Pozzo M, Bottin A, Ferrabone R, Merletti R
Laboratorio di Ingegneria del Sistema Neuromuscolare, Centro di Bioingegneria, Dip. di Elettronica, Politecnico di Torino, Italy.
Med Biol Eng Comput. 2004 Jul;42(4):455-66. doi: 10.1007/BF02350986.
The use of mono- and bi-dimensional electromyogram (EMG) electrode arrays for the assessment of the neuromuscular system can provide an insight into muscle physiology not achieved with classical bipolar surface EMG. Among the advantages of multichannel EMG detection, there is a) the possibility of estimating muscle fibre conduction velocity, even during motor tasks, and b) the possibility to increase the number of detection points on a muscle, improving the performance of pattern-based EMG decomposition methods. For these reasons, the development and use of multichannel surface EMG devices and techniques were chosen as the primary goals within the European RTD Project 'Neuromuscular assessment in the elderly worker' (NEW). The specific requirements of Project NEW called for the availability of a user-friendly, small-sized EMG acquisition system for field use, suitable for multichannel EMG recording using electrode arrays from one or more muscles. A market survey established that none of the commercially available EMG acquisition systems featured all the desired specifications, nor could they be easily adapted for specific use. The paper describes the design of an innovative acquisition system for long-term multichannel EMG recording fulfilling these requirements and comprising adhesive electrode arrays for artifact-free EMG acquisition during work activity and a portable, user-friendly, battery-powered acquisition system for multichannel EMG recording and storage on a removable PCMCIA card. The system has been used extensively within Project NEW for laboratory and field tests and can find applications in other fields of basic and applied research, including ergonomics, occupational and sports medicine.
使用单维和二维肌电图(EMG)电极阵列评估神经肌肉系统,可以深入了解肌肉生理学,而这是传统双极表面肌电图无法实现的。多通道肌电图检测的优势包括:a)即使在运动任务期间也有可能估计肌肉纤维传导速度;b)有可能增加肌肉上的检测点数量,从而提高基于模式的肌电图分解方法的性能。出于这些原因,在欧洲研发项目“老年工作者的神经肌肉评估”(NEW)中,多通道表面肌电图设备和技术的开发与应用被选为主要目标。项目NEW的具体要求是提供一种便于使用的小型肌电图采集系统,用于现场使用,适合使用来自一块或多块肌肉的电极阵列进行多通道肌电图记录。市场调查发现,所有市售的肌电图采集系统都不具备所有所需规格,也无法轻松适应特定用途。本文描述了一种创新的采集系统的设计,该系统用于长期多通道肌电图记录,满足上述要求,包括用于在工作活动期间进行无伪迹肌电图采集的粘性电极阵列,以及用于多通道肌电图记录并存储在可移动PCMCIA卡上的便携式、便于使用的电池供电采集系统。该系统已在项目NEW中广泛用于实验室和现场测试,并可应用于基础研究和应用研究的其他领域,包括人体工程学、职业和运动医学。