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Lewy body diseases (LBDs) represents a group of neurodegenerative disorders characterized by the abnormal accumulation of aggregates of α-synuclein protein leading to the formation of Lewy bodies (LB) and Lewy neurites resulting in cell death. LBDs consists of two major clinical entities - Parkinson's disease (PD) and dementia with LB (DLB). Vast majority of patients with LBDs either already have mild cognitive impairment (MCI) at the time of the diagnosis or will develop it during the course of the disease. Language dysfunctions in LBDs patients with MCI are often unrecognized, which are difficult to treat, but even subtle changes might lead to impairment of social and occupational functioning with profound effect on their quality of lives. Current pharmacological or surgical strategies are effective for tackling the motor issues of LBDs with very limited effects on other symptoms such as language dysfunctions. Therefore, non-pharmacological approaches are gaining more attention. One of these non-pharmacological strategies is the use of noninvasive brain stimulation (NIBS) techniques that are able to modulate the brain functions with the effects on human nervous system plasticity. In this proposed project the investigators aim to first describe specific alterations in the language domain in LBDs patients with MCI as compared to healthy controls (HC) and identify the neural underpinnings of these changes using novel combination of advanced multimodal imaging techniques and various analytical methods. Secondly, the investigators aim to use NIBS as a supervised and individualized home-based therapeutical approach to tackle the language dysfunctions.
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| Differences between LBDs patients and HC in regulation of language functions | No Intervention | In this study, 25 LBDs patients and 25 HC will undergo neuropsychological assessment, speech and writing recording, and MRI (structural T1 sequences, sentence comprehension fMRI task, neuromelanin-sensitive MRI sequence, and resting state measurement). The HC group will be matched to the LBDs patients with MCI for gender and age. | |
| Long-term effects of repeated sessions of home-based tDCS delivered via telepractice | Experimental | The investigators will use a parallel-group, double-blinded, randomized, sham-stimulation-controlled design. Forty LBDs patients will be randomized into two parallel groups, n = 20 subjects in each arm. For the active group, the investigators will use the stimulation protocol with the anode over the left IFG (cathode over the right supraorbital area, 2mA, 20 minutes). Participants will undergo a baseline assessment (A0, as described in arm 1); 10 stimulation sessions (in a two-week period); a follow-up assessment immediately after tDCS treatment (A1), and follow-up assessments 8 weeks (A2) after the baseline assessment. Each assessment will consist of a brief neuropsychological assessment, speech and writing recording and MRI scanning. |
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| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| transcranial direct current stimulation (tDCS) | Device | tDCS using electric currents to modulate underlying neurons |
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| Measure | Description | Time Frame |
|---|---|---|
| sentence comprehension performance - accuracy | the investigators will study comprehension of syntactically complex sentences - accuracy in sentence comprehension task | through study completion, an average of 1 year |
| sentence comprehension performance - reaction times | the investigators will study comprehension of syntactically complex sentences - reaction times in sentence comprehension task | through study completion, an average of 1 year |
| Measure | Description | Time Frame |
|---|---|---|
| relation of sentence comprehension performance to cognitive performance | the investigators will correlate sentence comprehension with cognitive functions: z-scores in following domains - memory, attention, executive function, visuospatial function and language function of Short Neuropsychological Battery (Bolcekova et al. 2020) | through study completion, an average of 1 year |
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Inclusion Criteria:
Exclusion Criteria:
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| Name | Role | Phone | Extension | |
|---|---|---|---|---|
| Lubomira Novakova | Contact | +420 549 497 766 | lubomira.novakova@ceitec.muni.cz |
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| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| Masaryk University CEITEC | Recruiting | Brno | 62500 | Czechia |
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| ID | Term |
|---|---|
| D020961 | Lewy Body Disease |
| ID | Term |
|---|---|
| D020734 | Parkinsonian Disorders |
| D001480 | Basal Ganglia Diseases |
| D001927 | Brain Diseases |
| D002493 | Central Nervous System Diseases |
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| ID | Term |
|---|---|
| D065908 | Transcranial Direct Current Stimulation |
| ID | Term |
|---|---|
| D004599 | Electric Stimulation Therapy |
| D013812 | Therapeutics |
| D003295 | Convulsive Therapy |
| D013000 | Psychiatric Somatic Therapies |
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| The neural underpinning of sentence comprehension deficits - sentence comprehension fMRI task data | The investigators will identify connectivity differences between HC and LBDs patients with MCI in language-related domain-specific and domain-general networks. In the task-based fMRI study, LBDs patients with MCI will show reduced activation and altered functional connectivity within and between these large-scale cortical networks compared to HC. | through study completion, an average of 1 year |
| The neural underpinning of sentence comprehension deficits - resting state data | Abnormal intra- and inter-network dynamics will be apparent in resting-state fMRI of LBDs patients with MCI as compared to HC. | through study completion, an average of 1 year |
| The neural underpinning of sentence comprehension deficits - structural MRI data | LBDs patients with MCI will show structural changes in language-related domain-specific and domain-general networks with neural degeneration as assessed by NMS-MRI as compared to HC. | through study completion, an average of 1 year |
| the long-term effects of repeated sessions of home-based tDCS on sentence comprehension - accuracy | the investigators will investigate the long-term effects of repeated sessions of home-based tDCS on sentence comprehension of syntactically complex sentences - accuracy in sentence comprehension task (as was described in outcome 1) | On the beginning of the study, after completion of two-week stimulation a eight weeks after the baseline assessment |
| the long-term effects of repeated sessions of home-based tDCS on sentence comprehension - reaction times | the investigators will investigate the long-term effects of repeated sessions of home-based tDCS on sentence comprehension of syntactically complex sentences - reaction times in sentence comprehension task (as was described in outcome 2) | On the beginning of the study, after completion of two-week stimulation a eight weeks after the baseline assessment |
| the long-term effects of repeated sessions of home-based tDCS on sentence comprehension - The neural underpinning of sentence comprehension deficits - resting state data | the investigators will investigate the long-term effects of repeated sessions of home-based tDCS on resting state data (as was described in outcome 5) | On the beginning of the study, after completion of two-week stimulation a eight weeks after the baseline assessment |
| the long-term effects of repeated sessions of home-based tDCS on sentence comprehension - The neural underpinning of sentence comprehension deficits - sentence comprehension fMRI task data | the investigators will investigate the long-term effects of repeated sessions of home-based tDCS on sentence comprehension fMRI task data (as was described in outcome 4) | On the beginning of the study, after completion of two-week stimulation a eight weeks after the baseline assessment |
| the long-term effects of repeated sessions of home-based tDCS on sentence comprehension - The neural underpinning of sentence comprehension deficits - structural MRI data | the investigators will investigate the long-term effects of repeated sessions of home-based tDCS on structural MRI data (as was described in outcome 6) | On the beginning of the study, after completion of two-week stimulation a eight weeks after the baseline assessment |
| D009422 | Nervous System Diseases |
| D003704 | Dementia |
| D009069 | Movement Disorders |
| D000080874 | Synucleinopathies |
| D019636 | Neurodegenerative Diseases |
| D019965 | Neurocognitive Disorders |
| D001523 | Mental Disorders |
| D004191 | Behavioral Disciplines and Activities |
| D004597 | Electroshock |
| D011580 | Psychological Techniques |