Sohirad Sahand, Wilson David, Waugh Charlotte, Finnamore Evan, Scott Alexander
Centre for Hip Health and Mobility, Vancouver Coastal Health Research Institute, Vancouver, Canada.
Department of Orthopaedics, Faculty of Medicine, University of British Columbia, Vancouver, Canada.
PLoS One. 2017 Sep 6;12(9):e0184463. doi: 10.1371/journal.pone.0184463. eCollection 2017.
To examine the feasibility of using the MyotonPRO digital palpation device in measuring the transverse stiffness of tendon tissue.
Experimental study.
The MyotonPRO was used to measure the stiffness and related properties of ballistics gel in comparison with an external materials testing system (PCB electronics). The device was then used to measure the same properties of avian Achilles tendons before and after the removal of the overlying skin and subcutaneous tissue. Next, the test-retest reliability of the Achilles and patellar tendons was determined in humans. Finally, the stiffness of the Achilles tendon was measured before and after competitive running races of varying distances (10, 21 and 42 km, total number of athletes analyzed = 66).
The MyotonPRO demonstrated a high degree of consistency when testing ballistics gel with known viscoelastic properties. The presence of skin overlying the avian Achilles tendon had a statistically significant impact on stiffness (p<0.01) although this impact was of very small absolute magnitude (with skin; 728 Nm ±17 Nm, without skin; Nm 704 Nm ±7 Nm). In healthy adults of normal body mass index (BMI), the reliability of stiffness values was excellent both for the patellar tendon (ICC, 0.96) and the Achilles tendon (ICC,0.96). In the the field study, men had stiffer tendons than women (p<0.05), and the stiffness of the Achilles tendon tended to increase following running (p = 0.052).
The MyotonPRO can reliably determine the transverse mechanical properties of tendon tissue. The measured values are influenced by the presence of overlying skin, however this does not appear to compromise the ability of the device to record physiologically and clinically relevant measurements.
探讨使用MyotonPRO数字触诊设备测量肌腱组织横向刚度的可行性。
实验研究。
将MyotonPRO用于测量弹道凝胶的刚度及相关特性,并与外部材料测试系统(PCB电子设备)进行比较。然后使用该设备测量禽类跟腱在去除覆盖其上的皮肤和皮下组织前后的相同特性。接下来,确定人类跟腱和髌腱的重测信度。最后,在不同距离(10公里、21公里和42公里,共分析66名运动员)的竞技跑步比赛前后测量跟腱的刚度。
当测试具有已知粘弹性特性的弹道凝胶时,MyotonPRO表现出高度的一致性。禽类跟腱上覆盖的皮肤对刚度有统计学显著影响(p<0.01),尽管这种影响的绝对幅度非常小(有皮肤时;728 N/m±17 N/m,无皮肤时;704 N/m±7 N/m)。在正常体重指数(BMI)的健康成年人中,髌腱(ICC,0.96)和跟腱(ICC,0.96)的刚度值信度都非常好。在实地研究中,男性的肌腱比女性更硬(p<0.05),并且跟腱的刚度在跑步后有增加的趋势(p = 0.052)。
MyotonPRO能够可靠地确定肌腱组织的横向力学特性。测量值受覆盖皮肤的影响,然而这似乎并不影响该设备记录生理和临床相关测量值的能力。