CycloVR

CycloVR

CycloVR

A VR rehabilitation module designed to make bedside exercise more engaging.

Project Info

Start date

April 2019

End date

September 2019

Funding

University Hospitals of Geneva (HUG)

Coordinator

HUG – Intensive Care

Summary

Prolonged immobilization and bed rest can have significant musculoskeletal, pulmonary, cardiovascular and metabolic consequences. Physical activity is therefore an important component of rehabilitation, helping patients maintain strength and limit the adverse effects of inactivity.

The University Hospitals of Geneva (HUG) – Intensive Care developed the Cyclo rehabilitation device to adapt physical exercise to each patient’s abilities, pathology and hospitalization conditions, whether exercising from a bed, chair or wheelchair.

Within CycloVR, Artanim integrated a virtual reality module into the device to place patients in immersive environments while they exercise actively or passively. Depending on the scenario, patients can pedal along a river or cycle through a countryside landscape directly from their hospital bed.

The VR component also introduces gamified elements intended to make rehabilitation sessions more engaging and motivate patients to participate in physical exercise while reducing their awareness of the clinical environment during treatment.

Partners

University Hospitals of Geneva (HUG) – Intensive Care
Development of the cycloergometer and medical supervision.

Artanim
VR module development and gamification.

HoloMed

HoloMed

HoloMed

An AR visualization tool for real-time analysis of patient-specific joint anatomy and motion.

Project Info

Start date

September 2016

End date

February 2018

Funding

FORE Foundation / La Tour Hospital & Hirslanden Clinique La Colline

Coordinator

Artanim

Summary

HoloMed explores how augmented reality can support medical education, assessment and rehabilitation by combining motion capture, patient-specific 3D anatomical models and real-time visualization.

The project develops an anatomical see-through tool that allows healthcare professionals to visualize joint anatomy and kinematics directly on the patient while they move. Bone models are rendered as holographic overlays aligned with the subject’s body, creating an X-ray-like view of the underlying anatomy in real time.

The approach is designed to support applications in sports medicine and rehabilitation by making patient-specific movement and joint mechanics easier to observe and interpret during functional tasks.

Partners

Artanim
Development of augmented reality visualization tools.

La Tour Hospital – Elbow & Shoulder Orthopedics and Traumatology
Clinical testing and medical supervision.

Hirslanden Clinique La Colline – Center for Orthopaedic Surgery and Musculoskeletal Traumatology
Clinical testing and medical supervision.

Related Publications

Elias de Oliveira M, Galvan Debarba H, Lädermann A, Chagué S, Charbonnier C. A Hand-Eye Calibration Method for Augmented Reality Applied to Computer-Assisted Orthopedic Surgery, Int J Med Robot Comput Assist Surg, 15(2):e1969, 2019.
PDF · DOI

Elias de Oliveira M, Galvan Debarba H, Lädermann A, Chagué S, Charbonnier C. Réalité augmentée en chirurgie orthopédique. Mythe ou réalité ?, Congrès de la Société Francophone d’Arthroscopie 2018, Paris, France, Rev Chir Orthop Traumatol, 104(8):S110, December, 2018.
PDF · DOI

Galvan Debarba H, Elias de Oliveira M, Lädermann A, Chagué S, Charbonnier C. Augmented Reality Visualization of Joint Movements for Rehabilitation and Sports Medicine, 20th Symposium on Virtual and Augmented Reality (SVR), Foz Do Iguaçu, Brazil, October, 2018.
PDF · DOI

Galvan Debarba H, Elias de Oliveira M, Lädermann A, Chagué S, Charbonnier C. Augmented Reality Visualization of Joint Movements for Physical Examination and Rehabilitation, Proc. 2018 IEEE Virtual Reality, IEEE Comput. Soc, March, 2018.
PDF · DOI

Galvan Debarba H, Elias de Oliveira M, Lädermann A, Chagué S, Charbonnier C. Tracking a Consumer HMD with a Third Party Motion Capture System, Proc. 2018 IEEE Virtual Reality, IEEE Comput. Soc, March, 2018.
PDF · DOI

Elias de Oliveira M, Galvan Debarba H, Lädermann A, Chagué S, Charbonnier C. Development of a Hand-Eye Calibration Method for Augmented Reality Applied to Computer-Assisted Orthopedic Surgery, 32nd International Congress of Computer Assisted Radiology and Surgery, Heidelberg, Germany, Int J CARS, June, 2018.
PDF · DOI