SU788475A1 - Method of treating infected wounds - Google Patents

Method of treating infected wounds Download PDF

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Publication number
SU788475A1
SU788475A1 SU792766903A SU2766903A SU788475A1 SU 788475 A1 SU788475 A1 SU 788475A1 SU 792766903 A SU792766903 A SU 792766903A SU 2766903 A SU2766903 A SU 2766903A SU 788475 A1 SU788475 A1 SU 788475A1
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SU
USSR - Soviet Union
Prior art keywords
wound
absorption
day
infected wounds
treating infected
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SU792766903A
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Russian (ru)
Inventor
А.В. Шапошников
А.Б. Глушко
В.С. Михалевский
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Ростовский государственный медицинский институт
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Priority to SU792766903A priority Critical patent/SU788475A1/en
Application granted granted Critical
Publication of SU788475A1 publication Critical patent/SU788475A1/en

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ним образом, чтобы манжета 8 соприкасалась со здоровым кожным покровом вблизи раны. Затем включают источник питани  1. Лазер 2 начинает излучать световую энергию, котора  передаетс  по световоду 3 в оптическую систему б, где, проход  через систему линз расфокусируетс  и попадает на здоро .вый ко сный покров. Отраженна  от здорового кожного покрова часть лазерной энергии распредел етс  в шаровом фотометре 7, Интегрируетс  и при помощи фотодатчика 9 преобразуетс  s сигнал , . поступающий на регистрирующий, прибор 10. Показани  йрибора 10 регистрируют . После этого 1ааройо.й фотометр 7 при .помощи телескопической . системы 4 устанавливают на раневую п.о,верхн.ость .в такой же последовательности замер ют степень поглощени  лазерной энергии.раневой поверхностью И по формуле 1 определ ют врем  разового обучени . После этогопровод т сеанс лазерной терапии- Врем  каждого облучени  оп-редел етс  ежедневно перед каждым сеансом.In this way, the cuff 8 contacts the healthy skin near the wound. Then, power supply 1 is turned on. Laser 2 begins to emit light energy, which is transmitted through light guide 3 to the optical system b, where the passage through the lens system is defocused and gets into healthy skin. The part of laser energy reflected from healthy skin is distributed in a spherical photometer 7, The signal s is integrated and a signal is converted by a photosensor 9. arriving at the registering device 10. The indications of the laboratory 10 are recorded. After that, a 1aAroyoy photometer 7 with a telescopic aid. The systems 4 are set to the wound p. o, the upper arm. In the same sequence, the degree of absorption of the laser energy is measured. The surface of the surface And the time of one-time training is determined by the formula 1. After this, a laser therapy session is carried out. The time of each exposure is determined daily before each session.

П р им е р. Больна  N, 23 Года. Поступила в хирургическое отделение по поводу ожога t I - II I .А степени левого .плеча и лица (6% . поверхности тела И была: подвергнута лечению пов зками С фурацилиновой мазью в течение 10 дней. ..PRI im p Sick N, 23 Years. She was admitted to the surgical department for burns t I - II I .A degree of the left shoulder and face (6% of the body surface I was: subjected to treatment with dressings With furacilin ointment for 10 days ...

Наблюдение за течением процесса . регенераций ранейой поверхности больной показало, что отдельные участки .инфицированной раневой поверхности не подвергаютс  эпителизации, что rioT ребовало применение лазерной терапии Измерение уровн  поглощ1ени  лазер ной энергии здоровым кожным покровом вблизи раны в первый день лечени  показало, чТо степень поглощени  равна 19%. Monitoring the progress of the process. regenerations of the patient's surface showed that some areas of the infected wound surface did not undergo epithelization, which required laser therapy. Measuring the level of absorption of laser energy in healthy skin near the wound on the first day of treatment showed that the extent of absorption was 19%.

. Измерение степени поглощени  лазернб .го излучени  раневой поверх .ностью показало, .что коэффициент поглощени  в этом-случае равен 26%. По формуле. V врем  .разового облучени  в первый.день Лазерной терапий оказалось , равным 14,6 мин... Measuring the degree of absorption of the laser radiation by the wound surface showed that the absorption coefficient in this case is 26%. According to the formula. V time of the first irradiation on the first day of Laser therapy turned out to be 14.6 minutes.

