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Howell, M. J.

Publications and source records attributed to Howell, M. J..

3 recordsLinked to original sources

Sleep firing rate homeostasis is disrupted in mild parkinsonism

Sleep-associated downscaling of neuronal firing, i.e., firing rate homeostasis (FRH), is essential for restorative sleep. Sleep dysfunction is common in Parkinsons disease (PD), but FRH has not been investigated. Here, using a within-subject design in the nonhuman primate model of PD, we report that thalamocortical FRH is disrupted in parkinsonism. These findings can inform therapeutic approaches tailored towards normalizing FRH to reestablish restorative sleep in PD.

neuroscience↗

Excessive cortical beta oscillations are associated with slow-wave sleep dysfunction in mild parkinsonism

Increasing evidence associates slow-wave sleep (SWS) dysfunction with neurodegeneration. Using a within-subject design in the nonhuman primate model of Parkinsons disease (PD), we found that reduced SWS quantity in mild parkinsonism was accompanied by elevated beta and reduced delta power during SWS in the motor cortex. Our findings support excessive beta oscillations as a mechanism for SWS dysfunction and will inform development of neuromodulation therapies for enhancing SWS in PD.

neuroscience↗

REM Sleep Movements in Parkinson's Disease: Is the Basal Ganglia Engaged?

To elucidate the role of the basal ganglia during REM sleep movements in Parkinsons disease (PD) we recorded pallidal neural activity from four PD patients. Unlike desynchronization commonly observed during wakeful movements, beta oscillations (13-35 Hz) synchronized during REM sleep movements; furthermore, high-frequency oscillations (150-350 Hz) synchronized during movement irrespective of sleep-wake states. Our results demonstrate differential engagement of the basal ganglia during REM sleep and awake movements.

neuroscience↗