Cape Town - 2026 ISMRM-ISMRT Annual Meeting and Exhibition
9 May 2026 – 14 May 2026 · Cape Town, South Africa
304-04-001 ISMRM Abstract

Visual feedback incongruence modulates motor cortex activity: fMRI evidence for a finger-tapping illusion

Accepted
Aneurin J Kennerley1,2,3, Nikki Bonett4, Oliver J Mundell1,2,3, Libby Henthorn1, Elisa Zamboni 3,4
1Department of Sport and Exercise Sciences, Manchester Metropolitan University, Manchester, United Kingdom
2Manchester Metropolitan Institute of Sport, Manchester Metropolitan University, Manchester, United Kingdom
3Wolfson ACTIVE Imaging Laboratory, Manchester Metropolitan University, Manchester, United Kingdom
4School of Psychology, School of Psychology, University of Nottingham, Nottingham, United Kingdom
Presenting Author: Elisa Zamboni

Synopsis

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References

1. Zatorre, R.J., Fields, R.D., and Johansen-Berg, H. (2012). Plasticity in gray and white: neuroimaging changes in brain structure during learning. Nat. Neurosci. 15, 528–536. https://doi.org/10.1038/nn.3045. [doi]
2. Schaefer, M., Flor, H., Heinze, H.-J., and Rotte, M. (2007). Morphing the body: illusory feeling of an elongated arm affects somatosensory homunculus. Neuroimage 36, 700–705. https://doi.org/10.1016/j.neuroimage.2007.03.046. [doi]
3. Kwon, H.G., Jang, S.H., and Lee, M.Y. (2017). Effects of visual information regarding tactile stimulation on the somatosensory cortical activation: a functional MRI study. Neural Regen. Res. 12, 1119–1123. https://doi.org/10.4103/1673-5374.211191. [doi]
4. Foell, J., Bekrater-Bodmann, R., Diers, M., and Flor, H. (2014). Mirror therapy for phantom limb pain: brain changes and the role of body representation. Eur. J. Pain 18, 729–739. https://doi.org/10.1002/j.1532-2149.2013.00433.x. [doi]
5. Structural brain alterations before and after total knee arthoroplasty: a longitudinal assessment (2018). Pain Med (US).
6. Preston, C., Gilpin, H.R., and Newport, R. (2020). An exploratory investigation into the longevity of pain reduction following multisensory illusions designed to alter body perception. Musculoskelet. Sci. Pract. 45, 102080. https://doi.org/10.1016/j.msksp.2019.102080. [doi]
7. Tsay, A., Allen, T.J., Proske, U., and Giummarra, M.J. (2015). Sensing the body in chronic pain: a review of psychophysical studies implicating altered body representation. Neurosci. Biobehav. Rev. 52, 221–232. https://doi.org/10.1016/j.neubiorev.2015.03.004. [doi]
8. Huber, L., Kassavetis, P., Gulban, O.F., Hallett, M., and Horovitz, S.G. (2023). Laminar VASO fMRI in focal hand dystonia patients. Dystonia 2. https://doi.org/10.3389/dyst.2023.10806. [doi]
9. FreeSurfer FreeSurfer. http://surfer.nmr.mgh.harvard.edu/.
10. Jezzard, P., Matthews, P.M., and Smith, S.M. (2001). Functional MRI: An Introduction to Methods.

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