На второй день облучени  измерени  степеней поглощени  излучени . здоровым кожным- покровом и раневой поверхностью были повторены. Коэффициент поглощени  излучени  здоровым .кожным покровом оказалс  равным. 20%, а коэффициент поглощени  излучени  раневой пове.рхностью 28%. На основаНИИ формулы 1 Е.рем  разового облучени  Во второй День теперь уже стало равньм 14, 2 мин.On the second day of irradiation, measure the degree of absorption of radiation. healthy skin cover and wound surface were repeated. The absorption coefficient of radiation from a healthy skin was found to be equal. 20%, and the absorption coefficient of radiation by wound is 28%. On the basis of the Formula 1 formula E. One-time irradiation On the second day, it was now equal to 14.2 minutes.

На третий день облучени  оп ть бьалИ Проведены измерени  вншеобозна .ченных коэффициентов поглощени .Эти намерени  показали, что величины коэффициентов поглощени  существенно изменились,On the third day of irradiation, again, the measurements of the extrinsic absorption coefficients were carried out. These intentions showed that the magnitudes of the absorption coefficients changed significantly,

Коэффициент поглощени  излучени  здоровым кожным стал равным 22%.а коэффиииент поглсадени  изf лучени  раневой иоверхаостыо 38%. Таким образом, облучени ,« {численное  о формуле I стало равиьм 11,4. мин.The absorption coefficient of the healthy cutaneous radiation became equal to 22%. And the absorption coefficient from radiation of the wound and the upper layer was 38%. Thus, the irradiation, "{the numerical value of formula I became Rabbi 11.4. min

1&налогичньЕе иэм еренм  с последующими вычислени кш времен разового облучени  проводились каждый день перед н ач алом лече н и   при 1юмощи л азерной терааевтич€ско  установки.Все сеансьл лазерной терапии проводились со строгим соблюдением определ емого1 & a n d e n e r en enm with subsequent calculations of the ks of single irradiation times were carried out every day before the beginning of the treatment and at the first 10 ml of laser teraeutic installation. The entire laser therapy session was carried out with strict adherence to

S каждый день разового облучени . После 5-6 сеансов было отмечено оживление гранул ций. и краевой эпителйзацни раневой поверхности «Всего больиа  получила 10 сеансов. РанаS every day a single exposure. After 5–6 sessions, revitalization of the granulation was noted. and marginal epithelialization of the wound surface “In total, bologia received 10 sessions. Wound

0 зажила йа десйтый день.0 ya healed tenth day.

Предлагаемый способ позвол ет сократить Сроки лечений в 1,5 раза по сравнению с известным. Так, среднее врем  Лечени  известным способом составл ет 15-20.дней, а предлагаемым способом 10 дней.The proposed method makes it possible to shorten the treatment time by 1.5 times as compared with the known. Thus, the average treatment time in a known manner is 15-20 days, and the proposed method is 10 days.

Claims (1)

1. Плетнев С.Д..,.Дев тков Н.Д. и Др. Газовые лазеры в экспериментальной -и клинической онкологии. М ., Медицина, 1978, с. 184.1. Pletnev SD.,. Dev tkov N. D. and etc. Gas lasers in experimental and clinical oncology. M., Medicine, 1978, p. 184.
SU792766903A 1979-06-06 1979-06-06 Method of treating infected wounds SU788475A1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4580557A (en) * 1983-08-22 1986-04-08 Laserscope Surgical laser system with multiple output devices
US4844069A (en) * 1985-07-10 1989-07-04 Kei Mori Light rays radiation device for medical treatment
RU2527175C1 (en) * 2013-03-25 2014-08-27 Федеральное государственное бюджетное учреждение "Научно-исследовательский институт онкологии" Сибирского отделения Российской академии медицинских наук (ФГБУ "НИИ онкологии" СО РАМН) Method of treating infected wounds and fistulas in oncological patients

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4580557A (en) * 1983-08-22 1986-04-08 Laserscope Surgical laser system with multiple output devices
US4844069A (en) * 1985-07-10 1989-07-04 Kei Mori Light rays radiation device for medical treatment
RU2527175C1 (en) * 2013-03-25 2014-08-27 Федеральное государственное бюджетное учреждение "Научно-исследовательский институт онкологии" Сибирского отделения Российской академии медицинских наук (ФГБУ "НИИ онкологии" СО РАМН) Method of treating infected wounds and fistulas in oncological patients

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