Results 31 to 40 of about 626 (148)

The leishmaniases - survival and expansion in a changing world: a mini-review</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Memorias do Instituto Oswaldo Cruz</i>, 2007 </span><br><span class="r_content">The number of cases of visceral and cutaneous leishmaniasis is increasing globally at an alarming rate irrespective of the region and the leishmaniases are amongst the top emergent diseases in spite of control measures. In the present review attention is </span><br><span class="r_sub"><i>Jeffrey Shaw</i></span><br><small><a href="https://doaj.org/article/60d230fc90844a399615fd5090043761" target="_blank" rel="nofollow" title="doaj.org/article/60d230fc90844a399615fd5090043761">doaj</a> </small>   <div id="more_1" style="display:none"><a href="/sci_redir.php?doi=10.1590%2FS0074-02762007000500001" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1590/S0074-02762007000500001'); alert('Copied the doi');">copy doi</a> <small>(10.1590/S0074-02762007000500001)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_1')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/brv.70117" target="_blank" rel="nofollow">A review of the historic and present ecological role of aquatic and shoreline wood, from forest to deep sea</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Biological Reviews, Volume 101, Issue 3, Page 1091-1119, June 2026.</i></span><br><span class="r_content">ABSTRACT The ecology of forests, their losses, and terrestrial wood decomposition dynamics have been intensively studied and reviewed. In the aquatic realm, reviews have concentrated on large wood (LW) in rivers and the transition from freshwater to marine environments in the Pacific Northwest of North America. However, a comprehensive global synthesis </span><br><span class="r_sub"><i>Jon Dickson<span id="ma_2" style="display:none">, Ellen Wohl, Laura L. Govers, Oscar Franken, Tjeerd J. Bouma, Han Olff, Britas Klemens Eriksson, Maryann S. Watson, Luísa M.S. Borges, Tjisse van der Heide</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_2')">+9 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/brv.70117?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/brv.70117?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_2" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fbrv.70117" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/brv.70117'); alert('Copied the doi');">copy doi</a> <small>(10.1002/brv.70117)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_2')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.23859/estr-220726" target="_blank" rel="nofollow">Using moss Ceratodon purpureus (Hedw.) Brid for assessing the technogenic pollution (Ni, Zn, Mn, Al, Se, Cs, La, and Sm) of transformed ecotopes of Donbass</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Трансформация экосистем</i>, 2023 </span><br><span class="r_content">The ecotopic difference in the accumulation of Ni, Zn, Mn, Al, Se, Cs, La and Sm in bryophyte Ceratodon purpureus (Hedw.) Brid was studied during a long-term experiment in the anthropogenically disturbed environment of Donbass.</span><br><span class="r_sub"><i>Inga I. Zinicovscaia<span id="ma_3" style="display:none">, Konstantin N. Vergel, Andrey I. Safonov, Nikita S. Yushin, Aleksandra V. Kravtsova, Omari Chaligava</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_3')">+5 more</a></small></i></span><br><small><a href="https://doaj.org/article/0606ad70ce1b49948fdf60ecab4f1d59" target="_blank" rel="nofollow" title="doaj.org/article/0606ad70ce1b49948fdf60ecab4f1d59">doaj</a> </small>   <div id="more_3" style="display:none"><a href="/sci_redir.php?doi=10.23859%2Festr-220726" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.23859/estr-220726'); alert('Copied the doi');">copy doi</a> <small>(10.23859/estr-220726)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_3')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/ece3.73641" target="_blank" rel="nofollow">Genomic Insights Into Species Divergence and Adaptive Evolution in the Grass Genus Orinus on the Qinghai‐Tibet Plateau</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Ecology and Evolution, Volume 16, Issue 5, May 2026.</i></span><br><span class="r_content">Using population genomic data, we investigated the evolutionary history and genomic divergence of closely related terrestrial plant lineages to test whether speciation proceeded in the presence of gene flow. Demographic modeling and genome‐wide scans revealed divergence with ongoing gene flow, heterogeneous genomic differentiation, and signatures of ...</span><br><span class="r_sub"><i>Ai Liu<span id="ma_4" style="display:none">, Xue Yang, Juan Lu, Kunjing Qu, Jinyuan Chen, Xu Su, Guangpeng Ren, Hongyin Hu</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_4')">+7 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/ece3.73641?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/ece3.73641?