Hastings G W, Mahmud F A
North Staffordshire Polytechnic, UK.
J Biomed Eng. 1988 Nov;10(6):515-21. doi: 10.1016/0141-5425(88)90109-4.
This paper presents a review of the work carried out on the electromechanical properties of bone over the past three decades. Research in this field has established the piezoelectric nature of bone and identified collagen as the generating source in dry bone. Some of the characteristics of the strain generated potential (SGP) signal from dry and hydrated bone were found to be unaccountable in terms of a classical piezoelectric theory. Modifications of the theory were suggested and in the case of fully hydrated bone, a new mechanism (streaming potential) has emerged. The paper also reports on recent developments in the field and presents results from microstructural (osteonic) studies and from fluid-filled bone. The review indicates the need for actual in vivo work because most of the reported data were obtained, in the last decade, from in vitro work and were considered valid in vivo. Modelling of the mechanism which produces the SGP has been considered to explain the characteristics of these potentials. A representative model recently developed by the present authors and co-workers is reported. This model relates the generated potential to reorientation of spontaneous dipoles and differentiates between the generated and recorded signal, thus identifying effects from the measuring circuitry. The clinical aspects of electricity of bone in assisting fracture healing and the different techniques employed are mentioned briefly. Emphasis on new techniques of piezoelectric implants and their future development is also reported.
本文回顾了过去三十年中关于骨骼机电特性的研究工作。该领域的研究确定了骨骼的压电性质,并确定胶原蛋白是干燥骨骼中的发电来源。发现干燥和含水骨骼产生的应变产生电位(SGP)信号的一些特性无法用经典压电理论解释。有人提出了对该理论的修正,对于完全含水的骨骼,出现了一种新机制(流动电位)。本文还报告了该领域的最新进展,并展示了微观结构(骨单位)研究和充满液体的骨骼的研究结果。该综述表明需要进行实际的体内研究,因为过去十年中报告的大多数数据都是通过体外研究获得的,并被认为在体内是有效的。已经考虑对产生SGP的机制进行建模,以解释这些电位的特性。报告了作者及其同事最近开发的一个代表性模型。该模型将产生的电位与自发偶极子的重新定向联系起来,并区分产生的信号和记录的信号,从而识别测量电路的影响。简要提及了骨骼电在促进骨折愈合方面的临床应用以及所采用的不同技术。还报告了对压电植入物新技术及其未来发展的重视。