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Main Authors: Dorji, Tandin, Aimmanee, Pakinee, Yindeedej, Vich
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2404.10713
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author Dorji, Tandin
Aimmanee, Pakinee
Yindeedej, Vich
author_facet Dorji, Tandin
Aimmanee, Pakinee
Yindeedej, Vich
contents The field of augmented reality (AR) has undergone substantial growth, finding diverse applications in the medical industry. This paper delves into various techniques employed in medical surgeries, scrutinizing factors such as cost, implementation, and accessibility. The focus of this exploration is on AR-based solutions, with a particular emphasis on addressing challenges and proposing an innovative solution for ventriculoperitoneal shunt (VP) operations. The proposed solution introduces a novel flow in the pre-surgery phase, aiming to substantially reduce setup time and operation duration by creating 3D models of the skull and ventricles. Experiments are conducted where the models are visualized on a 3D- printed skull through an AR device, specifically the Microsoft HoloLens 2. The paper then conducts an in-depth analysis of this proposed solution, discussing its feasibility, advantages, limitations,and future implications.
format Preprint
id arxiv_https___arxiv_org_abs_2404_10713
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Plausibility Study of Using Augmented Reality in the Ventriculoperitoneal Shunt Operations
Dorji, Tandin
Aimmanee, Pakinee
Yindeedej, Vich
Computer Vision and Pattern Recognition
Software Engineering
The field of augmented reality (AR) has undergone substantial growth, finding diverse applications in the medical industry. This paper delves into various techniques employed in medical surgeries, scrutinizing factors such as cost, implementation, and accessibility. The focus of this exploration is on AR-based solutions, with a particular emphasis on addressing challenges and proposing an innovative solution for ventriculoperitoneal shunt (VP) operations. The proposed solution introduces a novel flow in the pre-surgery phase, aiming to substantially reduce setup time and operation duration by creating 3D models of the skull and ventricles. Experiments are conducted where the models are visualized on a 3D- printed skull through an AR device, specifically the Microsoft HoloLens 2. The paper then conducts an in-depth analysis of this proposed solution, discussing its feasibility, advantages, limitations,and future implications.
title A Plausibility Study of Using Augmented Reality in the Ventriculoperitoneal Shunt Operations
topic Computer Vision and Pattern Recognition
Software Engineering
url https://arxiv.org/abs/2404.10713