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能量分流型外部髋部保护器可将股骨峰值冲击力衰减至理论骨折阈值以下:一项老年人跌倒条件下的体外生物力学研究。

Energy-shunting external hip protector attenuates the peak femoral impact force below the theoretical fracture threshold: an in vitro biomechanical study under falling conditions of the elderly.

作者信息

Parkkari J, Kannus P, Heikkilä J, Poutala J, Sievänen H, Vuori I

机构信息

Accident & Trauma Research Center, UKK Institute for Health Promotion Research, Tampere, Finland.

出版信息

J Bone Miner Res. 1995 Oct;10(10):1437-42. doi: 10.1002/jbmr.5650101003.

Abstract

The first objective of this study was to design a hip protector that would effectively attenuate and shunt away from the greater trochanter the impact energies created in typical falls of the elderly. As the shock absorption material, the protector included the 12 mm-thick Plastazote, which was found to be the most efficient energy-absorbing material in our previous in vitro biomechanical tests. With an anatomically designed semiflexible outer shield of the protector (high density polyethylene), the impact surface was increased and the impact energy shunted away from the greater trochanter. In the second phase of the study, we determined the force attenuation capacity of this device in realistic (in vitro) falling conditions of the elderly. With the impact force of 6940 N used (a typical hip impact force measured in in vitro falling tests), the trochanteric soft tissue (25 mm-thick polyethylene foam) attenuated the peak femoral impact force to 5590 N and the tested protector to 1040 N. In the second series of this experiment, the peak femoral impact force was set to be so high (13,130 N) that the protector, if effective, should prevent the hip fracture in almost all cases. The trochanteric soft tissue attenuated this peak impact force to 10,400 N and the tested protector to 1810 N. Thus, the force received by the proximal femur still remained clearly below 4170 N, the average force required to fracture in vitro the proximal femur of the elderly in a fall loading configuration. In conclusion, our test results suggest that an anatomically designed energy-shunting and energy-absorbing hip protector can provide an effective impact force attenuation in typical falling conditions of the elderly. However, the efficacy of the protector in the prevention of hip fractures can only be evaluated in randomized clinical trials.

摘要

本研究的首要目标是设计一种髋部保护器,该保护器能有效衰减并从大转子分流老年人典型跌倒时产生的冲击能量。作为减震材料,该保护器包含12毫米厚的Plastazote,在我们之前的体外生物力学测试中,它被发现是最有效的能量吸收材料。通过对保护器进行解剖学设计的半柔性外罩(高密度聚乙烯),增加了冲击表面,并使冲击能量从大转子分流。在研究的第二阶段,我们在老年人真实的(体外)跌倒条件下确定了该装置的力衰减能力。使用6940牛的冲击力(体外跌倒测试中测量的典型髋部冲击力),转子软组织(25毫米厚的聚乙烯泡沫)将股骨峰值冲击力衰减至5590牛,而测试的保护器将其衰减至1040牛。在该实验的第二系列中,将股骨峰值冲击力设定得非常高(13130牛),以至于如果保护器有效,几乎在所有情况下都应能预防髋部骨折。转子软组织将该峰值冲击力衰减至10400牛,测试的保护器将其衰减至1810牛。因此,股骨近端所承受的力仍明显低于4170牛,即体外模拟跌倒负荷情况下老年人近端股骨骨折所需的平均力。总之,我们的测试结果表明,一种经过解剖学设计的能量分流和吸收型髋部保护器在老年人典型跌倒条件下能有效衰减冲击力。然而,保护器在预防髋部骨折方面的功效只能在随机临床试验中进行评估。

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