Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy

The simple and effective method of the leakage test in thoracic surgery using laser photo-acoustic leak detector «LaserGasTest» was suggested and tested in experiment on mongrels. Sulfur hexafluoride used for the work of leak detector is an inert and biologically harmless gas of the 4th class of dan...

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Autores principales: E. B. Topolnitskiy, V. A. Kapitanov, Yu. N. Ponomarev, N. A. Shefer, N. A. Krivova
Formato: article
Lenguaje:RU
Publicado: Scientific Сentre for Family Health and Human Reproduction Problems 2013
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Acceso en línea:https://doaj.org/article/22c25a96588f496b998895c905ee8e97
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spelling oai:doaj.org-article:22c25a96588f496b998895c905ee8e972021-11-23T06:14:29ZAir-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy2541-94202587-9596https://doaj.org/article/22c25a96588f496b998895c905ee8e972013-09-01T00:00:00Zhttps://www.actabiomedica.ru/jour/article/view/1663https://doaj.org/toc/2541-9420https://doaj.org/toc/2587-9596The simple and effective method of the leakage test in thoracic surgery using laser photo-acoustic leak detector «LaserGasTest» was suggested and tested in experiment on mongrels. Sulfur hexafluoride used for the work of leak detector is an inert and biologically harmless gas of the 4th class of danger and its concentration in medical ventilation apparatus does not exceed 5000 mg/m3 (0.077 %). The proposed technique provides real-time high-frequency determination of location and size of leakage.E. B. TopolnitskiyV. A. KapitanovYu. N. PonomarevN. A. SheferN. A. KrivovaScientific Сentre for Family Health and Human Reproduction Problemsarticlethoracic surgeryairtightness suturesulfur hexafluoridelaser optical-acoustic leak detectorScienceQRUActa Biomedica Scientifica, Vol 0, Iss 5, Pp 154-157 (2013)
institution DOAJ
collection DOAJ
language RU
topic thoracic surgery
airtightness suture
sulfur hexafluoride
laser optical-acoustic leak detector
Science
Q
spellingShingle thoracic surgery
airtightness suture
sulfur hexafluoride
laser optical-acoustic leak detector
Science
Q
E. B. Topolnitskiy
V. A. Kapitanov
Yu. N. Ponomarev
N. A. Shefer
N. A. Krivova
Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
description The simple and effective method of the leakage test in thoracic surgery using laser photo-acoustic leak detector «LaserGasTest» was suggested and tested in experiment on mongrels. Sulfur hexafluoride used for the work of leak detector is an inert and biologically harmless gas of the 4th class of danger and its concentration in medical ventilation apparatus does not exceed 5000 mg/m3 (0.077 %). The proposed technique provides real-time high-frequency determination of location and size of leakage.
format article
author E. B. Topolnitskiy
V. A. Kapitanov
Yu. N. Ponomarev
N. A. Shefer
N. A. Krivova
author_facet E. B. Topolnitskiy
V. A. Kapitanov
Yu. N. Ponomarev
N. A. Shefer
N. A. Krivova
author_sort E. B. Topolnitskiy
title Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
title_short Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
title_full Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
title_fullStr Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
title_full_unstemmed Air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
title_sort air-tightness evaluation in thoracic surgery with use of laser optical-acoustic spectroscopy
publisher Scientific Сentre for Family Health and Human Reproduction Problems
publishDate 2013
url https://doaj.org/article/22c25a96588f496b998895c905ee8e97
work_keys_str_mv AT ebtopolnitskiy airtightnessevaluationinthoracicsurgerywithuseoflaseropticalacousticspectroscopy
AT vakapitanov airtightnessevaluationinthoracicsurgerywithuseoflaseropticalacousticspectroscopy
AT yunponomarev airtightnessevaluationinthoracicsurgerywithuseoflaseropticalacousticspectroscopy
AT nashefer airtightnessevaluationinthoracicsurgerywithuseoflaseropticalacousticspectroscopy
AT nakrivova airtightnessevaluationinthoracicsurgerywithuseoflaseropticalacousticspectroscopy
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