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  <front>
    <journal-meta>
      <journal-id journal-id-type="publisher-id">87</journal-id>
      <journal-id journal-id-type="index">urn:lsid:arphahub.com:pub:A116C711-4C18-5A38-8F1E-5E97753A8A64</journal-id>
      <journal-title-group>
        <journal-title xml:lang="en">Folia Medica</journal-title>
        <abbrev-journal-title xml:lang="en">FM</abbrev-journal-title>
      </journal-title-group>
      <issn pub-type="ppub">0204-8043</issn>
      <issn pub-type="epub">1314-2143</issn>
      <publisher>
        <publisher-name>Plovdiv Medical University</publisher-name>
      </publisher>
    </journal-meta>
    <article-meta>
      <article-id pub-id-type="doi">10.3897/folmed.65.e83775</article-id>
      <article-id pub-id-type="publisher-id">83775</article-id>
      <article-categories>
        <subj-group subj-group-type="heading">
          <subject>Original Article</subject>
        </subj-group>
        <subj-group subj-group-type="scientific_subject">
          <subject>Surgery &amp; Invasive treatment</subject>
        </subj-group>
      </article-categories>
      <title-group>
        <article-title>Extrapleural harvesting of the internal thoracic artery – impact on early postoperative results and pulmonary function</article-title>
      </title-group>
      <contrib-group content-type="authors">
        <contrib contrib-type="author" corresp="yes">
          <name name-style="western">
            <surname>Kyuchukov</surname>
            <given-names>Dimitar</given-names>
          </name>
          <email xlink:type="simple">kiuchukovd@yahoo.com</email>
          <xref ref-type="aff" rid="A1">1</xref>
        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Stoycheva</surname>
            <given-names>Stanislava</given-names>
          </name>
          <xref ref-type="aff" rid="A1">1</xref>
        </contrib>
        <contrib contrib-type="author" corresp="no">
          <name name-style="western">
            <surname>Nachev</surname>
            <given-names>Gencho</given-names>
          </name>
          <xref ref-type="aff" rid="A1">1</xref>
        </contrib>
      </contrib-group>
      <aff id="A1">
        <label>1</label>
        <addr-line content-type="verbatim">St Ekaterina University Hospital, Sofia, Bulgaria﻿</addr-line>
        <institution>St.Ekaterina University Hospital</institution>
        <addr-line content-type="city">Sofia</addr-line>
        <country>Bulgaria</country>
      </aff>
      <author-notes>
        <fn fn-type="corresp">
          <p>Corresponding author: Dimitar Kyuchukov, St Ekaterina University Hospital, Sofia, Bulgaria; Email: <email xlink:type="simple">kiuchukovd@yahoo.com</email></p>
        </fn>
      </author-notes>
      <pub-date pub-type="collection">
        <year>2023</year>
      </pub-date>
      <pub-date pub-type="epub">
        <day>30</day>
        <month>06</month>
        <year>2023</year>
      </pub-date>
      <volume>65</volume>
      <issue>3</issue>
      <fpage>415</fpage>
      <lpage>419</lpage>
      <uri content-type="arpha" xlink:href="http://openbiodiv.net/22CF9B8F-259C-5BD5-B2DE-B83AC38599D4">22CF9B8F-259C-5BD5-B2DE-B83AC38599D4</uri>
      <history>
        <date date-type="received">
          <day>14</day>
          <month>03</month>
          <year>2022</year>
        </date>
        <date date-type="accepted">
          <day>18</day>
          <month>04</month>
          <year>2022</year>
        </date>
      </history>
      <permissions>
        <license license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/share-your-work/public-domain/cc0/" xlink:type="simple">
          <license-p>This is an open access article distributed under the terms of the CC0 Public Domain Dedication.</license-p>
        </license>
      </permissions>
      <abstract>
        <label>Abstract</label>
        <p><bold>Introduction</bold>: The internal thoracic artery (<abbrev xlink:title="Internal Thoracic Artery" id="ABBRID0EMD">ITA</abbrev>) has proven to be the best graft for surgical myocardial revascularization, especially in the configuration left <abbrev xlink:title="Internal Thoracic Artery" id="ABBRID0EQD">ITA</abbrev> (<abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EUD">LITA</abbrev>) to the anterior descending branch of left coronary artery (<abbrev xlink:title="Left Coronary Artery" id="ABBRID0EYD">LAD</abbrev>). Its harvesting is usually accompanied by pleurotomy, followed by drainage tube placement into the pleural cavity, using the so called intrapleural method. Extrapleural technique for <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0E3D">LITA</abbrev> harvesting is also practiced in many cardiac surgery centers and with this technique the pleura is left intact.</p>
        <p><bold>Aim</bold>: The aim of our study was to investigate the impact of both techniques of <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EEE">LITA</abbrev> harvesting on lung function and incidence of postoperative complications early after operation.</p>
