Related Experiment Video
Updated: Nov 10, 2025

Behavioral Assessment of Manual Dexterity in Non-Human Primates
Published on: November 11, 2011
Greater Reduction in Contralesional Hand Use After Frontoparietal Than Frontal Motor Cortex Lesions in Macaca mulatta
Warren G Darling1, Marc A Pizzimenti2, Diane L Rotella1
1Department of Health and Human Physiology, Motor Control Laboratory, The University of Iowa, Iowa City, IA, United States.
Abstract:
We previously reported that rhesus monkeys recover spontaneous use of the more impaired (contralesional) hand following neurosurgical lesions to the arm/hand representations of primary motor cortex (M1) and lateral premotor cortex (LPMC) (F2 lesion) when tested for reduced use (RU) in a fine motor task allowing use of either hand. Recovery occurred without constraint of the less impaired hand and with occasional forced use of the more impaired hand, which was the preferred hand for use in fine motor tasks before the lesion. Here, we compared recovery of five F2 lesion cases in the same RU test to recovery after unilateral lesions of M1, LPMC, S1 and anterior portion of parietal cortex (F2P2 lesion - four cases). Average and highest %use of the contralesional hand in the RU task in F2 cases were twice that in F2P2 cases (p < 0.05). Recovery in the RU task was closely associated with volume and percentage of lesion to caudal (new) M1 (M1c) in both F2 and F2P2 lesion cases. One F2P2 case, with the largest M1c lesion and a large rostral somatosensory cortex (S1r) lesion developed severe contralesional hand non-use despite exhibiting some recovery of fine motor function initially. We conclude that the degree of reduced use of the contralesional hand is primarily related to the volume of M1c injury and that severe non-use requires extensive injury to M1c and S1r. Thus, assessing peri-Rolandic injury extent in stroke patients may have prognostic value for predicting susceptibility to RU and non-use in rehabilitation.
Insights
Rhesus monkeys with primary motor cortex (M1) and premotor cortex lesions recovered hand use better than those with broader lesions. M1c lesion volume predicts reduced hand use, suggesting prognostic value for stroke rehabilitation.
Area of Science:
- Neuroscience
- Motor Control
- Rehabilitation Science
Background:
- Previous studies showed rhesus monkeys with primary motor cortex (M1) and lateral premotor cortex (LPMC) lesions (F2 lesions) recover spontaneous use of the impaired hand.
- Recovery occurred without hand constraint and with occasional forced use of the impaired hand.
Purpose of the Study:
- To compare hand use recovery in F2 lesion cases with recovery after unilateral lesions of M1, LPMC, S1, and parietal cortex (F2P2 lesions).
- To investigate the relationship between lesion extent and reduced hand use (RU).
Main Methods:
- Rhesus monkeys with F2 or F2P2 lesions were tested using a reduced use (RU) paradigm for fine motor tasks.
- Lesion volumes, particularly in caudal M1 (M1c) and rostral S1 (S1r), were quantified.
Main Results:
- F2 cases showed twice the average and highest %use of the contralesional hand compared to F2P2 cases (p < 0.05).
- Recovery in the RU task correlated with M1c lesion volume in both F2 and F2P2 cases.
- One F2P2 case with extensive M1c and S1r lesions developed severe contralesional hand non-use.
Conclusions:
- Contralesional hand reduced use is primarily linked to M1c injury volume.
- Severe non-use necessitates extensive injury to both M1c and S1r.
- Assessing peri-Rolandic injury extent may predict RU susceptibility and non-use in stroke patients.
More Related Videos
09:42Author Spotlight: Using Motor Imagery Brain-Computer Interface to Improve Motor and Cognitive Function in Stroke Patients
Published on: September 1, 2023
08:01Compensatory Limb Use and Behavioral Assessment of Motor Skill Learning Following Sensorimotor Cortex Injury in a Mouse Model of Ischemic Stroke
Published on: July 10, 2014