Matthew James Broadhead
Affiliations: | University of St Andrews, Saint Andrews, Scotland, United Kingdom |
Area:
Synapse Biology, Super-Resolution Microscopy, Glial BiologyGoogle:
"Matthew Broadhead"Mean distance: 14.58 (cluster 41) | S | N | B | C | P |
Parents
Sign in to add mentorPeter Bayguinov | research assistant | ||
Seth Grant | grad student | Edinburgh | |
Gareth B. Miles | post-doc | Psychology and Neuroscience |
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Publications
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Bonthron C, Burley S, Broadhead MJ, et al. (2024) Excitatory to inhibitory synaptic ratios are unchanged at presymptomatic stages in multiple models of ALS. Plos One. 19: e0306423 |
Sharples SA, Broadhead MJ, Gray JA, et al. (2023) M-type potassium currents differentially affect activation of motoneuron subtypes and tune recruitment gain. The Journal of Physiology |
Broadhead MJ, Ayvazian-Hancock A, Doucet K, et al. (2023) Synaptic expression of TAR-DNA-binding protein 43 in the mouse spinal cord determined using super-resolution microscopy. Frontiers in Molecular Neuroscience. 16: 1027898 |
Broadhead MJ, Bonthron C, Waddington J, et al. (2022) Selective vulnerability of tripartite synapses in amyotrophic lateral sclerosis. Acta Neuropathologica |
Broadhead MJ, Bonthron C, Arcinas L, et al. (2021) Author Correction: Nanostructural Diversity of Synapses in the Mammalian Spinal Cord. Scientific Reports. 11: 23160 |
Broadhead MJ, Miles GB. (2021) A Common Role for Astrocytes in Rhythmic Behaviours? Progress in Neurobiology. 102052 |
Broadhead MJ, Bonthron C, Arcinas L, et al. (2020) Nanostructural Diversity of Synapses in the Mammalian Spinal Cord. Scientific Reports. 10: 8189 |
Broadhead MJ, Miles GB. (2020) Bi-Directional Communication Between Neurons and Astrocytes Modulates Spinal Motor Circuits. Frontiers in Cellular Neuroscience. 14: 30 |
Nascimento F, Broadhead MJ, Tetringa E, et al. (2020) Synaptic mechanisms underlying modulation of locomotor-related motoneuron output by premotor cholinergic interneurons. Elife. 9 |
Acton D, Broadhead MJ, Miles GB. (2018) Modulation of spinal motor networks by astrocyte-derived adenosine is dependent on D1-like dopamine receptor signalling. Journal of Neurophysiology |