        <p><bold>Materials and methods</bold>: We analyzed retrospectively data of 82 operated patients scheduled for surgical myocardial revascularization and meeting certain inclusion and exclusion criteria. The patients were divided into two groups depending on the way <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EME">LITA</abbrev> was prepared. Lung parameters and incidence of surgical complications were registered in the early postoperative period until day 30.</p>
        <p><bold>Results</bold>: The patients from both groups had similar preoperative characteristics and risk factors. Those with preserved pleura showed significantly better results of the studied pulmonary parameters and lower complications event rate during early postoperative follow-up.</p>
        <p><bold>Conclusions</bold>: Maintaining the pleura integrity during <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EYE">LITA</abbrev> harvesting is beneficial for lung function and reduces the rate of complications in the early postoperative period.</p>
      </abstract>
      <kwd-group>
        <label>Keywords</label>
        <kwd>coronary artery bypass graft</kwd>
        <kwd>internal thoracic artery</kwd>
        <kwd>pleural cavity</kwd>
        <kwd>pulmonary function</kwd>
      </kwd-group>
    </article-meta>
    <notes>
      <sec sec-type="Citation" id="SECID0EDF">
        <title>Citation</title>
        <p>Kyuchukov D, Stoycheva S, Nachev G. Extrapleural harvesting of the internal thoracic artery – impact on early postoperative results and pulmonary function. Folia Med (Plovdiv) 2023;65(3):415-419 doi: <ext-link xlink:type="simple" ext-link-type="doi" xlink:href="10.3897/folmed.65.e83775">10.3897/folmed.65.e83775</ext-link>.</p>
      </sec>
    </notes>
  </front>
  <body>
    <sec sec-type="Introduction" id="SECID0EPF">
      <title>Introduction</title>
      <p>The internal thoracic artery (<abbrev xlink:title="Internal Thoracic Artery" id="ABBRID0EVF">ITA</abbrev>) is a perfect graft for surgical myocardial revascularization, especially the left one (<abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EZF">LITA</abbrev>) in configuration to the anterior descending branch of the left coronary artery (<abbrev xlink:title="Left Coronary Artery" id="ABBRID0E4F">LAD</abbrev>).<sup>[<xref ref-type="bibr" rid="B1">1</xref>]</sup> With regard to the pleural cavity, the <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EIG">LITA</abbrev> harvesting techniques are two types. The first one is when the dissection includes pleurotomy – the intrapleural technique, and second one when the integrity of the pleural cavity is preserved – the extrapleural technique.<sup>[<xref ref-type="bibr" rid="B2">2</xref>]</sup> Complications associated with arterial harvesting may affect postoperative morbidity and mortality.<sup>[<xref ref-type="bibr" rid="B3">3</xref>]</sup> Most candidates for coronary surgery have initially impaired lung function, mainly due to smoking. The combination of this predisposition with the adverse effects of extracorporeal circulation exponentially increases the risk of atelectasis and inflammatory complications in the early postoperative period.<sup>[<xref ref-type="bibr" rid="B4">4</xref>]</sup></p>
    </sec>
    <sec sec-type="Aim" id="SECID0EAH">
      <title>Aim</title>
      <p>The aim of our study was to investigate the impact of maintaining the pleura integrity during <abbrev xlink:title="Internal Thoracic Artery" id="ABBRID0EGH">ITA</abbrev> harvesting on lung function and the incidence of postoperative complications until day 30.</p>
    </sec>
    <sec sec-type="materials|methods" id="SECID0EKH">
      <title>Materials and methods</title>
      <p>The study is retrospective, conducted at St Ekaterina University Hospital in Sofia. We analyzed data of 82 patients scheduled for coronary artery bypass surgery in the period from July to December 2020 who met certain inclusion and exclusion criteria <bold>(Table <xref ref-type="table" rid="T1">1</xref>)</bold>.</p>
      <p>The patients were divided into two groups by the surgical technique used for <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EZH">LITA</abbrev> harvesting. Group 1 included 38 patients in whom the extrapleural technique was used. Group 2 was 44 patients in whom we used the intrapleural approach. To find the level of comparability between groups, ten risk factors and demographic characteristics were registered with a predictive value for lung function <bold>(Table <xref ref-type="table" rid="T2">2</xref>)</bold>.</p>
      <p>The groups were compared using the following indicators: 1) presence of atelectasis and pleural effusions more than 600 ml (found both on X-rays and transthoracic ultrasound performed on postoperative days 1, 5, and 30; 2) total bleeding in milliliters until drainage tube was removed; 3) time to extubation in hours; 4) need for catecholamine maintenance; and 5) values of oxygen partial pressure, carbon dioxide and arterial saturation from blood gas analyses performed at 1, 12, and 36 hours <bold>(Table <xref ref-type="table" rid="T3">3</xref>)</bold>. Lung parameters and incidence of surgical complications were followed up in the early postoperative period for 30 days.</p>
