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Axon regeneration in the damaged CNS: Regeneration of axons after CNS damage is blocked by several molecules in the environment and by loss of intrinsic regeneration ability, We modify the environment to make it more permissive and modify axonal properties to improve regeneration. Plasticity is the main mechanism for functional recovery after damage to the nervous system. In childhood plasticity is largely turned off by extracellular matrix structures called perineeuronal nets. By moduating their function we can improve functional recovery and memory in the adult CNS. Interfacing the nervous system with electronics: We are developing a microchannel interface prosthesis which allows permanent extracellular recording from axons. This technology is being developed for control of bladder function in paralyzed human and veterinary patients, and for controlling prosthetic limbs.
Axon regeneration in the damaged CNS: Regeneration of axons after CNS damage is blocked by several molecules in the environment and by loss of intrinsic regeneration ability, We modify the environment to make it more permissive and modify axonal properties to improve regeneration. Plasticity is the main mechanism for functional recovery after damage to the nervous system. In childhood plasticity is largely turned off by extracellular matrix structures called perineeuronal nets. By moduating their function we can improve functional recovery and memory in the adult CNS. Interfacing the nervous system with electronics: We are developing a microchannel interface prosthesis which allows permanent extracellular recording from axons. This technology is being developed for control of bladder function in paralyzed human and veterinary patients, and for controlling prosthetic limbs.
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Nature reviews Neuroscienceno. 10 (2024): 649-667
Florian Buerger,Daanya Salmanullah,Lorrin Liang, Victoria Gauntner,Kavita Krueger, Maggie Qi,Vineeta Sharma, Alexander Rubin, David Ball,Katharina Lemberg,Ken Saida,Lea Maria Merz, Sanja Sever,Biju Issac,Liang Sun,Sergio Guerrero-Castillo, Nephrotic Syndrome Study Network (NEPTUNE), Alexis C Gomez,Michelle T McNulty,Matthew G Sampson,Mohamed H Al-Hamed,Mohammed M Saleh,Mohamed Shalaby,Jameela Kari,James P Fawcett,Friedhelm Hildebrandt,Amar J Majmundar
Journal of the American Society of Nephrologyno. 10S (2024)
Angela Meccariello, Shibo Hou,Serafima Davydova,James Daniel Fawcett, Alexandra Siddall,Philip T. Leftwich,Flavia Krsticevic,Philippos Aris Papathanos,Nikolai Windbichler
Nature communicationsno. 1 (2024): 372-372
Kornelia Szebenyi,Ingrid Vargova,Veselina Petrova,Jana Tureckova,George M. Gibbons,Monika Rehorova, Mai Abdelgawad, Alexandra Sandor,Dana Marekova,Jessica C. F. Kwok,Pavla Jendelova,James W. Fawcett,Andras Lakatos
Brain Communicationsno. 4 (2024)
Jana Svobodova Burianova,Jiri Ruzicka, Lenka Gmitterkova, Tereza Spundova, Tereza Klausova,Noelia Martinez-Varea,Michaela Kralikova,Rostislav Turecek,Pavla Jendelova,Jessica Kwok,James Fawcett
IBRO Neuroscience Reports (2023): S504-S505
BIOMATERIALS (2023)
Analytica chimica acta (2023): 341791-341791
biorxiv(2023)
Kristyna Karova, Zuzana Polcanova,Stepanka Suchankova, Lydia Knight,Bart Nieuwenhuis, Radovan Holota,Vit Herynek,Lucia Machova Urdzikova,Rostislav Turecek,Jessica C.F. Kwok,Joost Verhaagen,Richard Eva,James W Fawcett,Pavla Jendelova
bioRxiv (Cold Spring Harbor Laboratory) (2023)
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#Papers: 508
#Citation: 43784
H-Index: 104
G-Index: 199
Sociability: 7
Diversity: 4
Activity: 92
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