A Spinal Origin for the Obligate Flexor Synergy in the Nonhuman Primate: Implications for Control of Reaching

I Isabel S. Glover A Anne M. E. Baker J John W. Krakauer (Departments of Neurology, Neuroscience, and Physical Medicine and Rehabilitation, School of Medicine, Johns Hopkins University) S Stuart N. Baker

Abstract

Stroke survivors frequently develop the flexor synergy, an obligate cocontraction of shoulder abductors and elbow flexors. The neural substrate has to date proven elusive. Here we trained two healthy female monkeys to generate isometric elbow and shoulder torques to move an on-screen cursor and recorded neuron firing from motor cortical areas and the reticular formation. All regions contained some cells coding for independent contractions about elbow or shoulder. For neurons coding cocontractions, there was a surprising bias: More cells were related to combinations orthogonal to the flexor synergy, e.g., shoulder abduction with elbow extension. We then used threshold microstimulation to examine patterns of muscle activation elicited from the primary motor cortex, reticular formation, and spinal cord in five female monkeys. Only in the spinal cord did microstimulation generate coactivation aligned to the flexor synergy. Our results suggest that primitive spinal circuits are limited to synergistic coactivation, a pattern which perhaps evolved for locomotion. Prehensile reaching movements aligned to these synergies require only limited descending control from the cortex and brainstem. In contrast, reaching orthogonal to the flexor synergy relies heavily on descending drive both to suppress spinal circuits and to sculpt motoneuron activity. The findings suggest that apparently similar reaches in different directions have different neural substrates. After a stroke, loss of descending drive leaves movements limited by spinal motor primitives.

Article Details

Volume / Issue Vol. 46, Issue 15
Published April 15, 2026
Pages e1878252026
ISSN 0270-6474
Publisher Society for Neuroscience

Journal Info

Journal of Neuroscience

Society for Neuroscience

ISSN: 0270-6474 Life Sciences

Authors (4)

I

Isabel S. Glover

A

Anne M. E. Baker

J

John W. Krakauer

Departments of Neurology, Neuroscience, and Physical Medicine and Rehabilitation, School of Medicine, Johns Hopkins University

S

Stuart N. Baker