      <table-wrap id="T1" position="float" orientation="portrait">
        <label>Table 1.</label>
        <caption>
          <p>Inclusion and exclusion criteria</p>
        </caption>
        <table id="TID0ECJAC" rules="all">
          <tbody>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Inclusion criteria</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Exclusion criteria</bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">1. Multivessel coronary artery disease</td>
              <td rowspan="1" colspan="1" style="color: #231f20">1. One- or two-vessel coronary artery disease</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">2. Elective surgical revascularization</td>
              <td rowspan="1" colspan="1" style="color: #231f20">2. Combined cardiac surgery procedures</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">3. Ejection fraction &gt;45%</td>
              <td rowspan="1" colspan="1" style="color: #231f20">3. Surgical revascularization without ECC and aortic cross-clamping</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">4. Harvesting only <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0E4HAC">LITA</abbrev></td>
              <td rowspan="1" colspan="1" style="color: #231f20">4. Chronic kidney disease &gt;stage 2</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">5. ECC operation with aortic cross-clamping and blood cardioplegia</td>
              <td rowspan="1" colspan="1" style="color: #231f20">5. Chronic obstructive pulmonary disease or other lung disease</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">6. Body mass index &lt;30 kg/m<sup>2</sup></td>
              <td rowspan="1" colspan="1" style="color: #231f20">6. Cerebrovascular disease</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">7. Age &lt;70 years</td>
              <td rowspan="1" colspan="1" style="color: #231f20">7. Coronary endarterectomy</td>
            </tr>
          </tbody>
        </table>
      </table-wrap>
      <table-wrap id="T2" position="float" orientation="portrait">
        <label>Table 2.</label>
        <caption>
          <p>Preoperative characteristics and risk factors</p>
        </caption>
        <table id="TID0EJNAC" rules="all">
          <tbody>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Variables</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Group 1 n=38</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Group 2 n=44</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>
                  <italic>р</italic>
                </bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Age, years ± SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">68.3±2.8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">69.8±1.2</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.894</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Men, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">29 (76.3)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">32 (72.7)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.578</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Diabetes, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">12 (31.5)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">13 (29.5)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.908</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">CKD, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">3 (7.9)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">3 (6.8)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.427</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Smoking, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">21 (55.2)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">25 (56.8)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.361</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Arterial hypertension, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">38 (100)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">43 (97.7)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.997</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">BMI, kg/m<sup>2</sup>±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">28.6±3.1</td>
              <td rowspan="1" colspan="1" style="color: #231f20">29±2.5</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.156</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">EF, %±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">51.2±4.5</td>
              <td rowspan="1" colspan="1" style="color: #231f20">49.5±5.3</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.226</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Syntax score ±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">28.4±5.3</td>
