期刊论文详细信息
BMC Musculoskeletal Disorders
Microstructure and biomechanical characteristics of bone substitutes for trauma and orthopaedic surgery
Research Article
Esther MM Van Lieshout1  Youssef El-Massoudi1  Gerdine H Van Kralingen1  Peter Patka1  Harrie Weinans2 
[1] Department of Surgery-Traumatology, Erasmus MC, University Medical Centre Rotterdam, P.O. Box 2040, 3000 CA, Rotterdam, The Netherlands;Orthopedic Research Laboratory, Department of Orthopaedics, Erasmus MC, University Medical Centre Rotterdam, P.O. Box 1738, 3000 DR, Rotterdam, The Netherlands;
关键词: Bioactive Glass;    Total Porosity;    Bone Substitute;    Calcium Phosphate Cement;    Bone Ingrowth;   
DOI  :  10.1186/1471-2474-12-34
 received in 2010-10-11, accepted in 2011-02-02,  发布年份 2011
来源: Springer
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【 摘 要 】

BackgroundMany (artificial) bone substitute materials are currently available for use in orthopaedic trauma surgery. Objective data on their biological and biomechanical characteristics, which determine their clinical application, is mostly lacking. The aim of this study was to investigate structural and in vitro mechanical properties of nine bone substitute cements registered for use in orthopaedic trauma surgery in the Netherlands.MethodsSeven calcium phosphate cements (BoneSource®, Calcibon®, ChronOS®, Eurobone®, HydroSet™, Norian SRS®, and Ostim®), one calcium sulphate cement (MIIG® X3), and one bioactive glass cement (Cortoss®) were tested. Structural characteristics were measured by micro-CT scanning. Compression strength and stiffness were determined following unconfined compression tests.ResultsEach bone substitute had unique characteristics. Mean total porosity ranged from 53% (Ostim®) to 0.5% (Norian SRS®). Mean pore size exceeded 100 μm only in Eurobone® and Cortoss® (162.2 ± 107.1 μm and 148.4 ± 70.6 μm, respectively). However, 230 μm pores were found in Calcibon®, Norian SRS®, HydroSet™, and MIIG® X3. Connectivity density ranged from 27/cm3 for HydroSet™ to 0.03/cm3 for Calcibon®. The ultimate compression strength was highest in Cortoss® (47.32 MPa) and lowest in Ostim® (0.24 MPa). Young's Modulus was highest in Calcibon® (790 MPa) and lowest in Ostim® (6 MPa).ConclusionsThe bone substitutes tested display a wide range in structural properties and compression strength, indicating that they will be suitable for different clinical indications. The data outlined here will help surgeons to select the most suitable products currently available for specific clinical indications.

【 授权许可】

CC BY   
© Van Lieshout et al; licensee BioMed Central Ltd. 2011

【 预 览 】
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