.65 mm for the first device and 2 mm for the second. Both devices had an OPD area of 0.16 cm 2 . We compared the power consumption and signal-to-noise ratio (SNR) of both devices and evaluated the PPG signal, which was successfully collected from a fingertip. The reflectance-based organic pulse meter operated successfully and at a low power consumption of 8 μW at 18 dB SNR. The device sent the PPG waveforms, via Bluetooth low energy (BLE), to a PC host at a maximum rate of 256 kbps data throughput. In the end, the proposed reflectance-based organic pulse meter reduced power consumption and improved long-term PPG wireless monitoring.
机译:本文比较了两种有机生物传感器的结构设计,可使无线照相仪表(PPG)波形监测中的功耗最小化。两种器件在与红色有机发光二极管(OLED)和有机光电二极管(OPD)的相同基板上制造。两者都设计成在由OPD围绕的设备中心的圆形OLED设计。一个设备的OLED面积为0.06厘米2,而另一个设备已有一半区域。 OLED和OPD之间的间隙距离为1.65mm,第一器件为1.65mm,第二个装置为2毫米。两个设备的开放区域为0.16厘米2。我们比较了两种器件的功耗和信噪比(SNR)并评估了从指尖成功收集的PPG信号。基于反射率的有机脉冲计成功操作,在18dB SNR处的8μW的低功耗下运行。该设备通过蓝牙低能量(BLE)将PPG波形发送到PC主机,最大速率为256 kbps数据吞吐量。最后,提出基于反射的有机脉冲计降低功耗并改善了长期PPG无线监控。

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