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_4" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fece3.73641" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/ece3.73641'); alert('Copied the doi');">copy doi</a> <small>(10.1002/ece3.73641)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_4')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1590/S0102-311X2000000800011" target="_blank" rel="nofollow">Distribuição e caracterização de diferentes populações de Triatoma brasiliensis Neiva, 1911 (Hemiptera, Reduviidae, Triatominae) Distribution and characterization of different populations of Triatoma brasiliensis Neiva, 1911 (Hemiptera, Reduviidae, Triatominae)</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Cadernos de Saúde Pública</i>, 2000 </span><br><span class="r_content">Triatoma brasiliensis Neiva, 1911 é agora considerado o mais importante vetor da doença de Chagas nas áreas semi-áridas do nordeste do Brasil. Quatro populações distintas de T.</span><br><span class="r_sub"><i>Jane Costa</i></span><br><small><a href="https://doaj.org/article/b182c9ed59cb4dd2a23a94f7f79b7c01" target="_blank" rel="nofollow" title="doaj.org/article/b182c9ed59cb4dd2a23a94f7f79b7c01">doaj</a> </small>   <div id="more_5" style="display:none"><a href="/sci_redir.php?doi=10.1590%2FS0102-311X2000000800011" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1590/S0102-311X2000000800011'); alert('Copied the doi');">copy doi</a> <small>(10.1590/S0102-311X2000000800011)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_5')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1111/avsc.70070" target="_blank" rel="nofollow">Identification of Vegetation Communities Using Segmentation of Aerial Images</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Applied Vegetation Science, Volume 29, Issue 2, April/June 2026.</i></span><br><span class="r_content">This work develops a scalable, segmentation‐based framework for assisting the generation of vegetation maps from aerial imagery. Several state‐of‐the‐art deep learning models are assessed to determine their suitability for identifying vegetation communities.</span><br><span class="r_sub"><i>José Salas‐Cáceres<span id="ma_6" style="display:none">, Riccardo Balia, Marcos Salas‐Pascual, Javier Lorenzo‐Navarro, Modesto Castrillón‐Santana</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_6')">+4 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1111/avsc.70070?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1111/avsc.70070?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_6" style="display:none"><a href="/sci_redir.php?doi=10.1111%2Favsc.70070" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1111/avsc.70070'); alert('Copied the doi');">copy doi</a> <small>(10.1111/avsc.70070)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_6')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1186/s13071-019-3819-7" target="_blank" rel="nofollow">Disentangling Trypanosoma cruzi transmission cycle dynamics through the identification of blood meal sources of natural populations of Triatoma dimidiata in Yucatán, Mexico</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Parasites & Vectors</i>, 2019 </span><br><span class="r_content">Background In the Yucatán Peninsula, Mexico, Triatoma dimidiata is the main vector of Trypanosoma cruzi, the causative agent of Chagas disease. Little effort has been made to identify blood meal sources of T.</span><br><span class="r_sub"><i>Joel Israel Moo-Millan<span id="ma_7" style="display:none">, Audrey Arnal, Silvia Pérez-Carrillo, Anette Hernandez-Andrade, María-Jesús Ramírez-Sierra, Miguel Rosado-Vallado, Eric Dumonteil, Etienne Waleckx</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_7')">+7 more</a></small></i></span><br><small><a href="https://doaj.org/article/080a499017574107bb217724eb659139" target="_blank" rel="nofollow" title="doaj.org/article/080a499017574107bb217724eb659139">doaj</a> </small>   <div id="more_7" style="display:none"><a href="/sci_redir.php?doi=10.1186%2Fs13071-019-3819-7" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1186/s13071-019-3819-7'); alert('Copied the doi');">copy doi</a> <small>(10.1186/s13071-019-3819-7)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_7')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.3390/photonics9110820" target="_blank" rel="nofollow">The Nature of Rainfall at a Typical Semi-Arid Tropical Ecotope in Southern Africa and Options for Sustainable Crop Production</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16">, 2012 </span><br><span class="r_content">Climate plays an important role in crop biomass production. Extreme climatic conditions and high seasonal variability of climatic parameters could adversely affect productivity (Li et al., 2006) since rainfall determines the crop yields and the choice of the crops that can be grown.