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 <front>
  <journal-meta>
   <journal-id journal-id-type="publisher-id">Journal of New Medical Technologies. eJournal</journal-id>
   <journal-title-group>
    <journal-title xml:lang="en">Journal of New Medical Technologies. eJournal</journal-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Вестник новых медицинских технологий. Электронный журнал</trans-title>
    </trans-title-group>
   </journal-title-group>
   <issn publication-format="print">2075-4094</issn>
  </journal-meta>
  <article-meta>
   <article-id pub-id-type="publisher-id">3579</article-id>
   <article-id pub-id-type="doi">10.12737/5812</article-id>
   <article-categories>
    <subj-group subj-group-type="toc-heading" xml:lang="ru">
     <subject>ОБЗОРЫ ЛИТЕРАТУРЫ</subject>
    </subj-group>
    <subj-group subj-group-type="toc-heading" xml:lang="en">
     <subject>LITERATURE REVIEWS</subject>
    </subj-group>
    <subj-group>
     <subject>ОБЗОРЫ ЛИТЕРАТУРЫ</subject>
    </subj-group>
   </article-categories>
   <title-group>
    <article-title xml:lang="en">Action Mechanisms of Various Lasers and the Differentiated Indications to their Application (Review)</article-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Механизмы действия различных лазеров и дифференцированные показания к их применению (обзор литературы)</trans-title>
    </trans-title-group>
   </title-group>
   <contrib-group content-type="authors">
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Шептий</surname>
       <given-names>О. В.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Sheptiy</surname>
       <given-names>O. В.</given-names>
      </name>
     </name-alternatives>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Круглова</surname>
       <given-names>Л. С.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Kruglova</surname>
       <given-names>L. С.</given-names>
      </name>
     </name-alternatives>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Котенко</surname>
       <given-names>К. В.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Kotenko</surname>
       <given-names>K. В.</given-names>
      </name>
     </name-alternatives>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Корчажкина</surname>
       <given-names>Н. Б.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Korchazhkina</surname>
       <given-names>N. Б.</given-names>
      </name>
     </name-alternatives>
    </contrib>
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Яменсков</surname>
       <given-names>В. В.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Yamenskov</surname>
       <given-names>V. В.</given-names>
      </name>
     </name-alternatives>
    </contrib>
   </contrib-group>
   <pub-date publication-format="print" date-type="pub" iso-8601-date="2014-09-26T00:00:00+04:00">
    <day>26</day>
    <month>09</month>
    <year>2014</year>
   </pub-date>
   <pub-date publication-format="electronic" date-type="pub" iso-8601-date="2014-09-26T00:00:00+04:00">
    <day>26</day>
    <month>09</month>
    <year>2014</year>
   </pub-date>
   <volume>8</volume>
   <issue>1</issue>
   <fpage>1</fpage>
   <lpage>9</lpage>
   <self-uri xlink:href="https://zh-szf.ru/en/nauka/article/3579/view">https://zh-szf.ru/en/nauka/article/3579/view</self-uri>
   <abstract xml:lang="ru">
    <p>На сегодняшний день методы лазерного воздействия применяются на коже намного чаще, чем на любых других тканях, что обусловлено  исключительным разнообразием и распространенностью кожной патологии и различных косметических дефектов, а так же относительной простотой выполнения процедур, что связано с поверхностным расположением объектов, требующих лечения.Лазерное омоложение  можно отнести к наиболее эффективным и универсальным методам борьбы с инволюционными изменениями кожи. Целевыми хромофорами для лазерного излучения являются практически все химические структуры кожи – вода, гемоглобин, меланин, коллаген. Селективность лазерного воздействия позволяет подобрать индивидуальную схему коррекции инволюционных нарушений кожи при любом типе ее старения кожи. Широкая востребованность лазерных процедур, их высокая эффективность диктуют необходимость обобщения имеющихся современных данных о преимуществах и особенностях применения, а так же по тактике ведения пациентов, что в значительной степени может помочь специалистам лазерной медицины в выборе наиболее рациональной технологии с корректным соотношением эффективности и безопасности. &#13;
В данной обзорной статье приводятся современные данные о методике проведения лазерной шлифовки кожи с помощью СО2-лазера с описанием поэтапного ведения пациентов. Подробно описываются прогнозируемые побочные эффекты, нежелательные явления и методы их профилактики и коррекции.</p>
   </abstract>
   <trans-abstract xml:lang="en">
    <p>To date, the methods of laser irradiation applied to the skin is much more frequent than in any other tissues, due to an exceptional variety and prevalence of skin diseases and a variety of cosmetic defects, as well as the relative simplicity of the procedures, which is associated with a surface location of objects requiring lecheniya.Lazernoe rejuvenation can be attributed to the most efficient and versatile methods of struggle with involutional changes in the skin. Target chromophores for laser radiation are almost all the chemical structures of the skin - the water, hemoglobin, melanin, collagen. The selectivity of the laser action allows you to choose individual scheme correction of involutional disorders of the skin in any type of aging skin. Wide demand for laser treatments, their high efficiency dictate the need to synthesize the available current data on the benefits and features of the application, as well as to the tactics of patients that can benefit greatly assist the individual laser medicine in the choice of the most efficient technology with the correct ratio of efficacy and safety. &#13;
In this review article provides current data on the method of laser skin resurfacing using a CO2 laser with a description of the phase of patient management. Describes in detail the predicted side effects, adverse events, and methods for their prevention and correction.</p>
   </trans-abstract>
   <kwd-group xml:lang="ru">
    <kwd>лазер</kwd>
    <kwd>фототермолиз</kwd>
    <kwd>абляция</kwd>
   </kwd-group>
   <kwd-group xml:lang="en">
    <kwd>laser</kwd>
    <kwd>laser photothermolysis</kwd>
    <kwd>ablation</kwd>
   </kwd-group>
  </article-meta>
 </front>
 <body>
  <p>Методы лазерного воздействия применяются для манипуляций на коже намного чаще, чем на любых других тканях. Это объясняется двумя моментами. Во-первых, исключительным разнообразием и распространенностью кожной патологии и различных косметических дефектов, а во-вторых, относительной простотой выполнения процедур, что связано с поверхностным расположением объектов, требующих лечения. Слово лазер – это побуквенный перевод англоязычного термина laser, сформированного из аббревиатуры от слов Light Amplification by Stimulated Emission of Radiation – усиление света посредством стимулированной эмиссии излучения. Лазеры, используемые в медицине, генерируют излучение в видимой (λ – 380-760 нм), инфракрасной (λ&gt;760 нм), ультрафиолетовой (λ&lt;380 нм) и рентгеновской (λ&lt;1 нм) областях спектра электромагнитных волн. Основой работы лазера является его активная среда. Материалом для нее могут быть твердые тела (кристаллы, сплавы, полупроводники), жидкости (растворы красителей) или газы (СО2, галогены, инертные газы или газовые смеси). От состава активной среды зависит длина волны и некоторые другие параметры излучения, испускаемого данным лазером. Активация среды достигается с помощью электромагнитных волн или мощного светового потока, в результате чего происходит возбуждение большинства молекул и атомов до возбужденного (excited) состояния. Спонтанное возвращение к исходному состоянию единичных молекул и атомов среды сопровождается выходом из каждого из них светового кванта (фотона электромагнитного излучения). Соударение такого фотона с другой возбужденной мишенью ведет к выходу из нее своего фотона (стимулированный фотон – stimulated), а он в свою очередь даст начало следующему и т.д. таким</p>
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</article>
