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Erschienen in: Journal of Neurology 1/2015

01.01.2015 | Original Communication

The dopaminergic system in upper limb motor blocks (ULMB) investigated during bimanual coordination in Parkinson’s disease (PD)

verfasst von: Matt J. N. Brown, Quincy J. Almeida, Fariborz Rahimi

Erschienen in: Journal of Neurology | Ausgabe 1/2015

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Abstract

Upper limb motor blocks (ULMB) (inability to initiate or sudden discontinue in voluntary movements) have been identified in both unimanual and bimanual tasks in individuals with Parkinson’s disease (PD). In particular, ULMB have been observed during rhythmic bimanual coordination when switching between phase patterns which is required (e.g. between in-phase and anti-phase). While sensory-perceptual mechanisms have recently been suggested to be involved in lower limb freezing, there has been no consensus on the mechanism that evokes ULMB or whether motor blocks respond to dopamine replacement like other motor symptoms of PD. The current study investigated the occurrence of ULMB in PD participants without (‘off’) and with (‘on’) dopamine replacement using bimanual wrist flexion—extension with external auditory cues. In Experiment 1, coordination was performed in either in-phase (simultaneous flexion and extension) or anti-phase (asymmetrical flexion and extension between the limbs) in one of three sensory conditions: no vision, normal vision or augmented vision. Cycle frequency was increased within each trial across seven cycle frequencies (0.75–2 Hz). In Experiment 2, coordination was initiated in either phase pattern and participants were cued to make an intentional switch between phases in the middle of trials. Trials were performed at one of two cycle frequencies (1 or 2 Hz) and one of two sensory conditions: no vision or normal vision. Healthy age-matched control participants were also investigated in both experiments for the occurrence of motor blocks that were measured using automated detection from a computer algorithm. The results from Experiment 1 indicated that increasing cycle frequency resulted in more ULMB in individuals with PD during continuous coordinated movement, regardless of dopaminergic status, phase pattern or sensory condition. Experiment 2 also confirmed an increased occurrence of ULMB with increased cycle frequency. Furthermore, a large amount of ULMB were observed when initiating anti-phase coordination at 2 Hz, as well as after both externally-cued switches and in ‘catch trials’ with distracting auditory cues when no switch was required. Dopamine replacement was not found to influence the frequency of ULMB in either experiment. Therefore, ULMB likely result from non-hypodopaminergic impairments associated with PD. Specifically, ULMB may be caused by an inability to shift attentional control under increased cognitive demand that could be associated with hypoactivation in motor and prefrontal areas.
Literatur
1.
Zurück zum Zitat Nieuwboer A, De Weerdt W, Desloovere K et al (2001) Abnormalities of the spatiotemporal characteristics of gait at the onset of freezing in Parkinson’s disease. Mov Disord 16:1066–1075. doi:10.1002/mds.1206 CrossRefPubMed Nieuwboer A, De Weerdt W, Desloovere K et al (2001) Abnormalities of the spatiotemporal characteristics of gait at the onset of freezing in Parkinson’s disease. Mov Disord 16:1066–1075. doi:10.​1002/​mds.​1206 CrossRefPubMed
5.
Zurück zum Zitat Giladi N, McMahon D, Przedborski S et al (1992) Motor blocks in Parkinson’s disease. Neurology 42:333–339CrossRefPubMed Giladi N, McMahon D, Przedborski S et al (1992) Motor blocks in Parkinson’s disease. Neurology 42:333–339CrossRefPubMed
6.
Zurück zum Zitat Schaafsma JD, Balash Y, Gurevich T et al (2003) Characterization of freezing of gait subtypes and the response of each to levodopa in Parkinson’s disease. Eur J Neurol 10:391–398CrossRefPubMed Schaafsma JD, Balash Y, Gurevich T et al (2003) Characterization of freezing of gait subtypes and the response of each to levodopa in Parkinson’s disease. Eur J Neurol 10:391–398CrossRefPubMed
7.