              <td rowspan="1" colspan="1" style="color: #231f20">27.6±3.2</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.575</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">EuroScore ±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">2.8±2.2</td>
              <td rowspan="1" colspan="1" style="color: #231f20">3.1±1.5</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.443</td>
            </tr>
          </tbody>
        </table>
        <table-wrap-foot>
          <fn>
            <p>average age in years, average body mass index, average ejection fraction, average syntax score, average EuroScore; CKD: chronic kidney disease</p>
          </fn>
        </table-wrap-foot>
      </table-wrap>
      <table-wrap id="T3" position="float" orientation="portrait">
        <label>Table 3.</label>
        <caption>
          <p>Postoperative data</p>
        </caption>
        <table id="TID0ETGAE" rules="all">
          <tbody>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Variables</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Group 1 n=38</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>Group 2 n=44</bold>
              </td>
              <td rowspan="1" colspan="1" style="color: #231f20">
                <bold>
                  <italic>р</italic>
                </bold>
              </td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Atelectasis</td>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">1<sup>st</sup> pod, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">8 (21.5)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">19 (43.2)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.065</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">5<sup>th</sup> pod, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">3 (7.9)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">10 (22.7)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.015</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Pleural effusion</td>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">5<sup>th</sup> d, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">2 (5.2)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">8 (18.2)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.004</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">30<sup>th</sup> d, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">1 (2.6)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">4 (9.1)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.003</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Time to extubation, h±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">6.8±1.4</td>
              <td rowspan="1" colspan="1" style="color: #231f20">8.4±1.1</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.689</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Drainage bleeding, ml±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">384.5±103.6</td>
              <td rowspan="1" colspan="1" style="color: #231f20">805.7±153.3</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.085</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Hospital stay, d±SD</td>
              <td rowspan="1" colspan="1" style="color: #231f20">7.8±1.34</td>
              <td rowspan="1" colspan="1" style="color: #231f20">8.1±1.11</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.166</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">Catecholamines, n (%)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">12 (31.6)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">15 (34.1)</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.892</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">pO<sub>2</sub>, mmHg, mean±SD</td>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 1 hour</td>
              <td rowspan="1" colspan="1" style="color: #231f20">280±34</td>
              <td rowspan="1" colspan="1" style="color: #231f20">263±38</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.594</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 12 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">161±46</td>
              <td rowspan="1" colspan="1" style="color: #231f20">149±44</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.498</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 36 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">120±32</td>
              <td rowspan="1" colspan="1" style="color: #231f20">116±28</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.445</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">pСO<sub>2</sub>, mmHg, mean±SD</td>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 1 hour</td>
              <td rowspan="1" colspan="1" style="color: #231f20">31±8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">33±10</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.856</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 12 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">38±9</td>
              <td rowspan="1" colspan="1" style="color: #231f20">40±8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.894</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 36 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">39±6</td>
