Literature DB >> 11595136

Precision grip deficits in cerebellar disorders in man.

S J Fellows1, J Ernst, M Schwarz, R Töpper, J Noth.   

Abstract

OBJECTIVE: To investigate the effect of a variety of cerebellar pathologies on a functional motor task (lifting an object in a precision grip).
METHODS: The study involved 8 patients with unilateral damage in the region of the posterior inferior cerebellar artery (PICA), 6 with damage in the region of the superior cerebellar artery (SUPCA), 12 patients with familiar or idiopathic cortical cerebellar degeneration, and 45 age-matched normal subjects. Subjects lifted an object of unpredictable load (internally guided task) or responded to a sudden load increase while holding the object steadily (externally guided task).
RESULTS: Damage to the dentate nucleus (SUPCA) or its afferent input (cerebellar atrophy) resulted in disruption of the close coordination normally seen between proximal muscles (lifting the object) and the fingers (gripping the object) during a self-paced lift. Both the SUPCA group and, more markedly, the atrophy group, showed exaggerated levels of grip force. All patients showed a normal rate of grip force development. Damage in the PICA region had no significant effect on any of the measured lifting parameters. All patient groups retained the ability to scale grip force to different object loads. The automatic grip force response to unexpected load increase of a hand held object showed normal latency and time course in all patient groups. The response was modulated by the rate of the load change. Response magnitude was exaggerated in the atrophy patients at all 3 rates tested.
CONCLUSIONS: Disturbances associated with cerebellar disorders differed from those seen following damage to the basal ganglia, with no evidence of slowed rates of grip force development. Disruption of temporal coordination between the proximal muscles (lifting) and the fingers (gripping) in a lift was apparent, supporting the role of the cerebellum in coordinating the timing of multi-joint movement sequences. Exaggeration of grip force levels was found in association with damage to the dentate nucleus or, in particular, to its afferent input. This could support a role or the cerebellum in sensorimotor processing, but might also represent a failure to time correctly the duration of grip force generation.

Entities:  

Mesh:

Year:  2001        PMID: 11595136     DOI: 10.1016/s1388-2457(01)00623-x

Source DB:  PubMed          Journal:  Clin Neurophysiol        ISSN: 1388-2457            Impact factor:   3.708


  25 in total

Review 1.  Consensus paper: roles of the cerebellum in motor control--the diversity of ideas on cerebellar involvement in movement.

Authors:  Mario Manto; James M Bower; Adriana Bastos Conforto; José M Delgado-García; Suzete Nascimento Farias da Guarda; Marcus Gerwig; Christophe Habas; Nobuhiro Hagura; Richard B Ivry; Peter Mariën; Marco Molinari; Eiichi Naito; Dennis A Nowak; Nordeyn Oulad Ben Taib; Denis Pelisson; Claudia D Tesche; Caroline Tilikete; Dagmar Timmann
Journal:  Cerebellum       Date:  2012-06       Impact factor: 3.847

2.  Prehension synergies during nonvertical grasping, I: experimental observations.

Authors:  Todd C Pataky; Mark L Latash; Vladimir M Zatsiorsky
Journal:  Biol Cybern       Date:  2004-09-10       Impact factor: 2.086

Review 3.  [Analysis of grip force during object manipulation. Method for the objective measurement of physiological normal and impaired hand function].

Authors:  Dennis A Nowak; Joachim Hermsdörfer
Journal:  Nervenarzt       Date:  2004-08       Impact factor: 1.214

4.  Prehension Kinematics, Grasping Forces, and Independent Finger Control in Mildly Affected Patients with Essential Tremor.

Authors:  Kasja Solbach; Mareike Mumm; Barbara Brandauer; Martin Kronenbürger; Joachim Hermsdörfer; Dagmar Timmann
Journal:  Cerebellum       Date:  2016-08       Impact factor: 3.847

5.  Motor control goes beyond physics: differential effects of gravity and inertia on finger forces during manipulation of hand-held objects.

Authors:  Vladimir M Zatsiorsky; Fan Gao; Mark L Latash
Journal:  Exp Brain Res       Date:  2004-12-04       Impact factor: 1.972

6.  Similar motion of a hand-held object may trigger nonsimilar grip force adjustments.

Authors:  Fan Gao; Mark L Latash; Vladimir M Zatsiorsky
Journal:  J Hand Ther       Date:  2007 Oct-Dec       Impact factor: 1.950

Review 7.  Basal ganglia mechanisms underlying precision grip force control.

Authors:  Janey Prodoehl; Daniel M Corcos; David E Vaillancourt
Journal:  Neurosci Biobehav Rev       Date:  2009-03-14       Impact factor: 8.989

8.  Reactive grip force control in persons with cerebellar stroke: effects on ipsilateral and contralateral hand.

Authors:  Elisabeth Anens; Bo Kristensen; Charlotte Häger-Ross
Journal:  Exp Brain Res       Date:  2010-03-09       Impact factor: 1.972

9.  A pilot study: coordination of precision grip in children and adolescents with high functioning autism.

Authors:  Fabian J David; Grace T Baranek; Carol A Giuliani; Vicki S Mercer; Michele D Poe; Deborah E Thorpe
Journal:  Pediatr Phys Ther       Date:  2009       Impact factor: 3.049

10.  Interhemispheric transfer of predictive force control during grasping in cerebellar disorders.

Authors:  Dennis A Nowak; Andreas Hufnagel; Mitra Ameli; Dagmar Timmann; Joachim Hermsdörfer
Journal:  Cerebellum       Date:  2008-12-04       Impact factor: 3.847

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