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Development of a 3D scan posture-correction procedure to facilitate the direct-digital splinting approach

机译:开发3D扫描姿势校正过程,以方便直接数字夹板方法

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The direct-digital upper-limb orthopaedic splinting process employs portable 3D scanning systems to capture anatomical surface geometry. However, the resultant quality of a complete upper-limb scan geometry may be detrimentally affected by involuntary movements of an unsupported limb, and the inability to maintain the correct posture due to patient disability. The aim of this research study is to develop an upper-limb 3D scanning posture-correction procedure that addresses these limitations. The methodology covers four stages: (a) 3D scanning; (b) rigging; (c) posture correction; and (d) geometry inspection. Manual and semi-automated rigging procedures were developed to define segments and joints of the wrist on the upper-limb scans. A semi-automated definition was developed to precisely and repeatedly articulate the defined hand segment. To assess feasibility and accuracy of the developed posture-correction procedure, the hand segment on scans in neutral hand posture were articulated with the developed posture-correction procedure as closely as possible to the corresponding hand positions on the scans in extended hand postures. The reported virtual posture-correction procedure provides a basis for research into anatomy articulation and the optimisation of complex splints and orthoses.
机译:直接数字上肢矫形夹板处理采用便携式3D扫描系统来捕获解剖结构几何形状。然而,完整的上肢扫描几何形状的所得到的质量可能受到不支持肢体的非自愿运动的不利影响,并且无法保持由于患者残疾而保持正确的姿势。该研究的目的是开发一种突出的高肢3D扫描姿势校正过程,可以解决这些限制。该方法涵盖四个阶段:(a)3D扫描; (b)索具; (c)姿势纠正;和(d)几何检查。制定手动和半自动化索具程序以定义手腕的段和关节在上肢扫描上。开发了一种半自动化定义,精确地和反复地阐明了定义的手段。为了评估发达的姿势校正程序的可行性和准确性,中性手动姿势的扫描的手段与发达的姿势矫正程序如伸展姿势中的扫描上的相应手持位置紧密地铰接。报告的虚拟姿势校正程序为研究解剖学和复杂夹板和晶体的优化提供了基础。

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