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椎体成形术中使用的骨水泥注射生物力学

Injection biomechanics of bone cements used in vertebroplasty.

作者信息

Baroud G, Bohner M, Heini P, Steffen T

机构信息

Laboratoire de biomécanique, Département de génie mécanique, Université de Sherbrooke, Sherbrooke, QC, Canada J1K 2R1.

出版信息

Biomed Mater Eng. 2004;14(4):487-504.

Abstract

The incidence of osteoporotic bone fractures is growing exponentially as the western population ages and as life expectancy increases. Vertebroplasty, where acrylic or calcium phosphate cement is injected into the weakened vertebrae to augment them, is an emerging procedure for treating spinal fragility fractures. However, cement injection is currently limited because there are no clear standards for a safe, reproducible and predictable procedure. The purpose of this paper is to examine the role that bone cements play in the underlying bio-mechanisms that affect the outcomes of cement injection. Our most important finding after combining clinical, laboratory and theoretical research is that the process of cement injection poses conflicting demands on bone cements. The cements are required to be more viscous and less viscous at the same time. The challenge therefore is to develop biomaterials, techniques and/or devices that can overcome or manage the conflicting demands on cement viscosity.

摘要

随着西方人口老龄化和预期寿命的增加,骨质疏松性骨折的发病率呈指数级增长。椎体成形术是一种新兴的治疗脊柱脆性骨折的方法,即在弱化的椎体内注入丙烯酸或磷酸钙骨水泥以强化椎体。然而,目前骨水泥注射存在局限性,因为缺乏安全、可重复和可预测操作的明确标准。本文旨在研究骨水泥在影响骨水泥注射效果的潜在生物力学机制中所起的作用。综合临床、实验室和理论研究后,我们最重要的发现是骨水泥注射过程对骨水泥提出了相互矛盾的要求。骨水泥需要同时具备更高的粘性和更低的粘性。因此,挑战在于开发能够克服或应对骨水泥粘性相互矛盾要求的生物材料、技术和/或设备。

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