Zurück zum Zitat Nakamura R, Nagasaki H, Narabayashi H (1978) Disturbances of rhythm formation in patients with Parkinson’s disease: part 1. Characteristics of tapping response to the periodic signals. Percept Mot Skills 46:63–75CrossRefPubMed Nakamura R, Nagasaki H, Narabayashi H (1978) Disturbances of rhythm formation in patients with Parkinson’s disease: part 1. Characteristics of tapping response to the periodic signals. Percept Mot Skills 46:63–75CrossRefPubMed
8.
Zurück zum Zitat Ziv I, Avraham M, Dabby R et al (1999) Earlv-occurrence of manual motor blocks in Parkinson’s disease : a quantitative assessment. Acta Neurol Scand 99:106–111CrossRefPubMed Ziv I, Avraham M, Dabby R et al (1999) Earlv-occurrence of manual motor blocks in Parkinson’s disease : a quantitative assessment. Acta Neurol Scand 99:106–111CrossRefPubMed
9.
Zurück zum Zitat Almeida QJ, Wishart LR, Lee TD (2003) Disruptive influences of a cued voluntary shift on coordinated movement in Parkinson’s disease. Neuropsychologia 41:442–452CrossRefPubMed Almeida QJ, Wishart LR, Lee TD (2003) Disruptive influences of a cued voluntary shift on coordinated movement in Parkinson’s disease. Neuropsychologia 41:442–452CrossRefPubMed
10.
Zurück zum Zitat Almeida QJ, Wishart LR, Lee TD (2002) Bimanual coordination deficits with Parkinson’s disease : the influence of movement speed and external cueing. Mov Disord 17:30–37. doi:10.1002/mds.10030 CrossRefPubMed Almeida QJ, Wishart LR, Lee TD (2002) Bimanual coordination deficits with Parkinson’s disease : the influence of movement speed and external cueing. Mov Disord 17:30–37. doi:10.​1002/​mds.​10030 CrossRefPubMed
12.
Zurück zum Zitat Vercruysse S, Spildooren J, Heremans E et al (2012) Abnormalities and cue dependence of rhythmical upper-limb movements in Parkinson patients with freezing of gait. Neurorehabil Neural Repair 26:636–645. doi:10.1177/1545968311431964 CrossRefPubMed Vercruysse S, Spildooren J, Heremans E et al (2012) Abnormalities and cue dependence of rhythmical upper-limb movements in Parkinson patients with freezing of gait. Neurorehabil Neural Repair 26:636–645. doi:10.​1177/​1545968311431964​ CrossRefPubMed
13.
Zurück zum Zitat Vercruysse S, Spildooren J, Heremans E et al (2013) The neural correlates of upper limb motor blocks in Parkinson’s disease and their relation to freezing of gait. Cereb Cortex. doi:10.1093/cercor/bht170 PubMed Vercruysse S, Spildooren J, Heremans E et al (2013) The neural correlates of upper limb motor blocks in Parkinson’s disease and their relation to freezing of gait. Cereb Cortex. doi:10.​1093/​cercor/​bht170 PubMed
19.
Zurück zum Zitat Almeida QJ, Brown MJN (2013) Is DOPA-responsive hypokinesia responsible for bimanual coordination deficits in Parkinson’s disease? Front Neurol 4:1–17. doi:10.3389/fneur.2013.00089 Almeida QJ, Brown MJN (2013) Is DOPA-responsive hypokinesia responsible for bimanual coordination deficits in Parkinson’s disease? Front Neurol 4:1–17. doi:10.​3389/​fneur.​2013.​00089
20.
22.
Zurück zum Zitat Bloem BR, Hausdorff JM, Visser JE, Giladi N (2004) Falls and freezing of gait in Parkinson’s disease: a review of two interconnected, episodic phenomena. Mov Disord 19:871–884. doi:10.1002/mds.20115 CrossRefPubMed Bloem BR, Hausdorff JM, Visser JE, Giladi N (2004) Falls and freezing of gait in Parkinson’s disease: a review of two interconnected, episodic phenomena. Mov Disord 19:871–884. doi:10.​1002/​mds.​20115 CrossRefPubMed
26.
Zurück zum Zitat Kelso JAS, Southard DL, Goodman D (1979) On the nature of human interlimb coordination. Science 203:1029–1031CrossRefPubMed Kelso JAS, Southard DL, Goodman D (1979) On the nature of human interlimb coordination. Science 203:1029–1031CrossRefPubMed
27.
Zurück zum Zitat Kelso J, Holt K, Rubin P, Kugler P (1981) Patterns of human interlimb coordination emerge from the properties of non-linear, limit-cycle oscillatory processes- theory and data. J Mot Behav 13:226–261CrossRefPubMed Kelso J, Holt K, Rubin P, Kugler P (1981) Patterns of human interlimb coordination emerge from the properties of non-linear, limit-cycle oscillatory processes- theory and data. J Mot Behav 13:226–261CrossRefPubMed
28.
