Pathak A P, Silver-Thorn M B, Thierfelder C A, Prieto T E
Department of Biomedical Engineering, Marquette University, Milwaukee, WI 53201, USA.
IEEE Trans Rehabil Eng. 1998 Mar;6(1):12-20. doi: 10.1109/86.662616.
A tissue tester was designed to enable rate-controlled indentation of the bulk soft tissues of lower extremity residual limbs. The tissue tester employs a digital linear actuator that implements rate-controlled indentation, and a load cell that measures the reaction force resulting from tissue indentation. Viscoelastic phenomena such as preconditioning, hysteresis and force relaxation can be assessed, and the effect of varying indentation rates on soft tissue stiffness can be investigated. The device accommodates indentor excursions up to 30 mm, indentation at rates of 0 to 10 mm/s, reaction forces up to 44 N, and multiple loading/unloading cycles. The tissue tester is controlled via a notebook personal computer with a PCMCIA data acquisition card. The tissue testing trials are automated and the entire test system is portable and amenable for use in a clinical or research environment. System output consists of force-displacement curves from cyclic loading, and force-time curves following ramped-step indentation. The mean indentor positioning error was 0.071 (+/-0.75)% of the desired displacement. This error varied as a function of indentation and was approximately independent of the indentation rate. Indentation rates were accurate to within 0.94(+/-0.68)% of the desired value and also varied with indentation. Indentation of a viscoelastic foam yielded force-displacement curves that were consistent with that obtained from an Instron universal testing machine.
设计了一种组织测试仪,用于对下肢残肢的大块软组织进行速率控制的压痕测试。该组织测试仪采用数字线性致动器实现速率控制的压痕,以及一个测力传感器来测量组织压痕产生的反作用力。可以评估诸如预处理、滞后和力松弛等粘弹性现象,并研究不同压痕速率对软组织刚度的影响。该装置可承受高达30mm的压头行程、0至10mm/s的压痕速率、高达44N的反作用力以及多个加载/卸载循环。组织测试仪通过带有PCMCIA数据采集卡的笔记本个人计算机进行控制。组织测试试验是自动化的,整个测试系统便于携带,适用于临床或研究环境。系统输出包括循环加载的力-位移曲线以及斜坡步进压痕后的力-时间曲线。压头定位的平均误差为所需位移的0.071(±0.75)%。该误差随压痕而变化,并且大致与压痕速率无关。压痕速率精确到所需值的0.94(±0.68)%以内,并且也随压痕而变化。对粘弹性泡沫进行压痕得到的力-位移曲线与从英斯特朗万能试验机获得的曲线一致。