Transcranial magnetic stimulation (TMS) of the human primary motor cortex (M1) at suprathreshold strength results in inhibition of M1 in the opposite hemisphere, a process termed interhemispheric inhibition (IHI). Two phases of IHI, termed short-latency interhemispheric inhibition (SIHI) and long-latency interhemispheric inhibition (LIHI), involving separate neural circuits, have been identified. In this study we evaluated how these two inhibitory processes interact with each other. We studied 10 healthy right-handed subjects. A test stimulus (TS) was delivered to the left M1, and motor evoked potentials (MEPs) were recorded from the right first dorsal interosseous (FDI) muscle. Contralateral conditioning stimuli (CCS) were applied to the r...
Interhemispheric inhibition (IHI) is an important mechanism to maximize the independent functioning ...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
Interhemispheric interactions demonstrate a crucial role for directing bimanual movement control. In...
Interhemispheric inhibition (IHI) refers to the neurophysiological mechanism in which one hemisphere...
Stimulation of the primary motor cortex (M1) of one hemisphere of the brain inhibits the opposite M1...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
1. Using two magnetic stimulators. we investigated the effect of a conditioning magnetic stimulus ov...
Abstract Background The interaction between homologous muscle representations in the right and left ...
In patients with chronic stroke, the primary motor cortex of the intact hemisphere (M1(intact hemisp...
Abstract Background The interaction between homologou...
Abstract Background The interaction between homologou...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
Interhemispheric inhibition (IHI) is an important mechanism to maximize the independent functioning ...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
Interhemispheric interactions demonstrate a crucial role for directing bimanual movement control. In...
Interhemispheric inhibition (IHI) refers to the neurophysiological mechanism in which one hemisphere...
Stimulation of the primary motor cortex (M1) of one hemisphere of the brain inhibits the opposite M1...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
1. Using two magnetic stimulators. we investigated the effect of a conditioning magnetic stimulus ov...
Abstract Background The interaction between homologous muscle representations in the right and left ...
In patients with chronic stroke, the primary motor cortex of the intact hemisphere (M1(intact hemisp...
Abstract Background The interaction between homologou...
Abstract Background The interaction between homologou...
The primary motor cortex (M1) is highly influenced by premotor/motor areas both within and across he...
Interhemispheric inhibition (IHI) is an important mechanism to maximize the independent functioning ...
Interhemispheric inhibition (IHI) between motor cortical areas is thought to play a critical role in...
Interhemispheric interactions demonstrate a crucial role for directing bimanual movement control. In...