Suppr超能文献

关于全身振动暴露与脊柱健康风险之间的关系。

On the relationship between whole-body vibration exposure and spinal health risk.

作者信息

Seidel Helmut

机构信息

Federal Institute for Occupational Safety and Health, Noeldnerstr. 40 - 42, D-10317 Berlin, Germany.

出版信息

Ind Health. 2005 Jul;43(3):361-77. doi: 10.2486/indhealth.43.361.

Abstract

A conceptual framework provides the possibility to identify factors determining the effects of whole-body vibration (WBV) on the spine and the internal stress-strain relationships. Epidemiological studies were critically evaluated with respect to their significance for the derivation of quantitative exposure-effect relationships. The approach of deriving such relationships from a comparison with self-generated accelerations during daily activities was considered as unsuited. Trunk muscle activity and control with apparently identical accelerations of body parts during self-generated and forced motions differ widely. Simple biodynamic models coupled with experimental in vivo and in vitro data permitted a preliminary deduction of quantitative relationships between WBV and spinal health with the consideration of individual factors and exposure conditions. Examples of anatomy-based verified finite element models and their application are provided. Such models are considered as a very promising instrument. They can be used to assess quantitatively preventive measures and design. Future research needs concern the examination of (1) the nonlinearity of biodynamics, (2) the effects of WBV in x- and y-axes, (3) the strength of the spine for shear, (4) the contact parameters between the seat and man, (5) the significance of postures and muscle activity, and (6) material properties of spinal structures.

摘要

一个概念框架提供了识别决定全身振动(WBV)对脊柱影响及内部应力应变关系的因素的可能性。对流行病学研究在推导定量暴露-效应关系方面的意义进行了严格评估。把通过与日常活动中自身产生的加速度作比较来推导这种关系的方法视为不合适。在自身产生的运动和强制运动过程中,躯干肌肉活动以及身体各部位明显相同加速度下的控制差异很大。简单的生物动力学模型结合体内和体外实验数据,在考虑个体因素和暴露条件的情况下,允许初步推导WBV与脊柱健康之间的定量关系。提供了基于解剖学验证的有限元模型及其应用的实例。此类模型被视为一种非常有前景的工具。它们可用于定量评估预防措施和设计。未来的研究需求涉及对以下方面的研究:(1)生物动力学的非线性;(2)WBV在x轴和y轴上的影响;(3)脊柱的抗剪切强度;(4)座椅与人之间的接触参数;(5)姿势和肌肉活动的意义;(6)脊柱结构的材料特性。

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