Colton Hood

dblp:291/9620 · DBLP profile ↗
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5ranked-venue papers
0as first author
5since 2021 · last 2023
0000-0002-4249-4294ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Human-computer interaction and ubiquitous computing · 4 · 4 since 2021Graphics, computer vision, multimedia, augmented reality and games · 2 · 2 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 2 since 2021
YearPublicationVenuePosition
2023 CPR Emergency Assistance Through Mixed Reality Communication
Manuel Rebol, Alexander Steinmaurer, Florian Gamillscheg, Krzysztof Pietroszek, Christian Gütl, Claudia Ranniger, Colton Hood, Adam Rutenberg, Neal Sikka
ITS7
2023 Evaluating Augmented Reality Communication: How Can We Teach Procedural Skill in AR?
abstract
Augmented reality (AR) has great potential for use in healthcare applications, especially remote medical training and supervision. In this paper, we analyze the usage of an AR communication system to teach a medical procedure, the placement of a central venous catheter (CVC) under ultrasound guidance. We examine various AR communication and collaboration components, including gestural communication, volumetric information, annotations, augmented objects, and augmented screens. We compare how teaching in AR differs from teaching through videoconferencing-based communication. Our results include a detailed medical training steps analysis in which we compare how verbal and visual communication differs between video and AR training. We identify procedural steps in which medical experts give visual instructions utilizing AR components. We examine the change in AR usage and interaction over time and recognize patterns between users. Moreover, AR design recommendations are given based on post-training interviews.
Manuel Rebol, Krzysztof Pietroszek, Neal Sikka, Claudia Ranniger, Colton Hood, Adam Rutenberg, Puja Sasankan, Christian Gütl
VRST5
2022 Mixed Reality Communication System for Procedural Tasks
abstract
We design a volumetric communication system for remote assistance of procedural medical tasks. The system allows a remote expert to spatially guide a local operator using a real-time volumetric representation of the patient. Guidance is provided by voice, virtual hand metaphor, and annotations performed in situ. We include the feedback we received from the medical professionals and early NASA TLX [5] data on the cognitive load of the system.
Manuel Rebol, Claudia Ranniger, Colton Hood, Erin Maria Horan, Adam Rutenberg, Neal Sikka, Yasser Ajabnoor, Safinaz Alshikah, Krzysztof Pietroszek
AVI3
2022 Work-in-Progress-Volumetric Communication for Remote Assistance Giving Cardiopulmonary Resuscitation
abstract
We present our work in progress, a real-time mixed reality communication system for remote assistance in medical emergency situations. 3D cameras capture the emergency situa-tion and send volumetric data to a remote expert. The remote expert sees the volumetric scene through mixed reality glasses and guides an operator at the patient. The local operator receives audio and visual guidance augmented onto the mixed reality headset. We compare the mixed reality system against traditional video communication in a user study on a CPR emergency simulation. We evaluate task performance, cognitive load, and user interaction. The results will help to better understand the benefits of using augmented and volumetric information in medical emergency procedures.
Manuel Rebol, Krzysztof Pietroszek, Claudia Ranniger, Colton Hood, Adam Rutenberg, Neal Sikka, Alexander Steinmaurer, Christian Gütl
iLRN4
2022 Mixed Reality Communication for Medical Procedures: Teaching the Placement of a Central Venous Catheter
abstract
Medical procedures are an essential part of healthcare delivery, and the acquisition of procedural skills is a critical component of medical education. Unfortunately, procedural skill is not evenly distributed among medical providers. Skills may vary within departments or institutions, and across geographic regions, depending on the provider’s training and ongoing experience. We present a mixed reality real-time communication system to increase access to procedural skill training and to improve remote emergency assistance. Our system allows a remote expert to guide a local operator through a medical procedure. RGBD cameras capture a volumetric view of the local scene including the patient, the operator, and the medical equipment. The volumetric capture is augmented onto the remote expert’s view to allow the expert to spatially guide the local operator using visual and verbal instructions. We evaluated our mixed reality communication system in a study in which experts teach the ultrasound-guided placement of a central venous catheter (CVC) to students in a simulation setting. The study compares state-of-the-art video communication against our system. The results indicate that our system enhances and offers new possibilities for visual communication compared to video teleconference-based training.
Manuel Rebol, Krzysztof Pietroszek, Claudia Ranniger, Colton Hood, Adam Rutenberg, Neal Sikka, Christian Gütl
ISMAR4