Zurück zum Zitat Giladi N, Nieuwboer A (2008) Understanding and treating freezing of gait in parkinsonism, proposed working definition, and setting the stage. Mov Disord 23(Suppl 2):S423–S425. doi:10.1002/mds.21927 CrossRefPubMed Giladi N, Nieuwboer A (2008) Understanding and treating freezing of gait in parkinsonism, proposed working definition, and setting the stage. Mov Disord 23(Suppl 2):S423–S425. doi:10.​1002/​mds.​21927 CrossRefPubMed
30.
Zurück zum Zitat Shine JM, Matar E, Ward PB et al (2013) Exploring the cortical and subcortical functional magnetic resonance imaging changes associated with freezing in Parkinson’s disease. Brain 136:1204–1215. doi:10.1093/brain/awt049 CrossRefPubMed Shine JM, Matar E, Ward PB et al (2013) Exploring the cortical and subcortical functional magnetic resonance imaging changes associated with freezing in Parkinson’s disease. Brain 136:1204–1215. doi:10.​1093/​brain/​awt049 CrossRefPubMed
31.
Zurück zum Zitat Van den Berg C, Beek PJ, Wagenaar RC, van Wieringen PCW (2000) Coordination disorders in patients with Parkinson’s disease: a study of paced rhythmic forearm movements. Exp Brain Res 134:174–186. doi:10.1007/s002210000441 CrossRefPubMed Van den Berg C, Beek PJ, Wagenaar RC, van Wieringen PCW (2000) Coordination disorders in patients with Parkinson’s disease: a study of paced rhythmic forearm movements. Exp Brain Res 134:174–186. doi:10.​1007/​s002210000441 CrossRefPubMed
32.
Zurück zum Zitat Vidal JS, Derkinderen P, Vidaihet M et al (2003) Mirror movements of the non-affected hand in hemiparkinsonian patients: a reflection of ipsilateral motor overactivity? J Neurol Neurosurg Psychiatry 74:1352–1353PubMedCentralCrossRefPubMed Vidal JS, Derkinderen P, Vidaihet M et al (2003) Mirror movements of the non-affected hand in hemiparkinsonian patients: a reflection of ipsilateral motor overactivity? J Neurol Neurosurg Psychiatry 74:1352–1353PubMedCentralCrossRefPubMed
34.
Zurück zum Zitat Cincotta M, Borgheresi A, Balestrieri F et al (2006) Mechanisms underlying mirror movements in Parkinson’s disease: a transcranial magnetic stimulation study. Mov Disord 21:1019–1025. doi:10.1002/mds.20850 CrossRefPubMed Cincotta M, Borgheresi A, Balestrieri F et al (2006) Mechanisms underlying mirror movements in Parkinson’s disease: a transcranial magnetic stimulation study. Mov Disord 21:1019–1025. doi:10.​1002/​mds.​20850 CrossRefPubMed
35.
Zurück zum Zitat Kishore A, Espay AJ, Marras C et al (2007) Unilateral versus bilateral tasks in early asymmetric Parkinson’s disease: differential effects on bradykinesia. Mov Disord 22:328–333. doi:10.1002/mds.21238 CrossRefPubMed Kishore A, Espay AJ, Marras C et al (2007) Unilateral versus bilateral tasks in early asymmetric Parkinson’s disease: differential effects on bradykinesia. Mov Disord 22:328–333. doi:10.​1002/​mds.​21238 CrossRefPubMed
39.
Zurück zum Zitat Johnson KA, Cunnington R, Bradshaw JL et al (1998) Bimanual co-ordination in Parkinson’s disease. Brain 121:743–753CrossRefPubMed Johnson KA, Cunnington R, Bradshaw JL et al (1998) Bimanual co-ordination in Parkinson’s disease. Brain 121:743–753CrossRefPubMed
41.
Zurück zum Zitat Brown RG, Marsden CD (1988) Internal versus external cues and the control of attention in Parkinson’s disease. Brain 111:323–345CrossRefPubMed Brown RG, Marsden CD (1988) Internal versus external cues and the control of attention in Parkinson’s disease. Brain 111:323–345CrossRefPubMed
42.
Zurück zum Zitat Shine JM, Matar E, Ward PB et al (2013) Freezing of gait in Parkinson’s disease is associated with functional decoupling between the cognitive control network and the basal ganglia. Brain 1:1–11. doi:10.1093/brain/awt272 Shine JM, Matar E, Ward PB et al (2013) Freezing of gait in Parkinson’s disease is associated with functional decoupling between the cognitive control network and the basal ganglia. Brain 1:1–11. doi:10.​1093/​brain/​awt272
Metadaten
Titel
The dopaminergic system in upper limb motor blocks (ULMB) investigated during bimanual coordination in Parkinson’s disease (PD)
verfasst von
Matt J. N. Brown
Quincy J. Almeida
Fariborz Rahimi
Publikationsdatum
01.01.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Journal of Neurology / Ausgabe 1/2015
Print ISSN: 0340-5354
Elektronische ISSN: 1432-1459
DOI
https://doi.org/10.1007/s00415-014-7514-5

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