Movement Disorders (revue)

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Speed Effects of Deep Brain Stimulation for Parkinson's Disease

Identifieur interne : 002550 ( PascalFrancis/Curation ); précédent : 002549; suivant : 002551

Speed Effects of Deep Brain Stimulation for Parkinson's Disease

Auteurs : Fabian Klostermann [Allemagne] ; Michael Wahl [Allemagne] ; Frank Marzinzik [Allemagne] ; Jan Vesper [Allemagne] ; Werner Sommer [Allemagne] ; Gabriel Curio [Allemagne]

Source :

RBID : Pascal:11-0065132

Descripteurs français

English descriptors

Abstract

Deep brain stimulation (DBS) of the subthalamic nucleus (STN) accelerates reaction time (RT) in patients with Parkinson's disease (PD), particularly in tasks in which decisions on the response side have to be made. This might indicate that DBS speeds up both motor and nonmotor operations. Therefore, we studied the extent to which modifications of different processing streams could explain changes of RT under subthalamic DBS. Ten PD patients on-DBS and off-DBS and 10 healthy subjects performed a choice-response task (CRT), requiring either right or left finger button presses. At the same time, EEG recordings were performed, so that RTs could be assessed together with lateralized readiness potentials (LRP), indicative of movement preparation. Additionally, an oddball task (OT) was run, in which right finger responses to target stimuli were recorded along with cognitive P300 responses. Generally, PD patients off-DBS had longer RTs than controls. Subthalamic DBS accelerated RT only in CRT. This could largely be explained by analog shortenings of LRP. No DBS-dependent changes were identified in OT, neither on the level of RT nor on the level of P300 latencies. It follows that RT accelerations under DBS of the STN are predominantly due to effects on the timing of motor instead of nonmotor processes. This starting point explains why DBS gains of response speed are low in tasks in which reactions are initiated from an advanced level of movement preparation (as in OT), and high whenever motor responses have to be raised from scratch (as in CRT).
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A06       @2 16
A08 01  1  ENG  @1 Speed Effects of Deep Brain Stimulation for Parkinson's Disease
A11 01  1    @1 KLOSTERMANN (Fabian)
A11 02  1    @1 WAHL (Michael)
A11 03  1    @1 MARZINZIK (Frank)
A11 04  1    @1 VESPER (Jan)
A11 05  1    @1 SOMMER (Werner)
A11 06  1    @1 CURIO (Gabriel)
A14 01      @1 Department of Neurology, CBF, Charité-University Medicine Berlin @2 Berlin @3 DEU @Z 1 aut. @Z 2 aut. @Z 3 aut. @Z 6 aut.
A14 02      @1 Department of Functional Neurosurgery, University Clinic Duesseldorf @2 Duesseldorf @3 DEU @Z 4 aut.
A14 03      @1 Department of Biological Psychology/Psychophysiology, Humboldt-University @2 Berlin @3 DEU @Z 5 aut.
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A21       @1 2010
A23 01      @0 ENG
A43 01      @1 INIST @2 20953 @5 354000193512620100
A44       @0 0000 @1 © 2011 INIST-CNRS. All rights reserved.
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A47 01  1    @0 11-0065132
A60       @1 P
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C01 01    ENG  @0 Deep brain stimulation (DBS) of the subthalamic nucleus (STN) accelerates reaction time (RT) in patients with Parkinson's disease (PD), particularly in tasks in which decisions on the response side have to be made. This might indicate that DBS speeds up both motor and nonmotor operations. Therefore, we studied the extent to which modifications of different processing streams could explain changes of RT under subthalamic DBS. Ten PD patients on-DBS and off-DBS and 10 healthy subjects performed a choice-response task (CRT), requiring either right or left finger button presses. At the same time, EEG recordings were performed, so that RTs could be assessed together with lateralized readiness potentials (LRP), indicative of movement preparation. Additionally, an oddball task (OT) was run, in which right finger responses to target stimuli were recorded along with cognitive P300 responses. Generally, PD patients off-DBS had longer RTs than controls. Subthalamic DBS accelerated RT only in CRT. This could largely be explained by analog shortenings of LRP. No DBS-dependent changes were identified in OT, neither on the level of RT nor on the level of P300 latencies. It follows that RT accelerations under DBS of the STN are predominantly due to effects on the timing of motor instead of nonmotor processes. This starting point explains why DBS gains of response speed are low in tasks in which reactions are initiated from an advanced level of movement preparation (as in OT), and high whenever motor responses have to be raised from scratch (as in CRT).
C02 01  X    @0 002B17
C02 02  X    @0 002B17G
C03 01  X  FRE  @0 Maladie de Parkinson @2 NM @5 01
C03 01  X  ENG  @0 Parkinson disease @2 NM @5 01
C03 01  X  SPA  @0 Parkinson enfermedad @2 NM @5 01
C03 02  X  FRE  @0 Pathologie du système nerveux @5 02
C03 02  X  ENG  @0 Nervous system diseases @5 02
C03 02  X  SPA  @0 Sistema nervioso patología @5 02
C03 03  X  FRE  @0 Vitesse déplacement @5 09
C03 03  X  ENG  @0 Speed @5 09
C03 03  X  SPA  @0 Velocidad desplazamiento @5 09
C03 04  X  FRE  @0 Spécificité @5 10
C03 04  X  ENG  @0 Specificity @5 10
C03 04  X  SPA  @0 Especificidad @5 10
C03 05  X  FRE  @0 Stimulation cérébrale profonde @4 CD @5 96
C03 05  X  ENG  @0 Deep brain stimulation @4 CD @5 96
C07 01  X  FRE  @0 Pathologie de l'encéphale @5 37
C07 01  X  ENG  @0 Cerebral disorder @5 37
C07 01  X  SPA  @0 Encéfalo patología @5 37
C07 02  X  FRE  @0 Syndrome extrapyramidal @5 38
C07 02  X  ENG  @0 Extrapyramidal syndrome @5 38
C07 02  X  SPA  @0 Extrapiramidal síndrome @5 38
C07 03  X  FRE  @0 Maladie dégénérative @5 39
C07 03  X  ENG  @0 Degenerative disease @5 39
C07 03  X  SPA  @0 Enfermedad degenerativa @5 39
C07 04  X  FRE  @0 Pathologie du système nerveux central @5 40
C07 04  X  ENG  @0 Central nervous system disease @5 40
C07 04  X  SPA  @0 Sistema nervosio central patología @5 40
N21       @1 045
N44 01      @1 OTO
N82       @1 OTO

