Suppr超能文献

使用编码结构光的足底表面的动态 3D 形状:技术报告。

Dynamic 3D shape of the plantar surface of the foot using coded structured light: a technical report.

机构信息

Institute of Motion Analysis and Research, Department of Orthopedic and Trauma Surgery, Tayside Orthopedics and Rehabilitation Technology Centre, Ninewells Hospital and Medical School, University of Dundee, Dundee, DD1 9SY, UK.

出版信息

J Foot Ankle Res. 2014 Jan 23;7(1):5. doi: 10.1186/1757-1146-7-5.

Abstract

BACKGROUND

The foot provides a crucial contribution to the balance and stability of the musculoskeletal system, and accurate foot measurements are important in applications such as designing custom insoles/footwear. With better understanding of the dynamic behavior of the foot, dynamic foot reconstruction techniques are surfacing as useful ways to properly measure the shape of the foot. This paper presents a novel design and implementation of a structured-light prototype system providing dense three dimensional (3D) measurements of the foot in motion. The input to the system is a video sequence of a foot during a single step; the output is a 3D reconstruction of the plantar surface of the foot for each frame of the input.

METHODS

Engineering and clinical tests were carried out to test the accuracy and repeatability of the system. Accuracy experiments involved imaging a planar surface from different orientations and elevations and measuring the fitting errors of the data to a plane. Repeatability experiments were done using reconstructions from 27 different subjects, where for each one both right and left feet were reconstructed in static and dynamic conditions over two different days.

RESULTS

The static accuracy of the system was found to be 0.3 mm with planar test objects. In tests with real feet, the system proved repeatable, with reconstruction differences between trials one week apart averaging 2.4 mm (static case) and 2.8 mm (dynamic case).

CONCLUSION

The results obtained in the experiments show positive accuracy and repeatability results when compared to current literature. The design also shows to be superior to the systems available in the literature in several factors. Further studies need to be done to quantify the reliability of the system in clinical environments.

摘要

背景

足部为肌肉骨骼系统的平衡和稳定性提供了至关重要的贡献,准确的足部测量在定制鞋垫/鞋类设计等应用中非常重要。随着对足部动态行为的更好理解,动态足部重建技术作为一种正确测量足部形状的有用方法正在出现。本文提出了一种新颖的设计和实现,即提供运动中足部密集三维(3D)测量的结构光原型系统。该系统的输入是一只脚在单步运动过程中的视频序列;输出是输入每一帧的足底的 3D 重建。

方法

进行了工程和临床测试,以测试系统的准确性和可重复性。准确性实验涉及从不同方位和高度对平面进行成像,并测量数据拟合到平面的误差。使用来自 27 个不同受试者的重建进行可重复性实验,对于每个受试者,都在两天的时间内对静态和动态条件下的左右脚进行重建。

结果

系统的静态精度在平面测试物体中发现为 0.3 毫米。在真实足部的测试中,系统被证明是可重复的,相隔一周的两次试验之间的重建差异平均为 2.4 毫米(静态情况)和 2.8 毫米(动态情况)。

结论

与现有文献相比,实验中获得的结果显示出积极的准确性和可重复性。该设计在几个因素上也优于文献中可用的系统。需要进一步研究来量化系统在临床环境中的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c79/3903035/2f6b6c0ca638/1757-1146-7-5-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验