Holly E. Rossiter
Cardiff University
25 Papers
54 Citations
Holly E. Rossiter is an academic researcher from Cardiff University. The author has contributed to research in topics: Motor cortex & Primary motor cortex. The author has an hindex of 16, co-authored 25 publications. Previous affiliations of Holly E. Rossiter include UCL Institute of Neurology & University College London.
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Papers
Beta oscillations reflect changes in motor cortex inhibition in healthy ageing
TL;DR: Changes in beta oscillations during rest and movement in primary motor cortex have the potential to reveal changes in the excitatory–inhibitory balance in M1 which in turn may be a useful marker of plasticity in the brain, both in healthy ageing and disease.
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Do movement-related beta oscillations change after stroke?
TL;DR: It is speculated that impaired modulation of beta oscillations during affected hand grip is detrimental to motor control, highlighting this as a potential therapeutic target in neurorehabilitation.
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Understanding the Role of Sensorimotor Beta Oscillations.
Jacopo Barone,Holly E. Rossiter +1 more
TL;DR: In this paper, the role of beta oscillations during experimental manipulations (i.e., drugs and brain stimulation) and their alteration in aging and pathology is discussed. And a novel methodological approach analyzing beta oscillation as a series of transient bursting events is presented.
Flexible head-casts for high spatial precision MEG
Sofie S. Meyer,James Bonaiuto,Mark Lim,Holly E. Rossiter,Sheena Waters,David Bradbury,Sven Bestmann,Matthew J. Brookes,Martina F. Callaghan,Nikolaus Weiskopf,Nikolaus Weiskopf,Gareth R. Barnes +11 more
TL;DR: A method for constructing flexible head-casts to stabilize the head during MEG scanning by using MRI images to pre-define fiducial coil locations is proposed, enabling high reproducibility of source level results.
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Changes in the location of cortico-muscular coherence following stroke
Holly E. Rossiter,Christiane Eaves,Emma M. Davis,Marie-Hélène Boudrias,Chang-hyun Park,Simon F. Farmer,Gareth R. Barnes,Vladimir Litvak,Nick S. Ward +8 more
TL;DR: Evidence is provided that a wide range of cortical brain regions, including some in the contralesional hemisphere, may have influence over EMG activity in the affected muscles after stroke thereby supporting functional recovery.
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