Keyword search (4,163 papers available)

"virtual reality" Keyword-tagged Publications:

Title Authors PubMed ID
1 Cross-modal synchrony between music and visual motion modulates vection, urge to move, and comfort in VR Van Kerrebroeck B; Spiech C; Penhune V; Wanderley MM; 41867666
PSYCHOLOGY
2 Towards user-centered interactive medical image segmentation in VR with an assistive AI agent Spiegler P; Harirpoush A; Xiao Y; 41509996
ENCS
3 Exploring interaction paradigms for segmenting medical images in virtual reality Jones Z; Drouin S; Kersten-Oertel M; 40402355
ENCS
4 iSurgARy: A mobile augmented reality solution for ventriculostomy in resource-limited settings Asadi Z; Castillo JP; Asadi M; Sinclair DS; Kersten-Oertel M; 39816703
ENCS
5 PreVISE: an efficient virtual reality system for SEEG surgical planning Spiegler P; Abdelsalam H; Hellum O; Hadjinicolaou A; Weil AG; Xiao Y; 39735694
ENCS
6 Virtual reality-based preoperative planning for optimized trocar placement in thoracic surgery: A preliminary study Harirpoush A; Rakovich G; Kersten-Oertel M; Xiao Y; 39720764
ENCS
7 A usability analysis of augmented reality and haptics for surgical planning Kazemipour N; Hooshiar A; Kersten-Oertel M; 38942947
ENCS
8 Virtual and Augmented Reality in Ventriculostomy: A Systematic Review Alizadeh M; Xiao Y; Kersten-Oertel M; 38823448
ENCS
9 Exploring the challenges of avoiding collisions with virtual pedestrians using a dual-task paradigm in individuals with chronic moderate to severe traumatic brain injury de Aquino Costa Sousa T; Gagnon IJ; Li KZH; McFadyen BJ; Lamontagne A; 38755606
PERFORM
10 Effects of color cues on eye-hand coordination training with a mirror drawing task in virtual environment Alrubaye Z; Hudhud Mughrabi M; Manav B; Batmaz AU; 38288362
ENCS
11 At-home computerized executive-function training to improve cognition and mobility in normal-hearing adults and older hearing aid users: a multi-centre, single-blinded randomized controlled trial Downey R; Gagné N; Mohanathas N; Campos JL; Pichora-Fuller KM; Bherer L; Lussier M; Phillips NA; Wittich W; St-Onge N; Gagné JP; Li K; 37864139
PERFORM
12 Digital Game Interventions for Youth Mental Health Services (Gaming My Way to Recovery): Protocol for a Scoping Review. Ferrari M, McIlwaine SV, Reynolds JA, Archie S, Boydell K, Lal S, Shah JL, Henderson J, Alvarez-Jimenez M, Andersson N, Boruff J, Nielsen RKL, Iyer SN 32579117
CONCORDIA
13 Effects of Age on Dual-Task Walking While Listening Victoria Nieborowska 30239280
PERFORM

 

Title:Virtual reality-based preoperative planning for optimized trocar placement in thoracic surgery: A preliminary study
Authors:Harirpoush ARakovich GKersten-Oertel MXiao Y
Link:https://pubmed.ncbi.nlm.nih.gov/39720764/
DOI:10.1049/htl2.12114
Publication:Healthcare technology letters
Keywords:lungsurgeryvirtual reality
PMID:39720764 Category: Date Added:2024-12-25
Dept Affiliation: ENCS
1 Department of Computer Science and Software Engineering Concordia University Quebec Canada.
2 Maisonneuve Rosemont Hospital University of Montreal Quebec Canada.
3 School of Health Concordia University Quebec Canada.

Description:

Video-assisted thoracic surgery (VATS) is a minimally invasive approach for treating early-stage non-small-cell lung cancer. Optimal trocar placement during VATS ensures comprehensive access to the thoracic cavity, provides a panoramic endoscopic view, and prevents instrument crowding. While established principles such as the Baseball Diamond Principle (BDP) and Triangle Target Principle (TTP) exist, surgeons mainly rely on experience and patient-specific anatomy for trocar placement, potentially leading to sub-optimal surgical plans that increase operative time and fatigue. To address this, the authors present the first virtual reality (VR)-based pre-operative planning tool with tailored data visualization and interaction designs for efficient and optimal VATS trocar placement, following the established surgical principles and consultation with an experienced surgeon. In the preliminary study, the system's application in right upper lung lobectomy is demonstrated, a common thoracic procedure typically using three trocars. A preliminary user study of the system indicates it is efficient, robust, and user-friendly for planning optimal trocar placement, with a great promise for clinical application while offering potentially valuable insights for the development of other surgical VR systems.





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