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74 - Akinesia Induced by Deep Brain Stimulation

from Section IX - Deep Brain Stimulation for Dystonia

Published online by Cambridge University Press:  31 May 2018

Dirk Dressler
Affiliation:
Hannover Medical School
Eckart Altenmüller
Affiliation:
Hochschule für Musik, Theater und Medien, Hannover
Joachim K. Krauss
Affiliation:
Hannover Medical School
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Treatment of Dystonia , pp. 397 - 399
Publisher: Cambridge University Press
Print publication year: 2018

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References

Amtage, F, Feuerstein, TJ, Meier, S, Prokop, T, Piroth, T, Pinsker, MO. 2013. Hypokinesia upon pallidal deep brain stimulation of dystonia: support of a GABAergic mechanism. Front Neurol 4:198.CrossRefGoogle ScholarPubMed
Bejjani, B, Damier, P, Arnulf, I, Bonnet, AM, Vidailhet, M, Dormont, D, Pidoux, B, Cornu, P, Marsault, C, Agid, Y. 1997. Pallidal stimulation for Parkinson’s disease: two targets? Neurology 49(6):15641569.CrossRefGoogle ScholarPubMed
Berman, BD, Starr, PA, Marks, WJ, Jr, Ostrem, JL. 2009. Induction of bradykinesia with pallidal deep brain stimulation in patients with cranial-cervical dystonia. Stereotact Funct Neurosurg 87(1):3744.CrossRefGoogle ScholarPubMed
Blahak, C, Capelle, HH, Baezner, H, Kinfe, TM, Hennerici, MG, Krauss, JK. 2011. Micrographia induced by pallidal DBS for segmental dystonia: a subtle sign of hypokinesia? J Neural Transm (Vienna) 118(4):549553.CrossRefGoogle ScholarPubMed
Brucke, C, Huebl, J, Schonecker, T, Neumann, WJ, Yarrow, K, Kupsch, A, Blahak, C, Lutjens, G, Brown, P, Krauss, JK, Schneider, GH, Kuhn, AA. 2012. Scaling of movement is related to pallidal gamma oscillations in patients with dystonia. J Neurosci 32(3):10081019.Google Scholar
Diederich, NJ, Kalteis, K, Stamenkovic, M, Pieri, V, Alesch, F. 2005. Efficient internal pallidal stimulation in gilles de la tourette syndrome: a case report. Mov Disord 20(11):14961499.CrossRefGoogle ScholarPubMed
Huebl, J, Brucke, C, Schneider, GH, Blahak, C, Krauss, JK, Kuhn, AA. 2015. Bradykinesia induced by frequency-specific pallidal stimulation in patients with cervical and segmental dystonia. Parkinsonism Relat Disord 21(7):800803.CrossRefGoogle ScholarPubMed
Inase, M, Buford, JA, Anderson, ME. 1996. Changes in the control of arm position, movement, and thalamic discharge during local inactivation in the globus pallidus of the monkey. J Neurophysiol 75(3):10871104.Google Scholar
Krack, P, Pollak, P, Limousin, P, Hoffmann, D, Benazzouz, A, Le Bas, JF, Koudsie, A, Benabid, AL. 1998. Opposite motor effects of pallidal stimulation in Parkinson’s disease. Ann Neurol 43(2):180192.CrossRefGoogle ScholarPubMed
Kupsch, A, Benecke, R, Muller, J, Trottenberg, T, Schneider, GH, Poewe, W, Eisner, W, Wolters, A, Muller, JU, Deuschl, G, Pinsker, MO, Skogseid, IM, Roeste, GK, Vollmer-Haase, J, Brentrup, A, Krause, M, Tronnier, V, Schnitzler, A, Voges, J, Nikkhah, G, Vesper, J, Naumann, M, Volkmann, J, Deep-Brain Stimulation for Dystonia Study Group. 2006. Pallidal deep-brain stimulation in primary generalized or segmental dystonia. N Engl J Med 355(19):19781990.CrossRefGoogle ScholarPubMed
McIntyre, CC, Hahn, PJ. 2010. Network perspectives on the mechanisms of deep brain stimulation. Neurobiol Dis 38(3):329337.Google Scholar
Ostrem, JL, Marks, WJ, Jr, Volz, MM, Heath, SL, Starr, PA. 2007. Pallidal deep brain stimulation in patients with cranial-cervical dystonia (Meige syndrome). Mov Disord 22(13):18851891.CrossRefGoogle ScholarPubMed
Schrader, C, Capelle, HH, Kinfe, TM, Blahak, C, Bazner, H, Lutjens, G, Dressler, D, Krauss, JK. 2011. GPi-DBS may induce a hypokinetic gait disorder with freezing of gait in patients with dystonia. Neurology 77(5):483488.CrossRefGoogle ScholarPubMed
Talakoub, O, Neagu, B, Udupa, K, Tsang, E, Chen, R, Popovic, MR, Wong, W. 2016. Time-course of coherence in the human basal ganglia during voluntary movements. Sci Rep 6:34930.Google Scholar
Tisch, S, Zrinzo, L, Limousin, P, Bhatia, KP, Quinn, N, Ashkan, K, Hariz, M. 2007. Effect of electrode contact location on clinical efficacy of pallidal deep brain stimulation in primary generalised dystonia. J Neurol Neurosurg Psychiatry 78(12):13141319.CrossRefGoogle ScholarPubMed
Vidailhet, M, Vercueil, L, Houeto, JL, Krystkowiak, P, Benabid, AL, Cornu, P, Lagrange, C, Tezenas du Montcel, S, Dormont, D, Grand, S, Blond, S, Detante, O, Pillon, B, Ardouin, C, Agid, Y, Destee, A, Pollak, P, French Stimulation du Pallidum Interne dans la Dystonie (SPIDY) Study Group. 2005. Bilateral deep-brain stimulation of the globus pallidus in primary generalized dystonia. N Engl J Med 352(5):459467.Google Scholar
Wenger, KK, Musch, KL, Mink, JW. 1999. Impaired reaching and grasping after focal inactivation of globus pallidus pars interna in the monkey. J Neurophysiol 82(5):20492060.CrossRefGoogle ScholarPubMed
Wichmann, T, DeLong, MR. 2003. Pathophysiology of Parkinson’s disease: the MPTP primate model of the human disorder. Ann NY Acad Sci 991:199213.Google Scholar
Wolf, ME, Capelle, HH, Bazner, H, Hennerici, MG, Krauss, JK, Blahak, C. 2016. Hypokinetic gait changes induced by bilateral pallidal deep brain stimulation for segmental dystonia. Gait Posture 49:358363.CrossRefGoogle ScholarPubMed
Zauber, SE, Watson, N, Comella, CL, Bakay, RA, Metman, LV. 2009. Stimulation-induced parkinsonism after posteroventral deep brain stimulation of the globus pallidus internus for craniocervical dystonia. J Neurosurg 110(2):229233.Google Scholar

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