Suppr超能文献

垂直全身振动向人体的传递。

Transmission of vertical whole body vibration to the human body.

作者信息

Kiiski Juha, Heinonen Ari, Järvinen Teppo L, Kannus Pekka, Sievänen Harri

机构信息

Bone Research Group, UKK Institute, Tampere, Finland.

出版信息

J Bone Miner Res. 2008 Aug;23(8):1318-25. doi: 10.1359/jbmr.080315.

Abstract

According to experimental studies, low-amplitude high-frequency vibration is anabolic to bone tissue, whereas in clinical trials, the bone effects have varied. Given the potential of whole body vibration in bone training, this study aimed at exploring the transmission of vertical sinusoidal vibration to the human body over a wide range of applicable amplitudes (from 0.05 to 3 mm) and frequencies (from 10 to 90 Hz). Vibration-induced accelerations were assessed with skin-mounted triaxial accelerometers at the ankle, knee, hip, and lumbar spine in four males standing on a high-performance vibration platform. Peak vertical accelerations of the platform covered a range from 0.04 to 19 in units of G (Earth's gravitational constant). Substantial amplification of peak acceleration could occur between 10 and 40 Hz for the ankle, 10 and 25 Hz for the knee, 10 and 20 Hz for the hip, and at 10 Hz for the spine. Beyond these frequencies, the transmitted vibration power declined to 1/10th-1/1000 th of the power delivered by the platform. Transmission of vibration to the body is a complicated phenomenon because of nonlinearities in the human musculoskeletal system. These results may assist in estimating how the transmission of vibration-induced accelerations to body segments is modified by amplitude and frequency and how well the sinusoidal waveform is maintained. Although the attenuation of vertical vibration at higher frequencies is fortunate from the aspect of safety, amplitudes >0.5 mm may result in greater peak accelerations than imposed at the platform and thus pose a potential hazard for the fragile musculoskeletal system.

摘要

根据实验研究,低振幅高频振动对骨组织具有合成代谢作用,而在临床试验中,对骨骼的影响则各不相同。鉴于全身振动在骨骼训练方面的潜力,本研究旨在探索在广泛适用的振幅范围(0.05至3毫米)和频率范围(10至90赫兹)内,垂直正弦振动向人体的传递情况。在四个站在高性能振动平台上的男性中,使用安装在脚踝、膝盖、臀部和腰椎处皮肤表面的三轴加速度计来评估振动引起的加速度。平台的垂直峰值加速度范围为0.04至19 G(地球引力常数)。对于脚踝,在10至40赫兹之间、膝盖在10至25赫兹之间、臀部在10至20赫兹之间以及脊柱在10赫兹时,峰值加速度可能会大幅放大。超过这些频率后,传递的振动功率下降至平台所传递功率的1/10至1/1000。由于人体肌肉骨骼系统的非线性,振动向身体的传递是一个复杂的现象。这些结果可能有助于估计振动引起的加速度向身体各部位的传递如何因振幅和频率而改变,以及正弦波形的保持程度如何。尽管从安全角度来看,高频时垂直振动的衰减是有利的,但振幅>0.5毫米可能会导致比平台施加的更大的峰值加速度,从而对脆弱的肌肉骨骼系统构成潜在危害。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验