Literature DB >> 31920155

A Novel Evaluation Model for a Mixed-Reality Surgical Navigation System: Where Microsoft HoloLens Meets the Operating Room.

Yan Zuo1, Taoran Jiang2, Jiansheng Dou1, Dewang Yu1, Zaphlene Nyakuru Ndaro1, Yunxiao Du1, Qingfeng Li2, Shuyi Wang1, Gang Huang1,3.   

Abstract

HoloLens-based mixed-reality surgical navigation system (MR-SNS) technology has made great progress. However, the methodology for evaluating users' perceptions concerning the safety, comfort, and efficiency of MR-SNS is still in its infancy. This study was intended to develop a method to systematically evaluate an existing MR-SNS system during actual clinical applications. This method differs from other existing methods currently used in industry, education, and device maintenance. Based on analytical hierarchy process theory and ergonomics evaluation methods, in this article, we propose a novel multicriteria evaluation model for a HoloLens-based MR-SNS. The model includes factors such as comfort, safety, and effectiveness, and is performed in an actual clinical application. A comprehensive experimental platform and scoring system that can analyze all indicators was built. The validation test showed no statistically significant differences in the accuracy of the 3 different movement patterns (P = .95, P > .05). However, the static pattern showed the best accuracy. In addition, no significant difference (P = .68, P > .05) in accuracy was found under 4 kinds of illuminance. A comparison of the results of this evaluation model and the input from experts who use the HoloLens-based MR-SNS in hospitals, indicated that this model has good precision (100%), recall (80%), and F1-measure (88.89%). The results highlighted the full efficacy of the proposed model in determining whether this system can be used in clinical trials to provide indicators for preliminary ex ante feasibility studies. This article describes the lessons learned from conducting this evaluation study of MR-SNS as part of the design process.

Entities:  

Keywords:  analytical hierarchy process; biological signal analysis; ergonomics evaluation; mixed-reality application; surgical navigation system

Mesh:

Year:  2020        PMID: 31920155     DOI: 10.1177/1553350619893236

Source DB:  PubMed          Journal:  Surg Innov        ISSN: 1553-3506            Impact factor:   2.058


  2 in total

1.  Mixed Reality Needle Guidance Application on Smartglasses Without Pre-procedural CT Image Import with Manually Matching Coordinate Systems.

Authors:  Satoru Morita; Kazufumi Suzuki; Takahiro Yamamoto; Motoki Kunihara; Hiroyuki Hashimoto; Kayo Ito; Shuhei Fujii; Jun Ohya; Ken Masamune; Shuji Sakai
Journal:  Cardiovasc Intervent Radiol       Date:  2022-01-13       Impact factor: 2.740

2.  Use of the HoloLens2 Mixed Reality Headset for Protecting Health Care Workers During the COVID-19 Pandemic: Prospective, Observational Evaluation.

Authors:  Guy Martin; Louis Koizia; Angad Kooner; John Cafferkey; Clare Ross; Sanjay Purkayastha; Arun Sivananthan; Anisha Tanna; Philip Pratt; James Kinross
Journal:  J Med Internet Res       Date:  2020-08-14       Impact factor: 5.428

  2 in total

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