Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Sarah Stalke"'
Autor:
Johannes Haubold, Ke Zeng, Sepehr Farhand, Sarah Stalke, Hannah Steinberg, Denise Bos, Mathias Meetschen, Anisa Kureishi, Sebastian Zensen, Tim Goeser, Sandra Maier, Michael Forsting, Felix Nensa
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-12 (2023)
Abstract The aim of the study was to evaluate the impact of the newly developed Similar patient search (SPS) Web Service, which supports reading complex lung diseases in computed tomography (CT), on the diagnostic accuracy of residents. SPS is an ima
Externí odkaz:
https://doaj.org/article/ab15be3d5a064ff5a8fb94d62d9d9b1e
Autor:
Carmen Valenzuela, Aytug K. Kiper, Alicia de la Cruz, Wendy González, Susanne Rinné, Mauricio Bedoya, David Ramírez, Teresa González, Stefanie Marzian, Niels Decher, Bárbara A Arévalo Ramos, Sarah Stalke, Alba Vera-Zambrano, José C E Márquez Montesinos, Diego A. Peraza
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
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© 2021 The Authors.
[Background and Purpose]: Local anaesthetics block sodium and a variety of potassium channels. Although previous studies identified a residue in the pore signature sequence together with three residues in the S6 segment as a
[Background and Purpose]: Local anaesthetics block sodium and a variety of potassium channels. Although previous studies identified a residue in the pore signature sequence together with three residues in the S6 segment as a
Autor:
Aytug K, Kiper, Mauricio, Bedoya, Sarah, Stalke, Stefanie, Marzian, David, Ramírez, Alicia, de la Cruz, Diego A, Peraza, Alba, Vera-Zambrano, José C E, Márquez Montesinos, Bárbara A, Arévalo Ramos, Susanne, Rinné, Teresa, Gonzalez, Carmen, Valenzuela, Wendy, Gonzalez, Niels, Decher
Publikováno v:
British journal of pharmacologyREFERENCES. 178(15)
Local anaesthetics block sodium and a variety of potassium channels. Although previous studies identified a residue in the pore signature sequence together with three residues in the S6 segment as a putative binding site, the precise molecular basis