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Motor cortical excitability and pre-supplementary motor area neurochemistry in healthy adults with substantia nigra hyperechogenicity.

Authors :
Todd G
Rae CD
Taylor JL
Rogasch NC
Butler JE
Hayes M
Wilcox RA
Gandevia SC
Aoun K
Esterman A
Lewis SJG
Hall JM
Matar E
Godau J
Berg D
Plewnia C
von Thaler AK
Chiang C
Double KL
Source :
Journal of neuroscience research [J Neurosci Res] 2023 Feb; Vol. 101 (2), pp. 263-277. Date of Electronic Publication: 2022 Nov 10.
Publication Year :
2023

Abstract

Substantia nigra (SN) hyperechogenicity, viewed with transcranial ultrasound, is a risk marker for Parkinson's disease. We hypothesized that SN hyperechogenicity in healthy adults aged 50-70 years is associated with reduced short-interval intracortical inhibition in primary motor cortex, and that the reduced intracortical inhibition is associated with neurochemical markers of activity in the pre-supplementary motor area (pre-SMA). Short-interval intracortical inhibition and intracortical facilitation in primary motor cortex was assessed with paired-pulse transcranial magnetic stimulation in 23 healthy adults with normal (n = 14; 61 ± 7 yrs) or abnormally enlarged (hyperechogenic; n = 9; 60 ± 6 yrs) area of SN echogenicity. Thirteen of these participants (7 SN- and 6 SN+) also underwent brain magnetic resonance spectroscopy to investigate pre-SMA neurochemistry. There was no relationship between area of SN echogenicity and short-interval intracortical inhibition in the ipsilateral primary motor cortex. There was a significant positive relationship, however, between area of echogenicity in the right SN and the magnitude of intracortical facilitation in the right (ipsilateral) primary motor cortex (p = .005; multivariate regression), evidenced by the amplitude of the conditioned motor evoked potential (MEP) at the 10-12 ms interstimulus interval. This relationship was not present on the left side. Pre-SMA glutamate did not predict primary motor cortex inhibition or facilitation. The results suggest that SN hyperechogenicity in healthy older adults may be associated with changes in excitability of motor cortical circuitry. The results advance understanding of brain changes in healthy older adults at risk of Parkinson's disease.<br /> (© 2022 The Authors. Journal of Neuroscience Research published by Wiley Periodicals LLC.)

Details

Language :
English
ISSN :
1097-4547
Volume :
101
Issue :
2
Database :
MEDLINE
Journal :
Journal of neuroscience research
Publication Type :
Academic Journal
Accession number :
36353842
Full Text :
https://doi.org/10.1002/jnr.25145