<?xml version="1.0" encoding="utf-8"?>
<?xml-stylesheet type="text/xsl" href="style/detail_T.xsl"?>
<bibitem type="J">   <ARLID>0464066</ARLID> <utime>20240103212758.7</utime><mtime>20161021235959.9</mtime>   <SCOPUS>84987788607</SCOPUS> <WOS>000390786500001</WOS>  <DOI>10.14232/ejqtde.2016.1.79</DOI>           <title language="eng" primary="1">Continuous solutions to a viral infection model with general incidence rate, discrete state-dependent delay, CTL and antibody immune responses</title>  <specification> <page_count>15 s.</page_count> <media_type>E</media_type> </specification>   <serial><ARLID>cav_un_epca*0294031</ARLID><ISSN>1417-3875</ISSN><title>Electronic Journal of Qualitative Theory of Differential Equations</title><part_num/><part_title/><volume_id>2016</volume_id><volume>79 (2016)</volume><page_num>1-15</page_num><publisher><place/><name>University of Szeged</name><year/></publisher></serial>    <keyword>evolution equations</keyword>   <keyword>Lyapunov stability</keyword>   <keyword>state-dependent delay</keyword>   <keyword>virus infection model</keyword>    <author primary="1"> <ARLID>cav_un_auth*0282033</ARLID> <name1>Rezunenko</name1> <name2>Oleksandr</name2> <full_dept language="cz">Adaptivní systémy</full_dept> <full_dept language="eng">Department of Adaptive Systems</full_dept> <department language="cz">AS</department> <department language="eng">AS</department> <institution>UTIA-B</institution> <full_dept>Department of Adaptive Systems</full_dept> <country>UA</country> <fullinstit>Ústav teorie informace a automatizace AV ČR, v. v. i.</fullinstit> </author>   <source> <url>http://library.utia.cas.cz/separaty/2016/AS/rezunenko-0464066.pdf</url> </source>        <cas_special> <project> <ARLID>cav_un_auth*0335261</ARLID> <project_id>GA16-06678S</project_id> <agency>GA ČR</agency> <country>CZ</country> </project>  <abstract language="eng" primary="1">A virus dynamics model with intracellular state-dependent delay and a general  nonlinear infection rate functional response is studied. We consider the case of  merely continuous solutions which is adequate to the discontinuous change of parameters  due to, for example, drug administration. The Lyapunov functionals technique is  used to analyze stability of an interior infection equilibrium which describes the case  of both CTL and antibody immune responses activated.</abstract>     <RIV>BC</RIV>    <reportyear>2017</reportyear>      <num_of_auth>1</num_of_auth>  <unknown tag="mrcbC52"> 4 A hod 4ah 20231122141936.2 </unknown> <inst_support> RVO:67985556 </inst_support>  <permalink>http://hdl.handle.net/11104/0263396</permalink>  <unknown tag="mrcbC64"> 1 Department of Adaptive Systems UTIA-B 10101 MATHEMATICS </unknown>  <confidential>S</confidential>  <unknown tag="mrcbC86"> 3+4 Article Mathematics Applied|Mathematics  </unknown>         <unknown tag="mrcbT16-e">MATHEMATICS.APPLIED|MATHEMATICS</unknown> <unknown tag="mrcbT16-f">0.884</unknown> <unknown tag="mrcbT16-g">0.09</unknown> <unknown tag="mrcbT16-h">5</unknown> <unknown tag="mrcbT16-i">0.0018</unknown> <unknown tag="mrcbT16-j">0.279</unknown> <unknown tag="mrcbT16-k">642</unknown> <unknown tag="mrcbT16-s">0.733</unknown> <unknown tag="mrcbT16-4">Q2</unknown> <unknown tag="mrcbT16-5">0.789</unknown> <unknown tag="mrcbT16-6">145</unknown> <unknown tag="mrcbT16-7">Q1</unknown> <unknown tag="mrcbT16-B">15.741</unknown> <unknown tag="mrcbT16-C">63.5</unknown> <unknown tag="mrcbT16-D">Q4</unknown> <unknown tag="mrcbT16-E">Q2</unknown> <unknown tag="mrcbT16-P">76.688</unknown> <arlyear>2016</arlyear>    <unknown tag="mrcbTft">  Soubory v repozitáři: rezunenko-0464066.pdf </unknown>    <unknown tag="mrcbU14"> 84987788607 SCOPUS </unknown> <unknown tag="mrcbU34"> 000390786500001 WOS </unknown> <unknown tag="mrcbU63"> cav_un_epca*0294031 Electronic Journal of Qualitative Theory of Differential Equations 1417-3875 1417-3875 Roč. 2016 č. 79 2016 1 15 University of Szeged </unknown> </cas_special> </bibitem>