Tomasini M, Benatti S, Casamassima F, Milosevic B, Fateh S, Farella E, Benini L
Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:3189-92. doi: 10.1109/EMBC.2015.7319070.
Wearable systems capable to capture vital signs allow the development of advanced medical applications. One notable example is the use of surface electromyography (EMG) to gather muscle activation potentials, in principle an easy input for prosthesis control. However, the acquisition of such signals is affected by high variability and ground loop problems. Moreover, the input impedance influenced in time by motion and perspiration determines an offset, which can be orders of magnitude higher than the signal of interest. We propose a wearable device equipped with a digitally controlled Analog Front End (AFE) for biopotentials acquisition with zero-offset. The proposed AFE solution has an internal Digital to Analog Converter (DAC) used to adjust independently the reference of each channel removing any DC offset. The analog integrated circuit is coupled with a microcontroller, which periodically estimates the offset and implements a closed loop feedback on the analog part. The proposed approach was tested on EMG signals acquired from 4 subjects while performing different activities and shows that the system correctly acquires signals with no DC offset.
能够捕捉生命体征的可穿戴系统有助于开发先进的医疗应用。一个显著的例子是利用表面肌电图(EMG)来收集肌肉激活电位,原则上这是假肢控制的一个简单输入。然而,此类信号的采集会受到高变异性和地环路问题的影响。此外,受运动和出汗影响随时间变化的输入阻抗会产生一个偏移量,该偏移量可能比感兴趣的信号高出几个数量级。我们提出一种配备数字控制模拟前端(AFE)的可穿戴设备,用于零偏移生物电位采集。所提出的AFE解决方案具有一个内部数模转换器(DAC),用于独立调整每个通道的参考电压,消除任何直流偏移。该模拟集成电路与一个微控制器相连,微控制器定期估计偏移量并在模拟部分实现闭环反馈。所提出的方法在4名受试者进行不同活动时采集的EMG信号上进行了测试,结果表明该系统能够正确采集无直流偏移的信号。