Skip to main content
Journal cover image

Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects.

Publication ,  Journal Article
Taga, M; Charalambous, CC; Raju, S; Lin, J; Zhang, Y; Stern, E; Schambra, HM
Published in: J Physiol
August 2021

KEY POINTS: The corticoreticulospinal tract (CReST) is a descending motor pathway that reorganizes after corticospinal tract (CST) injury in animals. In humans, the pattern of CReST innervation to upper limb muscles has not been carefully examined in healthy individuals or individuals with CST injury. In the present study, we assessed CReST projections to an arm and hand muscle on the same side of the body in healthy and chronic stoke subjects using transcranial magnetic stimulation. We show that CReST connection strength to the muscles differs between healthy and stroke subjects, with stronger connections to the hand than arm in healthy subjects, and stronger connections to the arm than hand in stroke subjects. These results help us better understand CReST innervation patterns in the upper limb, and may point to its role in normal motor function and motor recovery in humans. ABSTRACT: The corticoreticulospinal tract (CReST) is a major descending motor pathway in many animals, but little is known about its innervation patterns in proximal and distal upper extremity muscles in humans. The contralesional CReST furthermore reorganizes after corticospinal tract (CST) injury in animals, but it is less clear whether CReST innervation changes after stroke in humans. We thus examined CReST functional connectivity, connection strength, and modulation in an arm and hand muscle of healthy (n = 15) and chronic stroke (n = 16) subjects. We delivered transcranial magnetic stimulation to the contralesional hemisphere (assigned in healthy subjects) to elicit ipsilateral motor evoked potentials (iMEPs) from the paretic biceps (BIC) and first dorsal interosseous (FDI) muscle. We operationalized CReST functional connectivity as iMEP presence/absence, CReST projection strength as iMEP size and CReST modulation as change in iMEP size by head rotation. We found comparable CReST functional connectivity to the BICs and FDIs in both subject groups. However, the pattern of CReST connection strength to the muscles diverged between groups, with stronger connections to FDIs than BICs in healthy subjects and stronger connections to BICs than FDIs in stroke subjects. Head rotation modulated only FDI iMEPs of healthy subjects. Our findings indicate that the healthy CReST does not have a proximal innervation bias, and its strong FDI connections may have functional relevance to finger individuation. The reversed CReST innervation pattern in stroke subjects confirms its reorganization after CST injury, and its strong BIC connections may indicate upregulation for particular upper extremity muscles or their functional actions.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

J Physiol

DOI

EISSN

1469-7793

Publication Date

August 2021

Volume

599

Issue

16

Start / End Page

3955 / 3971

Location

England

Related Subject Headings

  • Transcranial Magnetic Stimulation
  • Stroke
  • Physiology
  • Muscle, Skeletal
  • Motor Cortex
  • Humans
  • Hand
  • Evoked Potentials, Motor
  • Arm
  • 42 Health sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Taga, M., Charalambous, C. C., Raju, S., Lin, J., Zhang, Y., Stern, E., & Schambra, H. M. (2021). Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects. J Physiol, 599(16), 3955–3971. https://doi.org/10.1113/JP281681
Taga, Myriam, Charalambos C. Charalambous, Sharmila Raju, Jing Lin, Yian Zhang, Elisa Stern, and Heidi M. Schambra. “Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects.J Physiol 599, no. 16 (August 2021): 3955–71. https://doi.org/10.1113/JP281681.
Taga M, Charalambous CC, Raju S, Lin J, Zhang Y, Stern E, et al. Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects. J Physiol. 2021 Aug;599(16):3955–71.
Taga, Myriam, et al. “Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects.J Physiol, vol. 599, no. 16, Aug. 2021, pp. 3955–71. Pubmed, doi:10.1113/JP281681.
Taga M, Charalambous CC, Raju S, Lin J, Zhang Y, Stern E, Schambra HM. Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects. J Physiol. 2021 Aug;599(16):3955–3971.
Journal cover image

Published In

J Physiol

DOI

EISSN

1469-7793

Publication Date

August 2021

Volume

599

Issue

16

Start / End Page

3955 / 3971

Location

England

Related Subject Headings

  • Transcranial Magnetic Stimulation
  • Stroke
  • Physiology
  • Muscle, Skeletal
  • Motor Cortex
  • Humans
  • Hand
  • Evoked Potentials, Motor
  • Arm
  • 42 Health sciences