Accès ouvert
2026
article
OpenAlex
Henry M. Skelton, N. Hyman, Alejandra M. Fernandez, Emma Acerbo et autres
Exercise has been extensively studied in Parkinson's Disease, with a particular focus on the potential for neuroprotection that has been demonstrated in animal models. While this preclinical work has provided insight into the underlying molecular mechanisms, it has not addressed the neurophysiological …
us
(code pays fourni par la source)
Accès ouvert
2025
article
OpenAlex
Florian Missey, Emma Acerbo, Adam S. Dickey, Jan Trajlínek et autres
Accès ouvert
2025
article
OpenAlex
Emma Acerbo, Thomas E. Eggers, Alejandra M. Fernandez, Robert E. Gross et autres
Epilepsy affects approximately 1 % of the global population, presenting as a complex and heterogeneous disorder characterized by spontaneous, recurrent seizures. Focal onset seizures comprise half of all epilepsy cases. Mesial temporal lobe epilepsy (MTLE), the most prevalent form of focal seizures …
us
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Florian Missey, Emma Acerbo, Adam S. Dickey, Jan Trajlínek et autres
Medication refractory focal epilepsy creates a significant challenge, with approximately 30% of patients ineligible for surgery due to the involvement of eloquent cortex in the epileptogenic network. For such patients with limited surgical options, electrical neuromodulation represents a promising alternative therapy. In …
fr, cz, us, hu, it, ch, se
(code pays fourni par la source)
Accès ouvert
2024
article
OpenAlex
Henry M. Skelton, Dayton P. Grogan, Amrutha Kotlure, Ken Berglund et autres
us
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Matthew Stern, Eric R. Cole, Claire‐Anne Gutekunst, Jenny Jie Yang et autres
During cortical spreading depolarization (CSD), neurons exhibit a dramatic increase in cytosolic calcium, which may be integral to CSD-mediated seizure termination. This calcium increase greatly exceeds that during seizures, suggesting the calcium source may not be solely extracellular. Thus, we sought to …
us
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Mohammad S.E. Sendi, Eric R. Cole, Brigitte Piallat, Charles A. Ellis et autres
us, fr
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Mohammad SE Sendi, Eric R. Cole, Brigitte Piallat, Charles A. Ellis et autres
Abstract Brain stimulation holds promise for treating brain disorders, but personalizing therapy remains challenging. Effective treatment requires establishing a functional link between stimulation parameters and brain response, yet traditional methods like random sampling (RS) are inefficient and costly. To overcome this, we …
us, fr
(code pays fourni par la source)
Accès ouvert
2024
article
OpenAlex
Mark J. Connolly, Sujin Jiang, Lim C. Samuel, Claire‐Anne Gutekunst et autres
Temporal lobe epilepsy (TLE) is the most common form of drug-resistant epilepsy. A major focus of human and animal studies on TLE network has been the limbic circuit. However, there is also evidence suggesting an active role of the basal ganglia in …
us
(code pays fourni par la source)
Accès ouvert
2024
article
OpenAlex
Mark J. Connolly, Brigitte Piallat, Mohammad S.E. Sendi, Babak Mahmoudi et autres
seizure models. To further evaluate its effects on a pre-clinical model, we characterized the effect of unilateral ADMES in an NHP model of temporal lobe seizures induced by intra-hippocampal injection of penicillin (PCN). Four non-human primates were used for this study in …
us, fr
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Henry M. Skelton, Dayton P. Grogan, Amrutha Kotlure, Ken Berglund et autres
Abstract Exercise is widely studied as a therapy in mouse models of neurological disease. However, the established techniques for exercise in mice are not ideally suited toward motor deficient disease models, nor do they facilitate active measurement of neurophysiology with tethered assays. …
us
(code pays fourni par la source)
Accès ouvert
2024
preprint
OpenAlex
Emma Acerbo, Boris Botzanowski, Damián Dellavale, Matthew Stern et autres
Abstract Temporal Interference (TI) is an emerging method to non-invasively stimulate deep brain structures. This innovative technique is increasingly recognized for its potential applications in the treatment of various neurological disorders, including epilepsy, depression, and Alzheimer’s disease. However, several drawbacks to the …
us, fr, ch, cz
(code pays fourni par la source)