Klaesner J W, Commean P K, Hastings M K, Zou D, Mueller M J
Department of Biomedical Engineering, Washington University School of Medicine, St. Louis, MO 63108-1410, USA.
IEEE Trans Neural Syst Rehabil Eng. 2001 Jun;9(2):232-40. doi: 10.1109/7333.928583.
We have designed, built, and tested a portable indentor device that allows us to determine force/displacement (F/D) measurements on soft tissue in a clinical or research setting. The indentor system consists of a load cell mounted on a three-dimensional measurement device (Metrecom). The output of the load cell and the Metrecom are recorded and analyzed by software running on a notebook computer. The displacement calibration of the Metrecom gave an average error = 0.005 mm [standard deviation (SD) = 0.062)]. The force calibration of the load cell resulted in an average error = 0.022 N (SD = 0.049) and a linearity of 1.0062 (R2 = 0.9998). The indentor device was tested on six different human soft tissues by two different investigators. The interreliabilities and intrareliabilities were 0.99 [interclass correlation (ICC)] indicating that the results were repeatable by more than one investigator. F/D measurements from indentor testing on two materials were comparable to values measured using an Instron device (5.34 versus. 5.52 N/mm, and 0.98 versus 1.04 N/mm). The device was used to measure the soft tissue characteristics on the plantar surface of the foot of one subject. These data were used to calculate the effective Young's modulus for the tissue using equations derived by Zheng et al. [1] and indicated a wide range of values dependent upon the portion of the F/D curve used. All results indicate data from this portable indentor device are reliable, accurate, and sensitive enough to identify mechanical properties of human tissues.
我们设计、制造并测试了一种便携式压痕装置,该装置使我们能够在临床或研究环境中对软组织进行力/位移(F/D)测量。压痕系统由安装在三维测量装置(Metrecom)上的测力传感器组成。测力传感器和Metrecom的输出由笔记本电脑上运行的软件记录和分析。Metrecom的位移校准平均误差为0.005毫米[标准差(SD)=0.062]。测力传感器的力校准平均误差为0.022牛(SD = 0.049),线性度为1.0062(R2 = 0.9998)。两位不同的研究人员在六种不同的人体软组织上对该压痕装置进行了测试。组间可靠性和组内可靠性为0.99[组内相关系数(ICC)],表明结果可被不止一位研究人员重复。对两种材料进行压痕测试得到的F/D测量值与使用英斯特朗设备测量的值相当(分别为5.34对5.52牛/毫米,以及0.98对1.04牛/毫米)。该装置用于测量一名受试者足底的软组织特性。这些数据用于使用Zheng等人[1]推导的公式计算该组织的有效杨氏模量,结果表明根据所使用的F/D曲线部分不同,模量值范围很广。所有结果表明,该便携式压痕装置的数据可靠、准确且足够灵敏,能够识别人体组织的力学特性。