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Methodology for performing biomechanical push-out tests for evaluating the osseointegration of calvarial defect repair in small animal models

机译:进行生物力学推出试验的方法论,用于评估小动物模型中颅骨缺陷修复的骨整合

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Push-out tests are frequently used to evaluate the bone-implant interfacial strength of orthopedic implants, particularly dental and craniomaxillofacial applications. There currently is no standard method for performing push-out tests on calvarial models, leading to a variety of inconsistent approaches. In this study, fixtures and methods were developed to perform push-out tests in accordance with the following design objectives: (i) the system rigidly fixes the explanted calvarial sample, (ii) it minimizes lateral bending, (iii) it positions the defect accurately, and (iv) it permits verification of the coaxial alignment of the defect with the push-out rod. The fixture and method was first validated by completing push-out experiments on 30 explanted murine cranial caps and two explanted leporine cranial caps, all induced with bilateral sub-critical defects (5.0?mm and 8.0?mm nominal diameter for the murine and leporine models, respectively). Defects were treated with an autograft (i.e., excised tissue flap), a shape memory polymer (SMP) scaffold, or a PEEK implant. Additional validation was performed on 24 murine cranial caps induced with a single, unilateral critically-sized defect (8.0 mm nominal diameter) and treated with an autograft or a SMP scaffold.?A novel fixture was developed for performing push-out mechanical tests to characterize the strength of a bone-implant interface in calvarial defect repair.?The fixture uses a 3D printed vertical clamp with mating alignment component to fix the sample in place without inducing lateral bending and verify coaxial alignment of push-out rod with the defect.?The fixture can be scaled to different calvarial defect geometries as validated with 5.0?mm bilateral and 8.0?mm single diameter murine calvarial defect model and 8.0 mm bilateral leporine calvarial defect model.
机译:推出测试经常用于评估骨科植入物的骨植入界面强度,特别是牙科和颅骨的应用。目前没有在Calvarial模型上执行推出测试的标准方法,导致各种不一致的方法。在该研究中,开发了固定装置和方法,以根据以下设计目标进行推出测试:(i)系统刚性地修复了外横向的颅样样品,(ii)它最小化横向弯曲,(iii)它定位缺陷准确地,(iv)允许验证与推杆的缺陷的同轴对准。首先通过在30分布的小鼠颅帽和两种分析的鳞粉颅帽上完成推出实验来验证夹具和方法,所有这些都诱导双侧亚临界缺陷(5.0Ωmm和8.0Ωmm的鼠和Leporine模型的标称直径, 分别)。用自体移植(即,切除的组织瓣),形状记忆聚合物(SMP)支架或PEEK植入物处理缺陷。在24只小鼠颅帽上进行额外的验证,用单侧,单侧统治缺陷(8.0 mm标称直径)并用自体移植或SMP脚手架处理。开发了新型夹具,用于进行推出的机械测试以表征颅骨缺陷修复中的骨植入界面的强度。夹具使用3D印刷的垂直夹具配合对准部件,将样品固定到位,而不会引起横向弯曲并验证推出杆与缺陷的同轴对准。夹具可以缩放到与5.0毫米和8.0毫米和8.0毫米鼠颅壳缺陷模型和8.0 mm双侧储钱缺陷模型的不同的颅骨缺陷几何形状。

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