Impairments in prehension produced by early postnatal sensory motor cortex activity blockade

被引:37
作者
Martin, JH
Donarummo, L
Hacking, A
机构
[1] Columbia Univ, Ctr Neurobiol & Behav, New York, NY 10032 USA
[2] New York State Psychiat Inst & Hosp, New York, NY 10032 USA
关键词
D O I
10.1152/jn.2000.83.2.895
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Impairments in prehension produced by early postnatal sensory motor cortex activity blockade. J. Neurophysiol. 83: 895-906, 2000. This study examined the effects of blocking neural activity in sensory motor cortex during early postnatal development on prehension. We infused muscimol, either unilaterally or bilaterally, into the sensory motor cortex of cats to block activity continuously between postnatal weeks 3-7. After stopping infusion, we trained animals to reach and grasp a cube of meat and tested behavior thereafter. Animals that had not received muscimol infusion (unilateral saline infusion; age-matched) reached for the meat accurately with small end-point errors. They grasped the meat using coordinated digit flexion followed by forearm supination on 82.7% of trials. Performance using either limb did not differ significantly. In animals receiving unilateral muscimol infusion, reaching and grasping using the limb ipsilateral to the infusion were similar to controls. The limb contralateral to infusion showed significant increases in systematic and variable reaching end-point errors, often requiring subsequent corrective movements to contact the meat. Grasping occurred on only 14.8% of trials, replaced on most trials by raking without distal movements. Compensatory adjustments in reach length and angle, to maintain end-point accuracy as movements were started from a more lateral position, were less effective using the contralateral limb than ipsilateral limb. With bilateral inactivations, the form of reaching acid grasping impairments was identical to that produced by unilateral inactivation, but the magnitude of the reaching impairments was less. We discuss these results in terms of the differential effects of unilateral and bilateral inactivation on corticospinal tract development. We also investigated the degree to which these prehension impairments after unilateral blockade reflect control by each hemisphere. In animals that had received unilateral blockade between postnatal weeks (PWs) 3 and 7, we silenced on-going activity (after PW 11) during task performance using continuous muscimol infusion. We inactivated the right (previously active) and then the left (previously silenced) sensory motor cortex. Inactivation of the ipsilateral (right) sensory motor cortex produced a further increase in systematic error and less frequent normal grasping. Reinactivation of the contralateral (left) cortex produced larger increases in reaching and grasping impairments than those produced by ipsilateral inactivation. This suggests that the impaired limb receives bilateral sensory motor cortex control but that control by the contralateral (initially silenced) cortex predominates. Our data are consistent with the hypothesis that the normal development of skilled motor behavior requires activity in sensory motor cortex during early postnatal life.
引用
收藏
页码:895 / 906
页数:12
相关论文
共 53 条
[1]   NEURAL REPRESENTATIONS OF THE TARGET (GOAL) OF VISUALLY GUIDED ARM MOVEMENTS IN 3 MOTOR AREAS OF THE MONKEY [J].
ALEXANDER, GE ;
CRUTCHER, MD .
JOURNAL OF NEUROPHYSIOLOGY, 1990, 64 (01) :164-178
[2]   THE POSTNATAL SPATIAL AND TEMPORAL DEVELOPMENT OF CORTICOSPINAL PROJECTIONS IN CATS [J].
ALISKY, JM ;
SWINK, TD ;
TOLBERT, DL .
EXPERIMENTAL BRAIN RESEARCH, 1992, 88 (02) :265-276
[3]   Postnatal development of corticospinal projections from motor cortex to the cervical enlargement in the macaque monkey [J].
Armand, J ;
Olivier, E ;
Edgley, SA ;
Lemon, RN .
JOURNAL OF NEUROSCIENCE, 1997, 17 (01) :251-266
[4]  
ARMAND J, 1992, TUTORIALS MOTOR BEHA, V2, P845
[5]   FUNCTIONAL-ROLE OF SENSORY INPUTS TO THE MOTOR CORTEX [J].
ASANUMA, H .
PROGRESS IN NEUROBIOLOGY, 1981, 16 (3-4) :241-262
[6]   AREA-3A IN THE CAT .1. A REEVALUATION OF ITS LOCATION AND ARCHITECTURE ON THE BASIS OF NISSL, MYELIN, ACETYLCHOLINESTERASE, AND CYTOCHROME-OXIDASE STAINING [J].
AVENDANO, C ;
VERDU, A .
JOURNAL OF COMPARATIVE NEUROLOGY, 1992, 321 (03) :357-372
[7]   POLYNEURONAL INNERVATION OF KITTEN SKELETAL-MUSCLE [J].
BAGUST, J ;
LEWIS, DM ;
WESTERMAN, RA .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 229 (01) :241-255
[8]   PERIPHERAL RECEPTIVE FIELDS OF NEURONS IN CATS CEREBRAL CORTEX [J].
BROOKS, VB ;
RUDOMIN, P ;
SLAYMAN, CL .
JOURNAL OF NEUROPHYSIOLOGY, 1961, 24 (03) :302-+
[9]   DIFFERENTIATION OF FAST AND SLOW MUSCLES IN THE CAT HIND LIMB [J].
BULLER, AJ ;
ECCLES, JC ;
ECCLES, RM .
JOURNAL OF PHYSIOLOGY-LONDON, 1960, 150 (02) :399-416
[10]  
BURCE IC, 1980, EXP BRAIN RES, V39, P411