首页> 外文期刊>Global spine journal. >The Barrow Biomimetic Spine: Face, Content, and Construct Validity of a3D-Printed Spine Model for Freehand and Minimally Invasive Pedicle ScrewInsertion
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The Barrow Biomimetic Spine: Face, Content, and Construct Validity of a3D-Printed Spine Model for Freehand and Minimally Invasive Pedicle ScrewInsertion

机译:巴罗仿生脊柱:面部,内容和构造的徒手和微创椎弓根螺钉插入的3D打印脊柱模型的有效性。

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Study Design: Description and evaluation of a novel surgical training platform. Objectives: The purpose of this study was to investigate the face, content, and construct validity of 5 novel surgical training models that simulate freehand and percutaneous (minimally invasive surgery [MIS]) pedicle screw placement. Methods: Five spine models were developed by residents: 3 for freehand pedicle screw training (models A-C) and 2 for MIS pedicle screw training (models D and E). Attending spine surgeons evaluated each model and, using a 20-point Likert-type scale, answered survey questions on model face, content, and construct validity. Scores were statistically evaluated and compared using means, standard deviations, and analysis of variance between models and between surgeons. Results: Among the freehand models, model C demonstrated the highest overall validity, with mean face (15.67 ± 5.49), content (19.17 ± 0.59), and construct (18.83 ± 0.24) validity all measuring higher than the other freehand models. For the MIS models, model D had the highest validity scores (face, content, and construct validity of 11.67 ± 3.77, 18.17 ± 2.04, and 17.00 ± 3.46, respectively). The 3 freehand models differed significantly in content validity scores ( P = .002) as did the 2 MIS models ( P .001). The testing surgeons’ overall validity scores were significantly different for models A ( P = .005) and E ( P .001). Conclusions: A 3-dimensional-printed spine model with incorporated bone bleeding and silicone rubber soft tissue was scored as having very high content and construct validity for simulating freehand pedicle screw insertion. These data has informed the further development of several surgical training models that hold great potential as educational adjuncts in surgical training programs.
机译:研究设计:描述和评估新型外科手术训练平台。目的:本研究的目的是研究5种新颖的模拟徒手和经皮(微创手术[MIS])椎弓根螺钉放置方法的外科训练模型的面容,内容和结构有效性。方法:居民开发了五个脊柱模型:3个用于徒手椎弓根螺钉训练(A-C型)和2个用于MIS椎弓根螺钉训练(D和E型)。主治脊柱外科医生对每个模型进行了评估,并使用20点Likert型量表对模型的表面,内容和构造效度回答了调查问题。对得分进行统计评估,并使用均值,标准差和模型之间以及外科医生之间的方差分析进行比较。结果:在徒手模型中,模型C表现出最高的总体有效性,其平均面部表情(15.67±5.49),内容(19.17±0.59)和构造(18.83±0.24)有效性均高于其他徒手模型。对于MIS模型,模型D的有效性得分最高(面部,内容和结构有效性分别为11.67±3.77、18.17±2.04和17.00±3.46)。 3个徒手画模型的内容有效性得分(P = .002)与2个MIS模型一样(P <.001)。对于模型A(P = .005)和模型E(P <.001),测试外科医生的整体有效性得分差异显着。结论:3维打印的脊柱模型具有合并的骨出血和硅橡胶软组织,被认为具有很高的内容,并且在模拟徒手椎弓根螺钉插入方面具有良好的构造效力。这些数据为进一步发展几种外科手术训练模型提供了参考,这些模型在外科手术训练计划中具有作为教育辅助手段的巨大潜力。

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