Pattern of Projection and Physiological Properties of Cortico-cortical Connections from the Posterior Bank of the Ansate Sulcus to the Motor Cortex, Area 4 Gamma, in the Cat
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The physiological properties of neurons lying along the posterior bank of the ansate sulcus and the projection of these neurons to area 4 gamma of the motor cortex of the cat were studied and the following results were obtained: (1) Short latency antidromic responses were recorded from neurons along the medial-lateral bank of the posterior ansate sulcus following intracortical microstimulation (ICMS) delivered to motor cortex, area 4 gamma. (2) The posterior ansate region projects topographically to the motor cortex. Neurons in the most medial part of the ansate region project to the medial part of 4 gamma, while neurons in the central and lateral parts of the ansate region project to the more lateral parts of area 4 gamma. (3) In 33 cases, receptive field information was available for both the antidromically activated ansate neuron and from neurons around the stimulating site in 4 gamma. In 58% of the cases, both cortical sites received afferent input from within the same part of the periphery. (4) Afferent input to the motor cortex was examined following combined ablations of the primary somatosensory cortex (SI) and third somatosensory cortex (SIII) including all of area 5. We conclude that the integrity of these cortical regions is not necessary for afferent input to reach the motor cortex.
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Beloozerova I, Nilaweera W, Di Prisco G, Marlinski V Cereb Cortex. 2022; 33(4):1014-1043.
PMID: 35383368 PMC: 9930630. DOI: 10.1093/cercor/bhac118.
Modulation of human corticospinal excitability by paired associative stimulation.
Carson R, Kennedy N Front Hum Neurosci. 2013; 7:823.
PMID: 24348369 PMC: 3847812. DOI: 10.3389/fnhum.2013.00823.
Friel K, Drew T, Martin J J Neurophysiol. 2007; 97(5):3396-406.
PMID: 17376849 PMC: 2740651. DOI: 10.1152/jn.00750.2006.
Long-term physical exercise and somatosensory event-related potentials.
Iwadate M, Mori A, Ashizuka T, Takayose M, Ozawa T Exp Brain Res. 2004; 160(4):528-32.
PMID: 15586274 DOI: 10.1007/s00221-004-2125-5.
Maiorov V Neurosci Behav Physiol. 1995; 25(3):189-95.
PMID: 7477818 DOI: 10.1007/BF02360205.