              <td rowspan="1" colspan="1" style="color: #231f20">41±8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.945</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">SaO<sub>2</sub>%, mean±SD</td>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
              <td rowspan="1" colspan="1"/>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 1 hour</td>
              <td rowspan="1" colspan="1" style="color: #231f20">99±0.9</td>
              <td rowspan="1" colspan="1" style="color: #231f20">99±0.8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.981</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 12 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">99±0.8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">99±0.8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.999</td>
            </tr>
            <tr>
              <td rowspan="1" colspan="1" style="color: #231f20">at 36 hours</td>
              <td rowspan="1" colspan="1" style="color: #231f20">99±0.8</td>
              <td rowspan="1" colspan="1" style="color: #231f20">98±0.7</td>
              <td rowspan="1" colspan="1" style="color: #231f20">0.923</td>
            </tr>
          </tbody>
        </table>
        <table-wrap-foot>
          <fn>
            <p>pO<sub>2</sub>: group average of oxygen partial pressure; pСO<sub>2</sub>: carbon dioxide; SaO<sub>2</sub>: arterial saturation</p>
          </fn>
        </table-wrap-foot>
      </table-wrap>
      <sec sec-type="Surgical techniques" id="SECID0EOAAC">
        <title>Surgical techniques</title>
        <p>In all patients included in the study, only <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EUAAC">LITA</abbrev> is used as a graft to <abbrev xlink:title="Left Coronary Artery" id="ABBRID0EYAAC">LAD</abbrev>. Other grafts for bypasses are conduits of great saphenous vein. After a midsternal longitudinal incision is made, the posterior surface of the sternum and ribs are exposed using special self-retaining retractor (Couëtil Sternal Retractor, Delacroix-Chevalier) to elevate the chest wall.</p>
        <p>Extrapleural technique: mediastinal pleura is separated gently from the endothoracic fascia, meticulously avoiding its opening. The endothoracic fascia is then incised medially and the LIMA and both satellite veins are exposed. The LIMA is dissected from the chest wall using electrocautery on pedicle, containing concomitant veins, adipose tissue, and endothoracic fascia. The arterial branches are ligated with small-size haemoclips, only at the IMA side. The LIMA is mobilized along its entire length. The pedicle is wrapped in gauze soaked in warm papaverine solution. After heparin is administered, the LIMA distal end is cut and secured. All these stages of harvesting are performed from outside the pleural cavity. Before sternal closure, only one drainage tube is placed in anterior mediastinum.</p>
        <p>Intrapleural technique: the main difference from the previously described technique is the wide incision, parallel to the sternum, in the mediastinal pleura, performed immediately after Couëtil retractor placement. After this pleurotomy, LIMA is harvested from the pleural cavity. At the end of operation, an additional drainage tube is placed into the left pleura. All patients receive coronary surgery with extracorporeal circulation and aortic cross-clamping, moderate hypothermia (28°С), and myocardial protection with ante- and retrograde cold blood cardioplegia.</p>
      </sec>
      <sec sec-type="Statistical analysis" id="SECID0E5AAC">
        <title>Statistical analysis</title>
        <p>Statistical analyses were performed using SPSS version 21 (IBM, Armonk, NY, USA). Qualitative variables were expressed as numbers (n), and percentages (%). Continuous quantitative variables with normal distribution with average value and standard deviation, and in the absence of normal distribution with median. Quantitative data were examined by Kolmogorov-Smirnov test for normality of the distribution. We used the Student <italic>t</italic>-test to compare continuously normally distributed data and the Mann-Whitney test in the absence of normal distribution. The comparison of qualitative variables was made using the χ² test or the exact Fisher test, when necessary. Differences for which the <italic>p</italic> value was less than 0.05 were considered statistically significant.</p>
      </sec>
    </sec>
    <sec sec-type="Results" id="SECID0EIBAC">
      <title>Results</title>
      <sec sec-type="Preoperative characteristics" id="SECID0EMBAC">
        <title>Preoperative characteristics</title>
        <p>Preoperative characteristics and risk factors are presented in <bold>Table <xref ref-type="table" rid="T2">2</xref></bold>. We found no significant differences between groups.</p>
      </sec>
      <sec sec-type="Intraoperative data" id="SECID0EYBAC">
        <title>Intraoperative data</title>
