Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sensorimotor integration in movement disorders

View through CrossRef
AbstractAlthough current knowledge attributes movement disorders to a dysfunction of the basal ganglia–motor cortex circuits, abnormalities in the peripheral afferent inputs or in their central processing may interfere with motor program execution. We review the abnormalities of sensorimotor integration described in the various types of movement disorders. Several observations, including those of parkinsonian patients' excessive reliance on ongoing visual information during movement tasks, suggest that proprioception is defective in Parkinson's disease (PD). The disturbance of proprioceptive regulation, possibly related to the occurrence of abnormal muscle‐stretch reflexes, might be important for generating hypometric or bradykinetic movements. Studies with somatosensory evoked potentials (SEPs), prepulse inhibition, and event‐related potentials support the hypothesis of central abnormalities of sensorimotor integration in PD. In Huntington's disease (HD), changes in SEPs and long‐latency stretch reflexes suggest that a defective gating of peripheral afferent input to the brain might impair sensorimotor integration in cortical motor areas, thus interfering with the processing of motor programs. Defective motor programming might contribute to some features of motor impairment in HD. Sensory symptoms are frequent in focal dystonia and sensory manipulation can modify the dystonic movements. In addition, specific sensory functions (kinaesthesia, spatial–temporal discrimination) can be impaired in patients with focal hand dystonia, thus leading to a “sensory overflow.” Sensory input may be abnormal and trigger focal dystonia, or defective “gating” may cause an input–output mismatch in specific motor programs. Altogether, several observations strongly support the idea that sensorimotor integration is impaired in focal dystonia. Although elemental sensation is normal in patients with tics, tics can be associated with sensory phenomena. Some neurophysiological studies suggest that an altered “gating” mechanism also underlies the development of tics. This review underlines the importance of abnormal sensorimotor integration in the pathophysiology of movement disorders. Although the physiological mechanism remains unclear, the defect is of special clinical relevance in determining the development of focal dystonia.
Title: Sensorimotor integration in movement disorders
Description:
AbstractAlthough current knowledge attributes movement disorders to a dysfunction of the basal ganglia–motor cortex circuits, abnormalities in the peripheral afferent inputs or in their central processing may interfere with motor program execution.
We review the abnormalities of sensorimotor integration described in the various types of movement disorders.
Several observations, including those of parkinsonian patients' excessive reliance on ongoing visual information during movement tasks, suggest that proprioception is defective in Parkinson's disease (PD).
The disturbance of proprioceptive regulation, possibly related to the occurrence of abnormal muscle‐stretch reflexes, might be important for generating hypometric or bradykinetic movements.
Studies with somatosensory evoked potentials (SEPs), prepulse inhibition, and event‐related potentials support the hypothesis of central abnormalities of sensorimotor integration in PD.
In Huntington's disease (HD), changes in SEPs and long‐latency stretch reflexes suggest that a defective gating of peripheral afferent input to the brain might impair sensorimotor integration in cortical motor areas, thus interfering with the processing of motor programs.
Defective motor programming might contribute to some features of motor impairment in HD.
Sensory symptoms are frequent in focal dystonia and sensory manipulation can modify the dystonic movements.
In addition, specific sensory functions (kinaesthesia, spatial–temporal discrimination) can be impaired in patients with focal hand dystonia, thus leading to a “sensory overflow.
” Sensory input may be abnormal and trigger focal dystonia, or defective “gating” may cause an input–output mismatch in specific motor programs.
Altogether, several observations strongly support the idea that sensorimotor integration is impaired in focal dystonia.
Although elemental sensation is normal in patients with tics, tics can be associated with sensory phenomena.
Some neurophysiological studies suggest that an altered “gating” mechanism also underlies the development of tics.
This review underlines the importance of abnormal sensorimotor integration in the pathophysiology of movement disorders.
Although the physiological mechanism remains unclear, the defect is of special clinical relevance in determining the development of focal dystonia.

Related Results

Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Neurodegeneration and Sensorimotor Function
Neurodegeneration and Sensorimotor Function
Sensorimotor integration is an essential function for both motor control and learning. Over recent decades, a growing body of evidence has emerged in support of the role of altered...
Sensorimotor control of object manipulation following middle cerebral artery (MCA) stroke
Sensorimotor control of object manipulation following middle cerebral artery (MCA) stroke
Abstract Current bedside diagnostics used for the assessment of the loss of hand function post-stroke examine limited aspects of motor performance. Further, they ar...
Sensorimotor Cognition and Natural Language Syntax
Sensorimotor Cognition and Natural Language Syntax
A proposal that the syntactic structure of a sentence reporting a concrete episode in the world can be interpreted as a description of the sensorimotor processes involved in experi...
The Power of the Wave: Activism Rainbow Region-Style
The Power of the Wave: Activism Rainbow Region-Style
Introduction The counterculture that arose during the 1960s and 1970s left lasting social and political reverberations in developed nations. This was a time of increasing affluenc...
Tuning in Sensorimotor Synchronization
Tuning in Sensorimotor Synchronization
Abstract Moving in synchrony to external rhythmic stimuli is an elementary function that humans regularly engage in. It is termed “sensorimotor synchronization” and...
Sensorimotor memories influence movement kinematics but not associated tactile processing
Sensorimotor memories influence movement kinematics but not associated tactile processing
Abstract When interacting with objects, we often rely on visual information. However, vision is not always the most reliable sense for determining relevant object p...
Systemic Disease and Movement Disorders
Systemic Disease and Movement Disorders
Abstract Systemic illness is often complicated by the development of movement disorders, and the spectrum of movement disorders occurring in systemic diseases is as ...

Back to Top