New Results
A Methodological Framework to Assess the Accuracy of Virtual Reality Hand-Tracking Systems: A case study with the Oculus Quest 2
View ORCID ProfileDiar Abdlkarim, View ORCID ProfileMassimiliano Di Luca, Poppy Aves, View ORCID ProfileSang-Hoon Yeo, View ORCID ProfileR. Chris Miall, Peter Holland, View ORCID ProfileJoseph M. Galea
doi: https://doi.org/10.1101/2022.02.18.481001
Diar Abdlkarim
1University of Birmingham;
Massimiliano Di Luca
1University of Birmingham;
Poppy Aves
1University of Birmingham;
Sang-Hoon Yeo
1University of Birmingham;
R. Chris Miall
1University of Birmingham;
Peter Holland
2Goldsmiths University
Joseph M. Galea
1University of Birmingham;
Posted February 20, 2022.
A Methodological Framework to Assess the Accuracy of Virtual Reality Hand-Tracking Systems: A case study with the Oculus Quest 2
Diar Abdlkarim, Massimiliano Di Luca, Poppy Aves, Sang-Hoon Yeo, R. Chris Miall, Peter Holland, Joseph M. Galea
bioRxiv 2022.02.18.481001; doi: https://doi.org/10.1101/2022.02.18.481001
A Methodological Framework to Assess the Accuracy of Virtual Reality Hand-Tracking Systems: A case study with the Oculus Quest 2
Diar Abdlkarim, Massimiliano Di Luca, Poppy Aves, Sang-Hoon Yeo, R. Chris Miall, Peter Holland, Joseph M. Galea
bioRxiv 2022.02.18.481001; doi: https://doi.org/10.1101/2022.02.18.481001
Subject Area
Subject Areas
- Biochemistry (10811)
- Bioengineering (8054)
- Bioinformatics (27346)
- Biophysics (13998)
- Cancer Biology (11139)
- Cell Biology (16078)
- Clinical Trials (138)
- Developmental Biology (8793)
- Ecology (13307)
- Epidemiology (2067)
- Evolutionary Biology (17375)
- Genetics (11692)
- Genomics (15939)
- Immunology (11042)
- Microbiology (26131)
- Molecular Biology (10669)
- Neuroscience (56657)
- Paleontology (420)
- Pathology (1737)
- Pharmacology and Toxicology (3009)
- Physiology (4555)
- Plant Biology (9648)
- Synthetic Biology (2695)
- Systems Biology (6985)
- Zoology (1511)