        <p>The same surgeons performed both types of operations and all patients were treated according to the same protocol for postoperative analgesia and rehabilitation. The mean number of distal anastomoses was 3.5±1.4 for group 1 and 3.3±0.9 for group two (<italic>p</italic>=0.942). The mean period of extracorporeal circulation was 88.5±19.4 minutes for Group 1 and 82.6±15.4 minutes for Group 2 (<italic>p</italic>=0.712). The mean periods of aortic clamping were 61.2±11.5 and 58.3±9.1 minutes, respectively (<italic>p</italic>=0.897). The differences between these parameters were not significant.</p>
      </sec>
      <sec sec-type="Postoperative data" id="SECID0EECAC">
        <title>Postoperative data</title>
        <p>The registered postoperative data are presented in <bold>Table <xref ref-type="table" rid="T3">3</xref></bold>.</p>
        <p>Analysis of the postoperative variables showed that in the group of patients with intact pleura, there was significantly lower rate of atelectasis 5 days postoperatively, as well as large pleural effusions requiring evacuation by day 5 and day 30. Because several patients had both atelectasis and pleural effusions, we compared their absolute number, which was 12 in the group with open pleural cavity and 3 in the group with intact one (7.9% vs. 27.7%), which was found as a statistically significant difference (<italic>p</italic>=0.04). The values of the other indicators showed advantage for the group with preserved pleural integrity, but the statistical analysis did not confirm significance.</p>
      </sec>
    </sec>
    <sec sec-type="Discussion" id="SECID0EUCAC">
      <title>Discussion</title>
      <p>In the literature, the conclusions of similar studies confirm our results. We found a significant difference between the study groups in terms of the number of patients who developed atelectasis and pleural effusions in the postoperative period. In our opinion, the logical explanation for this finding is the fact that pleurotomy helps to retain blood in the pleural cavity in the early postoperative period, despite the presence of a tube in it, and increases the patient’s discomfort, limits the full range of respiratory mechanics and expectoration. These factors contribute to atelectasis detection, and residual blood probably causes irritation with subsequent imbalance between secretion and resorption of pleura layers. Some authors explain this finding<sup>[<xref ref-type="bibr" rid="B5">5</xref>]</sup> with the pleurotomy itself, which causes changes in the composition of the surfactant leading to deterioration of its properties and subsequent alveolar dysfunction. According to most studies, blood loss is reduced in patients with intact pleura.‌<sup>[<xref ref-type="bibr" rid="B3">3</xref>, <xref ref-type="bibr" rid="B6 B7 B8">6-8</xref>]</sup> In our study, we did not find a significant difference. We also did not identify any patient to revise for bleeding or pericardial drainage. Ozkara et al.<sup>[<xref ref-type="bibr" rid="B9">9</xref>]</sup> found a clear advantage in patients with preserved pleural integrity over those with pleurotomy in terms of the frequency of postoperative pleural effusion and atelectasis in the postoperative period. In addition, they found that patients who underwent pleurotomy showed significantly worsened values at the spirometry test (pulmonary function test). We did not perform a spirometry test in this study, although such data would further objectify our conclusions. Ghavidel et al.<sup>[<xref ref-type="bibr" rid="B10">10</xref>]</sup> reported that in addition to pleural effusions and atelectasis, patients with impaired pleural integrity also had a significantly increased duration of postoperative hospital stay. We did not find such a difference in our groups. The comparisons between medians of the studied variables of the blood gas analysis during the first 36 hours also did not show a significant difference, probably due to the selection of low-risk patients and the short period of active monitoring (36 hours).</p>
    </sec>
    <sec sec-type="Limitations" id="SECID0E1DAC">
      <title>Limitations</title>
      <p>The retrospective nature of this study suggests the inherent risk of bias. In order to reduce it, we have tried to consider mainly objective data, the result of laboratory or instrumental research. Other disadvantages are the small number of patients operated in only one center and the lack of introduction of any objective variables such as data from pulmonary functional tests and others.</p>
    </sec>
    <sec sec-type="Conclusions" id="SECID0E6DAC">
      <title>Conclusions</title>
      <p>The extrapleural technique for <abbrev xlink:title="Left Internal Thoracic Artery" id="ABBRID0EFEAC">LITA</abbrev> reduces significantly the rate of complications (atelectasis and pleural effusions) in the early postoperative period after myocardial revascularization surgery, but the integrity of the pleura does not seem to interfere with the pulmonary function in the early postoperative hours.</p>
    </sec>
  </body>
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</article>
