Jaber Youssef, Jimenez Francisco Ericber, Bartlett Miles F, Fitzgerald Liam F, Kent Jane A, Sup Frank C
Department of Mechanical and Industrial Engineering, University of Massachusetts Amherst, Amherst, MA 01003.
Department of Kinesiology, University of Massachusetts Amherst, Amherst, MA 01003.
J Biomech Eng. 2020 Sep 1;142(9). doi: 10.1115/1.4046585.
A magnetic resonance (MR) compatible ergometer has been developed to study contracting lower limb muscles during acquisition of MR spectroscopy data, a technique to noninvasively measure metabolic energy in muscle tissue. Current active and passive MR-compatible ergometer designs lack torque or velocity control to allow precise mechanical measurements during isotonic and isokinetic contractions; incorporating load and velocity controllers while maintaining MR-compatibility is the main challenge. Presented in this paper is the design and evaluation of an MR-compatible ergometer designed to control knee torque or velocity up to 420 N·m and 270 deg/s and is able to operate in a 3 Tesla magnetic field. The ergometer comprising of a passive component with no electronics or ferrous materials is located inside the bore of the scanner. The active component with the electronics and actuator located outside of the magnetic field in an adjacent room. The active components connect to the passive components via a cable that passes through the waveguide, a hole in the wall of the scanner room. System evaluations were performed and human subject evaluations were performed that measured the mechanical performance and show the mean percent errors below 9% in isotonic and 2% in isokinetic conditions.
一种用于磁共振(MR)成像的测力计已被开发出来,用于在采集磁共振波谱数据期间研究下肢肌肉收缩情况,这是一种无创测量肌肉组织代谢能量的技术。目前的主动式和被动式MR兼容测力计设计缺乏扭矩或速度控制,无法在等张和等速收缩期间进行精确的力学测量;在保持MR兼容性的同时加入负载和速度控制器是主要挑战。本文介绍了一种MR兼容测力计的设计与评估,该测力计旨在控制膝关节扭矩或速度,最高可达420N·m和270°/s,并且能够在3特斯拉磁场中运行。该测力计由一个无电子元件和铁磁材料的被动部件组成,位于扫描仪的孔腔内。带有电子元件和执行器的主动部件位于相邻房间的磁场外。主动部件通过一根穿过波导(扫描室壁上的一个孔)的电缆与被动部件相连。进行了系统评估和人体受试者评估,测量了力学性能,结果表明在等张条件下平均百分比误差低于9%,在等速条件下低于2%。