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基于头戴式显示器的增强现实技术用于心脏图像引导下的介质输送:感知准确性的初步研究。

Head-Mounted Display-Based Augmented Reality for Image-Guided Media Delivery to the Heart: A Preliminary Investigation of Perceptual Accuracy.

作者信息

Doughty Mitchell, Ghugre Nilesh R

机构信息

Department of Medical Biophysics, University of Toronto, Toronto, ON M5S 1A1, Canada.

Schulich Heart Program, Sunnybrook Health Sciences Centre, Toronto, ON M4N 3M5, Canada.

出版信息

J Imaging. 2022 Jan 30;8(2):33. doi: 10.3390/jimaging8020033.

Abstract

By aligning virtual augmentations with real objects, optical see-through head-mounted display (OST-HMD)-based augmented reality (AR) can enhance user-task performance. Our goal was to compare the perceptual accuracy of several visualization paradigms involving an adjacent monitor, or the Microsoft HoloLens 2 OST-HMD, in a targeted task, as well as to assess the feasibility of displaying imaging-derived virtual models aligned with the injured porcine heart. With 10 participants, we performed a user study to quantify and compare the accuracy, speed, and subjective workload of each paradigm in the completion of a point-and-trace task that simulated surgical targeting. To demonstrate the clinical potential of our system, we assessed its use for the visualization of magnetic resonance imaging (MRI)-based anatomical models, aligned with the surgically exposed heart in a motion-arrested open-chest porcine model. Using the HoloLens 2 with alignment of the ground truth target and our display calibration method, users were able to achieve submillimeter accuracy (0.98 mm) and required 1.42 min for calibration in the point-and-trace task. In the porcine study, we observed good spatial agreement between the MRI-models and target surgical site. The use of an OST-HMD led to improved perceptual accuracy and task-completion times in a simulated targeting task.

摘要

通过将虚拟增强与真实物体对齐,基于光学透视头戴式显示器(OST-HMD)的增强现实(AR)可以提高用户任务表现。我们的目标是比较几种可视化范式在一项特定任务中的感知准确性,这些范式涉及一个相邻的显示器或微软HoloLens 2 OST-HMD,同时评估显示与受伤猪心脏对齐的成像衍生虚拟模型的可行性。我们让10名参与者进行了一项用户研究,以量化和比较每种范式在完成模拟手术靶向的点选跟踪任务时的准确性、速度和主观工作量。为了证明我们系统的临床潜力,我们评估了其在运动停止的开胸猪模型中对基于磁共振成像(MRI)的解剖模型进行可视化的应用,这些模型与手术暴露的心脏对齐。使用HoloLens 2并结合地面真实目标的对齐和我们的显示校准方法,用户在点选跟踪任务中能够实现亚毫米级的准确性(0.98毫米),校准需要1.42分钟。在猪的研究中,我们观察到MRI模型与目标手术部位之间有良好的空间一致性。在模拟靶向任务中,使用OST-HMD提高了感知准确性并缩短了任务完成时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a8f/8878166/1e57294a0d3e/jimaging-08-00033-g001.jpg

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