Fully automatic multiresolution idealization for filtered ion channel recordings:Flickering event detection

Pein, F. and Tecuapetla-Gomez, I. and Schutte, O.M. and Steinem, C. and Munk, A. (2018) Fully automatic multiresolution idealization for filtered ion channel recordings:Flickering event detection. IEEE Transactions on Nanobioscience, 17 (3). pp. 300-320. ISSN 1536-1241

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Abstract

We propose a new model-free segmentation method, JULES, which combines recent statistical multiresolution techniques with local deconvolution for idealization of ion channel recordings. The multiresolution criterion takes into account scales down to the sampling rate enabling the detection of flickering events, i.e., events on small temporal scales, even below the filter frequency. For such small scales the deconvolution step allows for a precise determination of dwell times and, in particular, of amplitude levels, a task which is not possible with common thresholding methods. This is confirmed theoretically and in a comprehensive simulation study. In addition, JULES can be applied as a preprocessing method for a refined hidden Markov analysis. Our new methodology allows us to show that gramicidin A flickering events have the same amplitude as the slow gating events. JULES is available as an R function jules in the package clampSeg.

Item Type:
Journal Article
Journal or Publication Title:
IEEE Transactions on Nanobioscience
Uncontrolled Keywords:
/dk/atira/pure/subjectarea/asjc/2700/2701
Subjects:
?? YES - EXTERNALLY FUNDEDNOBIOMEDICAL ENGINEERINGBIOENGINEERINGPHARMACEUTICAL SCIENCEBIOTECHNOLOGYCOMPUTER SCIENCE APPLICATIONSELECTRICAL AND ELECTRONIC ENGINEERINGMEDICINE (MISCELLANEOUS) ??
ID Code:
194379
Deposited By:
Deposited On:
24 May 2023 12:45
Refereed?:
Yes
Published?:
Published
Last Modified:
21 Sep 2023 03:26