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Kroesche, M.

Publications and source records attributed to Kroesche, M..

2 recordsLinked to original sources

Altered Cortical Network Dynamics during Observing and Preparing Action in Patients with Corticobasal Syndrome

Besides parkinsonism, higher order cortical dysfunctions such as apraxia are hallmarks of the corticobasal syndrome (CBS). To date, little is known about the electrophysiological underpinnings of these symptoms. To shed more light on the pathophysiology of CBS, we recorded the magnetoencephalogram of 17 CBS patients and 20 age-matched controls engaged in an observe-to-imitate task. The task involved the display of a tool-use video in first person view (action observation), a written instruction to withhold movement until the presentation of a Go cue (movement preparation), and unilateral tool-use imitation. We investigated modulations of spectral power on the source level. Action observation was associated with an event-related desynchronization in the beta-band (13-30Hz), which was weaker in CBS patients than in healthy controls. The group effect localized to superior parietal, primary motor, premotor and inferior frontal cortex bilaterally. While participants awaited the Go cue, beta power was again suppressed in the hemisphere contralateral to movement, and the rate of suppression correlated with reaction time. This modulation, too, was weaker in the CBS group. Immediately before movement onset, however, beta power was similar in both groups. Our results reveal that action observation triggers beta suppression, likely reflecting motor cortical disinhibition, which is reduced in CBS patients. This pathological alteration might be a neural correlate of a selective deficit in the embedding of observed action into a motor representation (visuo-motor mapping). The suboptimal timing of the beta-power suppression to the upcoming Go cue presumably reflects a deficit in learning the trials temporal structure rather than a deficit in movement initialization. HighlightsO_LIAction observation elicits a suppression of cortical beta power. C_LIO_LIThis suppression is diminished in CBS patients relative to controls. C_LIO_LIThe timing of beta desynchronization to an upcoming Go cue is impaired in CBS patients. C_LIO_LINo evidence for an alteration of movement initialization in CBS patients. C_LI

neuroscience↗

Slowing of Frontocentral Beta Oscillations in Atypical Parkinsonism

Diagnosis of atypical parkinsonian syndromes mostly relies on clinical presentation as well as structural and molecular brain imaging. It has not been investigated whether cortical oscillatory activity exhibits features distinguishing these syndromes. Therefore, we measured resting-state magnetoencephalography in 13 patients with corticobasal syndrome, 10 patients with progressive supranuclear palsy, 23 patients with idiopathic Parkinsons disease and 23 healthy controls. We compared spectral power as well as amplitude and frequency of power peaks between the groups. Atypical Parkinsonism was associated with spectral slowing, distinguishing both corticobasal syndrome and progressive supranuclear palsy from age-matched healthy controls and Parkinsons disease. Patients with atypical Parkinsonism showed a shift of beta peaks (13-30 Hz) towards lower frequencies in frontal and central areas bilaterally. A concomitant increase in theta/alpha power relative to controls was observed in both atypical parkinsonian syndromes and in Parkinsons disease. Our results demonstrate that slowing of frontocentral beta oscillations is characteristic of atypical Parkinsonism. Spectral slowing with a different topography has previously been observed in other neurodegenerative disorders, such as Alzheimers disease, suggesting that spectral slowing might be an electrophysiological marker of cortical neurodegeneration. As such, it might support differential diagnosis of parkinsonian syndromes in the future. HighlightsO_LISlowing of beta oscillations distinguishes atypical parkinsonian syndromes from healthy controls and idiopathic Parkinsons disease C_LIO_LISpectral slowing is most pronounced in frontocentral areas C_LIO_LIBeta oscillations are shifted towards lower frequencies independent of their amplitude C_LI

neuroscience↗