Mohammad Umar, Awan M Asfandyar, Bermak Amine, Tang Fang
Chongqing Engineering Laboratory of High Performance Integrated CircuitsDepartment of Information and Communication EngineeringChongqing University Chongqing 400044 China.
College of Science and EngineeringHamad Bin Khalifa University Doha Qatar.
IEEE Sens J. 2022 Apr 4;22(10):9189-9197. doi: 10.1109/JSEN.2022.3164148. eCollection 2022 May.
In the past few years, a tremendous advancement in the outcome of biomedical circuits and systems has been reported. Unfortunately, at the time of the sudden outbreak of COVID-19, the electronic engineering researchers felt dearth on their side to combat the pandemic, as no such immediate cutting-edge solutions were ready to recognize the virus with some standard and smart electronic devices. Likely, in this paper, a detailed comparative and comprehensive study on circuit architectures of the biomedical devices is presented. Mostly, this study relates the industry standard circuit schemes applicable in non-invasive health monitoring to combat respiratory illnesses. The trending circuit architectural schemes casted-off to tapeout non-invasive health-care devices available in the past literature are meticulously and broadly discussed in this study. Further, the comprehensive comparison of the state of art of the device performance in terms of supply voltage, chip area, sensitivity, dynamic range, etc. is also shown in this paper. The inclusive design processes of the health monitoring devices from Lab to Industry is thoroughly discussed for the readers. The authors think, that this critical review summarising all the trending and most cited health-care devices in a single paper will alternately help the industrialists to adapt and modify the circuit architectures of the health monitoring devices more precisely and straightforwardly. Finally, the demand for health monitoring devices particularly responsible to detect respiratory illnesses, measuring blood pressure and heart-rate is growing widely in the market after the the incident of COVID-19 and other respiratory diseases.
在过去几年中,已有报道称生物医学电路和系统的成果取得了巨大进展。不幸的是,在新冠疫情突然爆发时,电子工程研究人员感到自身缺乏应对疫情的手段,因为没有现成的前沿解决方案能够通过一些标准且智能的电子设备识别该病毒。同样,本文对生物医学设备的电路架构进行了详细的比较和全面的研究。该研究主要涉及适用于非侵入式健康监测以对抗呼吸道疾病的行业标准电路方案。本研究对过去文献中用于实现非侵入式医疗设备流片的流行电路架构方案进行了细致且广泛的讨论。此外,本文还展示了在电源电压、芯片面积、灵敏度、动态范围等方面对设备性能的最新技术水平的全面比较。本文还为读者深入讨论了从实验室到工业的健康监测设备的完整设计过程。作者认为,这篇在一篇论文中总结所有流行且被大量引用的医疗设备的批判性综述,将有助于实业家更精确、直接地调整和修改健康监测设备的电路架构。最后,在新冠疫情及其他呼吸道疾病事件之后,市场对尤其负责检测呼吸道疾病、测量血压和心率的健康监测设备的需求正在广泛增长。