Technique of automated hypnogram construction; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 5
| Parent link: | Bulletin of the Tomsk Polytechnic University/ Tomsk Polytechnic University (TPU).— , 2006-2007 Vol. 311, № 5.— 2007.— [P. 123-126] |
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| Autor principal: | |
| Otros Autores: | , |
| Sumario: | Заглавие с титульного листа Электронная версия печатной публикации The technique of automated sleep stage recognition and hypnogram construction has been considered. For partition of initial polysomnogram by segments obtained as a result of patient sleep monitoring the signal energy is analyzed using nonlinear energy controller. Frequency weighted energy is calculated for all registered signals then averaging and segmentation occur according to monitored signals behavior. Secondary index vector which is used at transition from segments to fixed duration periods is formed for segments. One or another sleep stage is finally assigned to the period by correlation analysis. Accuracy of the developed algorithm is connected with quantity of considered secondary indices, maximally detailed description of sleep stage characteristics and realization of training by manually prepared examples |
| Lenguaje: | inglés |
| Publicado: |
2007
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| Colección: | Control, computer engineeringand information science |
| Materias: | |
| Acceso en línea: | http://www.lib.tpu.ru/fulltext/v/Bulletin_TPU/2007/v311eng/i5/28.pdf |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=183104 |
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| 200 | 1 | |a Technique of automated hypnogram construction |b Electronic resource |f E. S. Zakharov, P. P. Kravchenko, A. A. Skomorokhov | |
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| 225 | 1 | |a Control, computer engineeringand information science | |
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| 300 | |a Электронная версия печатной публикации | ||
| 320 | |a [Bibliography: p. 126 (7 titles)] | ||
| 330 | |a The technique of automated sleep stage recognition and hypnogram construction has been considered. For partition of initial polysomnogram by segments obtained as a result of patient sleep monitoring the signal energy is analyzed using nonlinear energy controller. Frequency weighted energy is calculated for all registered signals then averaging and segmentation occur according to monitored signals behavior. Secondary index vector which is used at transition from segments to fixed duration periods is formed for segments. One or another sleep stage is finally assigned to the period by correlation analysis. Accuracy of the developed algorithm is connected with quantity of considered secondary indices, maximally detailed description of sleep stage characteristics and realization of training by manually prepared examples | ||
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| 461 | 1 | |0 (RuTPU)RU\TPU\book\169973 |t Bulletin of the Tomsk Polytechnic University |f Tomsk Polytechnic University (TPU) |d 2006-2007 | |
| 463 | 1 | |0 (RuTPU)RU\TPU\book\198425 |t Vol. 311, № 5 |v [P. 123-126] |d 2007 |p 132 p. | |
| 610 | 1 | |a hypnograms | |
| 610 | 1 | |a automated recognition | |
| 610 | 1 | |a sleep | |
| 610 | 1 | |a segments | |
| 610 | 1 | |a polysomnograms | |
| 610 | 1 | |a monitoring | |
| 610 | 1 | |a patients | |
| 610 | 1 | |a signals | |
| 610 | 1 | |a energy controllers | |
| 610 | 1 | |a frequency weighted energy | |
| 610 | 1 | |a vectors | |
| 610 | 1 | |a correlation analysis | |
| 610 | 1 | |a secondary indices | |
| 610 | 1 | |a examples | |
| 610 | 1 | |a электронный ресурс | |
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| 700 | 1 | |a Zakharov |b E. S. | |
| 701 | 1 | |a Kravchenko |b P. P. | |
| 701 | 1 | |a Skomorokhov |b A. A. | |
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