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临床口腔生物力学的自动化与应用程序

Automation and apps for clinical dental biomechanics.

作者信息

Adams Bruce W

机构信息

a Spatial Lab [Spatial Imaging Laboratory Corp.] , Vancouver , BC , Canada.

出版信息

Cranio. 2016 Sep;34(5):343-7. doi: 10.1080/08869634.2015.1113689. Epub 2016 Apr 7.

Abstract

OBJECTIVES

The aim of this research summary is to introduce the current and ongoing work using smartphone video, tracking markers to measure musculoskeletal disorders of cranial and mandibular origin, and the potential significance of the technology to doctors and therapists.

METHOD

The MPA™ biomechanical measuring apps are in beta trials with various doctors and therapists. The technique requires substantial image processing and statistical analysis, best suited to server-side processing. A smartphone environment has enabled a virtual laboratory, which provides automated generation of graphics and in some cases automated interpretation. The system enables highly accurate real-time biomechanics studies using only a smartphone and tracking markers.

RESULT

Despite the technical challenges in setting up and testing of the virtual environment and with interpretation of clinical relevance, the trials have enabled a demonstration of real-time biomechanics studies. The technology has prompted a lot of discussion about the relevance of rapid assessment tools in clinical practice. It seems that a prior bias against motion tracking and its relevance is very strong with occlusion related use cases, yet there has been a general agreement about the use case for cranial movement tracking in managing complex issues related to the head, neck, and TMJ.

DISCUSSION

Measurement of cranial and mandibular functions using a smartphone video as the input have been investigated. Ongoing research will depend upon doctors and therapists to provide feedback as to which uses are considered clinically relevant.

摘要

目的

本研究综述的目的是介绍当前正在进行的利用智能手机视频、跟踪标记来测量颅骨和下颌骨起源的肌肉骨骼疾病的工作,以及该技术对医生和治疗师的潜在意义。

方法

MPA™生物力学测量应用程序正在与各类医生和治疗师进行β测试。该技术需要大量的图像处理和统计分析,最适合服务器端处理。智能手机环境实现了一个虚拟实验室,它能自动生成图形,在某些情况下还能自动进行解读。该系统仅使用智能手机和跟踪标记就能进行高度精确的实时生物力学研究。

结果

尽管在虚拟环境的设置和测试以及临床相关性解读方面存在技术挑战,但这些试验已实现了实时生物力学研究的演示。该技术引发了很多关于快速评估工具在临床实践中的相关性的讨论。在与遮挡相关的用例中,似乎对运动跟踪及其相关性存在很强的先入为主的偏见,但对于颅骨运动跟踪在处理与头部、颈部和颞下颌关节相关的复杂问题中的用例,已达成普遍共识。

讨论

已对使用智能手机视频作为输入来测量颅骨和下颌骨功能进行了研究。正在进行的研究将依赖医生和治疗师提供关于哪些用途被认为具有临床相关性的反馈。

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