力学生物学与骨折愈合的相关性研究骨合成,生物材料优化和TRIZ设计原则开发改良植入物重建胸骨正中骨软骨切开术。

Q3 Dentistry
Harjeet Singh Gandhi
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引用次数: 0

摘要

不锈钢丝的应用仍然是“护理标准”,被认为是经胸骨开胸术后的“金标准”。为了克服术后不稳定和手术伤口感染,已经发展了各种环形、半圆形和表面放置的植入物设计,以促进胸骨愈合,特别是在受损患者中。这项基础性的描述性理论研究探讨了力学环境对骨折愈合的生物学和影响,以及在胸骨愈合过程中可能发生的各种类型的骨化。在胸骨手术解剖之后,详细讨论了骨折(截骨)愈合的生物学,传统和新型生物材料的更新,以及3D打印在外科植入物定制增材制造中的作用。讨论了设计原则和结构优化,符合患者特异性和适合患者的骨合成。作为支持,Teorija Rezhenija Izobretatelskikh Zadatch工程原理已被应用于改进植入物设计,以缓解目前最受欢迎的胸骨重建植入物力学基础上的一些顽固性缺陷。工程设计原理和骨折愈合过程的几个科学领域已经联系起来,导致四个新的概念化的胸骨重建原型设计。总之,尽管对骨折愈合过程的了解有所增加,但减轻愈合胸骨所经历的不利机械环境的方法有限。在胸骨骨折固定和重建时,如何将愈合过程中众所周知的组织应变事实从实验平台转移到手术台上以获得最佳愈合存在不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Correlation between Mechanobiology and Fracture Healing; Osteosynthesis, Biomaterial Optimization and TRIZ Design Principles to Develop Ameliorative Implants for Reconstruction of Median Osteochondrotomy of the Sternum.

The application of stainless-steel wire is still the "standard of care" and is believed to be the "gold standard" after trans-sternal thoracotomy. To overcome postoperative instability and surgical wound infection there had been the development of a variety of circumferential, Hemi-circular, and surface on-lay implant designs to enhance bone healing of the sternum particularly in compromised patients. This fundamental descriptive theoretical research study probes into biology and effects of mechanical environment on fracture healing in general and various types of ossifications that may occur during healing of the sternum. Following surgical anatomy of the sternum, the biology of fracture (osteotomy) healing, an update on the conventional and newer biomaterials, and role of 3D printing in custom additive manufacturing of the surgical implants have been discussed in detail. There is discussion on design principles and structural optimization in-line with patient-specific and patient-appropriate osteosynthesis. In support, the Teorija Rezhenija Izobretatelskikh Zadatch engineering principles have been applied to improve implant design in the face of the current strategies to relieve some of the recalcitrant deficiencies underlying the mechanics of the most favored implant for the reconstruction of the sternum. Several scientific domains of the engineering design principles and fracture healing processes have been connected leading to four newly conceptualized prototype designs for the reconstruction of the sternum. In conclusion, despite increased knowledge of the fracture healing process there are limited means to mitigate the adverse mechanical environment experienced by the healing sternum. There are uncertainties how to transfer the well-known facts of tissue strain during healing from the experimental platform to the operating table at the time of fracture fixation and reconstruction of the sternum for its optimal healing.

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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
46
期刊介绍: MEDICAL IMPLANTS are being used in every organ of the human body. Ideally, medical implants must have biomechanical properties comparable to those of autogenous tissues without any adverse effects. In each anatomic site, studies of the long-term effects of medical implants must be undertaken to determine accurately the safety and performance of the implants. Today, implant surgery has become an interdisciplinary undertaking involving a number of skilled and gifted specialists. For example, successful cochlear implants will involve audiologists, audiological physicians, speech and language therapists, otolaryngologists, nurses, neuro-otologists, teachers of the deaf, hearing therapists, cochlear implant manufacturers, and others involved with hearing-impaired and deaf individuals.
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