School of Health and Life Sciences, Glasgow Caledonian University, Glasgow, UK.
Arch Phys Med Rehabil. 2012 May;93(5):863-70. doi: 10.1016/j.apmr.2011.12.019.
To determine, for a number of techniques used to obtain foot shape based around plaster casting, foam box impressions, and 3-dimensional scanning, (1) the effect the technique has on the overall reproducibility of custom foot orthoses (FOs) in terms of inter- and intracaster reliability and (2) the reproducibility of FO design by using computer-aided design (CAD) software in terms of inter- and intra-CAD operator reliability for all these techniques.
Cross-sectional study.
University laboratory.
Convenience sample of individuals (N=22) with noncavus foot types.
Not applicable.
Parameters of the FO design (length, width at forefoot, width at rearfoot, and peak medial arch height), the forefoot to rearfoot angle of the foot shape, and overall volume match between device designs.
For intra- and intercaster reliability of the different methods of obtaining the foot shape, all methods fell below the reproducibility quality threshold for the medial arch height of the device, and volume matching was <80% for all methods. The more experienced CAD operator was able to achieve excellent reliability (intraclass correlation coefficients >0.75) for all variables with the exception of forefoot to rearfoot angle, with overall volume matches of >87% of the devices.
None of the techniques for obtaining foot shape met all the criteria for excellent reproducibility, with the peak arch height being particularly variable. Additional variability is added at the CAD stage of the FO design process, although with adequate operator experience good to excellent reproducibility may be achieved at this stage. Taking only basic linear or angular measurement parameters from the device may fail to fully capture the variability in FO design.
确定基于石膏铸模、泡沫盒印模和三维扫描的几种获取足形的技术,(1)从模具间和模具内的可靠性方面,评估该技术对定制足矫形器(FO)整体再现性的影响,以及(2)从模具间和模具内的 CAD 操作员可靠性方面,评估使用计算机辅助设计(CAD)软件对 FO 设计的再现性。
横断面研究。
大学实验室。
非 cavus 足型的个体(N=22)便利样本。
不适用。
FO 设计的参数(长度、前足宽度、后足宽度和峰值内侧弓高)、足形的前足至后足角度以及设备设计之间的整体体积匹配。
对于获取足形的不同方法的模具内和模具间可靠性,所有方法均低于设备内侧弓高的再现性质量阈值,所有方法的体积匹配均<80%。经验更丰富的 CAD 操作员能够实现所有变量的卓越可靠性(组内相关系数>0.75),除了前足至后足角度,设备的整体体积匹配度>87%。
获取足形的所有技术均未满足卓越再现性的所有标准,其中峰值弓高特别多变。FO 设计过程的 CAD 阶段会增加额外的可变性,但如果操作人员经验丰富,在此阶段可能会达到良好到卓越的再现性。仅从设备中获取基本的线性或角度测量参数可能无法完全捕捉 FO 设计的变异性。