Automated frequency analysis of synchronous and diffuse sleep spindles

被引:11
|
作者
Huupponen, E
Saastamoinen, A
Niemi, J
Virkkala, J
Hasan, J
Värri, A
Himanen, SL
机构
[1] Tampere Univ Technol, Signal Proc Lab, FIN-33101 Tampere, Finland
[2] Tampere Univ Hosp, Dept Clin Neurophysiol, Tampere, Finland
[3] Finnish Inst Occupat Hlth, Sect Clin Neurosci, Helsinki, Finland
关键词
EEG; sleep spindles; spindle frequency; multi-channel spindle detection;
D O I
10.1159/000085821
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Sleep spindles have different properties in different localizations in the cortex. Objectives: First main objective was to develop an amplitude- independent multi-channel spindle detection method. Secondly the method was applied to study the anteroposterior frequency differences of pure synchronous ( visible bilaterally, either frontopolarly or centrally) and diffuse ( visible bilaterally both frontopolarly and centrally) sleep spindles. Methods: A previously presented spindle detector based on the fuzzy reasoning principle and a level detector were combined to form a multi-channel spindle detector. Results: The spindle detector had a 76.17% true positive rate and 0.93% false-positive rate. Pure central spindles were faster and pure frontal spindles were slower than diffuse spindles measured simultaneously from both locations. Conclusions: The study of frequency relations of spindles might give new information about thalamocortical sleep spindle generating mechanisms. Copyright (C) 2005 S. Karger AG, Basel.
引用
收藏
页码:256 / 264
页数:9
相关论文
共 50 条
  • [41] Frequency-temporal characteristics of sleep spindles in IGE with variable phenotypes in adults
    Grebenyuk, O., V
    Alifirova, V. M.
    Svetlik, M., V
    Levko, A. N.
    Kataeva, N. G.
    BYULLETEN SIBIRSKOY MEDITSINY, 2019, 18 (02): : 52 - 59
  • [42] Synchronous automated analysis of spirogram and cardiointervalogram
    Kalantar V.A.
    Sivachev A.V.
    Biomedical Engineering, 1999, 33 (4) : 203 - 205
  • [43] ADVANCED ANALYSIS OF SLEEP SPINDLES: FROM HEALTHY TO DAMAGED BRAINS
    Mensen, A.
    Poryazova, R.
    Huber, R.
    Bassetti, C.
    SLEEP MEDICINE, 2017, 40 : E220 - E220
  • [44] Sleep in children, sleep spindles, and the metrics of memory
    Dijk, Derk-Jan
    JOURNAL OF SLEEP RESEARCH, 2013, 22 (02) : 119 - 120
  • [45] THE EFFECTS OF SLEEP RESTRICTION ON SLEEP SPINDLES IN ADOLESCENTS
    Papalambros, N. A.
    Ong, J.
    Lo, J.
    Zee, P. C.
    Chee, M. W.
    SLEEP, 2017, 40 : A13 - A13
  • [46] Adaptive spectral analysis of Sleep Spindles based on subspace tracking
    Caspary, O
    Nus, P
    PROCEEDINGS OF THE 18TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOL 18, PTS 1-5, 1997, 18 : 976 - 977
  • [47] Response to "Sleep spindles: An overview"
    Himanen, SL
    Hasan, J
    SLEEP MEDICINE REVIEWS, 2004, 8 (02) : 149 - 149
  • [48] Sleep Spindles and Schizophrenia Genetics
    Purcell, Shaun
    NEUROPSYCHOPHARMACOLOGY, 2017, 42 : S36 - S37
  • [49] SLEEP SPINDLES: MECHANISMS AND FUNCTIONS
    Fernandez, Laura M. J.
    Luethi, Anita
    PHYSIOLOGICAL REVIEWS, 2020, 100 (02) : 805 - 868
  • [50] ARMA Modelling of Sleep Spindles
    da Costa, Joao Caldas
    Ortigueira, Manuel Duarte
    Batista, Arnaldo
    TECHNOLOGICAL INNOVATION FOR SUSTAINABILITY, 2011, 349 : 341 - +