KANOVSKY, Petr, Raymond ROSALES, Pavel OTRUBA, Martin NEVRLY, Lenka HVIZDOSOVA, Robert OPAVSKY, Michaela KAISEROVA, Pavel HOK, Katerina MENSIKOVA, Petr HLUSTIK and Martin BAREŠ. Contemporary clinical neurophysiology applications in dystonia. Journal of Neural Transmission. WIEN: SPRINGER WIEN, 2021, vol. 128, No 4, p. 509-519. ISSN 0300-9564. Available from: https://dx.doi.org/10.1007/s00702-021-02310-6.
Other formats:   BibTeX LaTeX RIS
Basic information
Original name Contemporary clinical neurophysiology applications in dystonia
Authors KANOVSKY, Petr (203 Czech Republic, guarantor), Raymond ROSALES, Pavel OTRUBA (203 Czech Republic), Martin NEVRLY (203 Czech Republic), Lenka HVIZDOSOVA (203 Czech Republic), Robert OPAVSKY (203 Czech Republic), Michaela KAISEROVA (203 Czech Republic), Pavel HOK (203 Czech Republic), Katerina MENSIKOVA (203 Czech Republic), Petr HLUSTIK (203 Czech Republic) and Martin BAREŠ (203 Czech Republic, belonging to the institution).
Edition Journal of Neural Transmission, WIEN, SPRINGER WIEN, 2021, 0300-9564.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 30210 Clinical neurology
Country of publisher Austria
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 3.850
RIV identification code RIV/00216224:14110/21:00121775
Organization unit Faculty of Medicine
Doi http://dx.doi.org/10.1007/s00702-021-02310-6
UT WoS 000618593300001
Keywords in English Dystonia; Neurophysiology; Network disorder; Brain plasticity
Tags 14110127, rivok
Changed by Changed by: Mgr. Tereza Miškechová, učo 341652. Changed: 15/6/2021 09:44.
Abstract
The complex phenomenological understanding of dystonia has transcended from the clinics to genetics, imaging and neurophysiology. One way in which electrophysiology will impact into the clinics are cases wherein a dystonic clinical presentation may not be typical or a "forme fruste" of the disorder. Indeed, the physiological imprints of dystonia are present regardless of its clinical manifestation. Underpinnings in the understanding of dystonia span from the peripheral, segmental and suprasegmental levels to the cortex, and various electrophysiological tests have been applied in the course of time to elucidate the origin of dystonia pathophysiology. While loss of inhibition remains to be the key finding in this regard, intricacies and variabilities exist, thus leading to a notion that perhaps dystonia should best be gleaned as network disorder. Interestingly, the complex process has now spanned towards the understanding in terms of networks related to the cerebellar circuitry and the neuroplasticity. What is evolving towards a better and cohesive view will be neurophysiology attributes combined with structural dynamic imaging. Such a sound approach will significantly lead to better therapeutic modalities in the future.
PrintDisplayed: 25/4/2024 09:30