M Bianchi1, M Cosseddu1, M Cotelli2, R Manenti2, M Brambilla2, M C Rizzetti3, A Padovani1, B Borroni1. 1. Neurology Unit, Centre for Neurodegenerative Disorders, University of Brescia, Brescia, Italy. 2. Neuropsychology Unit, IRCCS Istituto Centro San Giovanni di Dio Fatebenefratelli, Brescia, Italy. 3. Riabilitazione Parkinson Unit, S. Isidoro Hospital, FERB Onlus, Trescore Balneario, Italy.
Abstract
BACKGROUND AND PURPOSE: Corticobasal syndrome (CBS) is a clinical entity characterized by higher cortical dysfunctions associated with asymmetric onset of levodopa-resistant parkinsonism, dystonia and myoclonus. One of the most typical and distressful features of CBS is limb apraxia, which affects patients in their everyday life. Transcranial direct current stimulation (tDCS) is a non-invasive procedure of cortical stimulation, which represents a promising tool for cognitive enhancement and neurorehabilitation. The present study investigated whether anodal tDCS over the parietal cortex (PARC), would improve ideomotor upper limb apraxia in CBS patients. METHODS: Fourteen patients with possible CBS and upper limb apraxia were enrolled. Each patient underwent two sessions of anodal tDCS (left and right PARC) and one session of placebo tDCS. Ideomotor upper limb apraxia was assessed using the De Renzi ideomotor apraxia test that is performed only on imitation. RESULTS: A significant improvement of the De Renzi ideomotor apraxia test scores (post-stimulation versus pre-stimulation) after active anodal stimulation over the left PARC was observed (χ(2) = 17.6, P = 0.0005), whilst no significant effect was noticed after active anodal stimulation over the right PARC (χ(2) = 7.2, P = 0.07). A post hoc analysis revealed a selective improvement in the De Renzi ideomotor apraxia score after active anodal stimulation over the left PARC compared with placebo stimulation considering both right (P = 0.03) and left upper limbs (P = 0.01). CONCLUSIONS: These findings indicate that tDCS to the PARC improves the performance of an ideomotor apraxia test in CBS patients and might represent a promising tool for future rehabilitation approaches.
BACKGROUND AND PURPOSE:Corticobasal syndrome (CBS) is a clinical entity characterized by higher cortical dysfunctions associated with asymmetric onset of levodopa-resistant parkinsonism, dystonia and myoclonus. One of the most typical and distressful features of CBS is limb apraxia, which affects patients in their everyday life. Transcranial direct current stimulation (tDCS) is a non-invasive procedure of cortical stimulation, which represents a promising tool for cognitive enhancement and neurorehabilitation. The present study investigated whether anodal tDCS over the parietal cortex (PARC), would improve ideomotor upper limb apraxia in CBSpatients. METHODS: Fourteen patients with possible CBS and upper limb apraxia were enrolled. Each patient underwent two sessions of anodal tDCS (left and right PARC) and one session of placebo tDCS. Ideomotor upper limb apraxia was assessed using the De Renzi ideomotor apraxia test that is performed only on imitation. RESULTS: A significant improvement of the De Renzi ideomotor apraxia test scores (post-stimulation versus pre-stimulation) after active anodal stimulation over the left PARC was observed (χ(2) = 17.6, P = 0.0005), whilst no significant effect was noticed after active anodal stimulation over the right PARC (χ(2) = 7.2, P = 0.07). A post hoc analysis revealed a selective improvement in the De Renzi ideomotor apraxia score after active anodal stimulation over the left PARC compared with placebo stimulation considering both right (P = 0.03) and left upper limbs (P = 0.01). CONCLUSIONS: These findings indicate that tDCS to the PARC improves the performance of an ideomotor apraxia test in CBSpatients and might represent a promising tool for future rehabilitation approaches.
Authors: Brent Bluett; Alexander Y Pantelyat; Irene Litvan; Farwa Ali; Diana Apetauerova; Danny Bega; Lisa Bloom; James Bower; Adam L Boxer; Marian L Dale; Rohit Dhall; Antoine Duquette; Hubert H Fernandez; Jori E Fleisher; Murray Grossman; Michael Howell; Diana R Kerwin; Julie Leegwater-Kim; Christiane Lepage; Peter Alexander Ljubenkov; Martina Mancini; Nikolaus R McFarland; Paolo Moretti; Erica Myrick; Pritika Patel; Laura S Plummer; Federico Rodriguez-Porcel; Julio Rojas; Christos Sidiropoulos; Miriam Sklerov; Leonard L Sokol; Paul J Tuite; Lawren VandeVrede; Jennifer Wilhelm; Anne-Marie A Wills; Tao Xie; Lawrence I Golbe Journal: Front Neurol Date: 2021-07-01 Impact factor: 4.003