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Pascal:11-0065132

Le document en format XML

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<div type="abstract" xml:lang="en">Deep brain stimulation (DBS) of the subthalamic nucleus (STN) accelerates reaction time (RT) in patients with Parkinson's disease (PD), particularly in tasks in which decisions on the response side have to be made. This might indicate that DBS speeds up both motor and nonmotor operations. Therefore, we studied the extent to which modifications of different processing streams could explain changes of RT under subthalamic DBS. Ten PD patients on-DBS and off-DBS and 10 healthy subjects performed a choice-response task (CRT), requiring either right or left finger button presses. At the same time, EEG recordings were performed, so that RTs could be assessed together with lateralized readiness potentials (LRP), indicative of movement preparation. Additionally, an oddball task (OT) was run, in which right finger responses to target stimuli were recorded along with cognitive P300 responses. Generally, PD patients off-DBS had longer RTs than controls. Subthalamic DBS accelerated RT only in CRT. This could largely be explained by analog shortenings of LRP. No DBS-dependent changes were identified in OT, neither on the level of RT nor on the level of P300 latencies. It follows that RT accelerations under DBS of the STN are predominantly due to effects on the timing of motor instead of nonmotor processes. This starting point explains why DBS gains of response speed are low in tasks in which reactions are initiated from an advanced level of movement preparation (as in OT), and high whenever motor responses have to be raised from scratch (as in CRT).</div>
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<s0>Degenerative disease</s0>
<s5>39</s5>
</fC07>
<fC07 i1="03" i2="X" l="SPA">
<s0>Enfermedad degenerativa</s0>
<s5>39</s5>
</fC07>
<fC07 i1="04" i2="X" l="FRE">
<s0>Pathologie du système nerveux central</s0>
<s5>40</s5>
</fC07>
<fC07 i1="04" i2="X" l="ENG">
<s0>Central nervous system disease</s0>
<s5>40</s5>
</fC07>
<fC07 i1="04" i2="X" l="SPA">
<s0>Sistema nervosio central patología</s0>
<s5>40</s5>
</fC07>
<fN21>
<s1>045</s1>
</fN21>
<fN44 i1="01">
<s1>OTO</s1>
</fN44>
<fN82>
<s1>OTO</s1>
</fN82>
</pA>
</standard>
</inist>
</record>

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