</span><br><span class="r_sub"><i>J. Mzezewa, E.T. Gwat</i></span><br><small><a href="https://explore.openaire.eu/search/publication?pid=10.3390%2Fphotonics9110820" target="_blank" rel="nofollow" title="openaire.eu/search/publication?pid=10.3390%2Fphotonics9110820">openaire</a> </small>   <div id="more_8" style="display:none"><a href="/sci_redir.php?doi=10.3390%2Fphotonics9110820" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="https://www.intechopen.com/citation-pdf-url/25581" target="_blank" rel="nofollow" title="intechopen.com/citation-pdf-url/25581">intechopen.com</a><br> <a href="javascript:navigator.clipboard.writeText('10.3390/photonics9110820'); alert('Copied the doi');">copy doi</a> <small>(10.3390/photonics9110820)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_8')">+2 more sources</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.1002/ece3.72460" target="_blank" rel="nofollow">Sustained Heatwaves Reshape the Phytoplankton–Zooplankton Community Structure in Freshwater Ecosystems: A Case Study of Shengjin Lake</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Ecology and Evolution, Volume 15, Issue 11, November 2025.</i></span><br><span class="r_content">The sustained heatwave has shaped the plankton community structure and led to high‐temperature domestication of some of the plankton. Plankton communities have the ability to resist heatwave stress. The sustained heatwave has altered the interrelationships between plankton.</span><br><span class="r_sub"><i>Lingli Jiang<span id="ma_9" style="display:none">, Mengfan Sun, Zhongze Zhou, Yutao Wang</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_9')">+3 more</a></small></i></span><br><small><a href="https://onlinelibrary.wiley.com/doi/10.1002/ece3.72460?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default" target="_blank" rel="nofollow" title="wiley.com/doi/10.1002/ece3.72460?mi=2or9o2m&af=R&AllField=natural ecotopes&ConceptID=15941&content=articlesChapters&target=default">wiley</a> </small>   <div id="more_9" style="display:none"><a href="/sci_redir.php?doi=10.1002%2Fece3.72460" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.1002/ece3.72460'); alert('Copied the doi');">copy doi</a> <small>(10.1002/ece3.72460)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_9')">+1 more source</a></small><br></div><div class="r"><p class="r_title"><a href="https://doi.org/10.18470/1992-1098-2022-4-30-39" target="_blank" rel="nofollow">Natural and microclonal reproduction of the Dagestan paleoendemic <i>Scabiosa gumbetica</i> Boiss.</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Юг России: экология, развитие</i>, 2022 </span><br><span class="r_content">Aim. As a paleoendemic petrophilic species of the foothills of Dagestan Scabiosa gumbetica Boiss, its comprehensive studies are relevant. This work is devoted to the identification of the state of the Tantari cenopopulation of the species and the study ...</span><br><span class="r_sub"><i>A. I. Adzhieva<span id="ma_10" style="display:none">, Z. M. Alieva, V. K. Martemyanova</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_10')">+2 more</a></small></i></span><br><small><a href="https://doaj.org/article/7b355a91239143d1a809113adb6c33cd" target="_blank" rel="nofollow" title="doaj.org/article/7b355a91239143d1a809113adb6c33cd">doaj</a> </small>   <div id="more_10" style="display:none"><a href="/sci_redir.php?doi=10.18470%2F1992-1098-2022-4-30-39" target="_blank" rel="nofollow">openaccessbutton.org (pdf)</a><br><a href="javascript:navigator.clipboard.writeText('10.18470/1992-1098-2022-4-30-39'); alert('Copied the doi');">copy doi</a> <small>(10.18470/1992-1098-2022-4-30-39)</small><br></div><small><a href="#" onClick="return toggle_div(this, 'more_10')">+1 more source</a></small><br></div><div class="r"><div style="margin-bottom:2px;overflow:hidden"><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-trypanosoma_cruzi/" class="suggestion"onclick="show_loader();"><b>trypanosoma cruzi</b></a><br/><a href="/q-chagas_disease/" class="suggestion"onclick="show_loader();"><b>chagas disease</b></a><br/><a href="/q-triatoma_sordida/" class="suggestion"onclick="show_loader();"><b>triatoma sordida</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-triatom%C3%ADneos/" class="suggestion"onclick="show_loader();"><b>triatomíneos</b></a><br/><a href="/q-15._life_on_land/" class="suggestion"onclick="show_loader();"><b>15. life on land</b></a><br/><a href="/q-insect_vectors/" class="suggestion"onclick="show_loader();"><b>insect vectors</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-ecology/" class="suggestion"onclick="show_loader();"><b>ecology</b></a><br/><a href="/q-triatominae/" class="suggestion"onclick="show_loader();"><b>triatominae</b></a><br/><a href="/q-animals/" class="suggestion"onclick="show_loader();"><b>animals</b></a><br/></div></div></div><div class="pagenav"><a href="/q-natural_ecotopes/p-3/" rel="nofollow"><b>previous</b></a>   <a href="/q-natural_ecotopes/p-2/" rel="nofollow">2</a>  <a href="/q-natural_ecotopes/p-3/" rel="nofollow">3</a>  <b>4</b>  <a href="/q-natural_ecotopes/p-5/" rel="nofollow">5</a>  <a href="/q-natural_ecotopes/p-6/" rel="nofollow">6</a>   <a href="/q-natural_ecotopes/p-5/" id="next" rel="nofollow"><b>next</b></a> </div><br></div> </div> <script>document.getElementById('loadingGif').style.display='none';</script><div style="width: 100%; height: 40px; bottom: 0px; background-color: #f5f5f5;"><div style="padding-left: 15px; padding-top: 10px"> <a href="/" rel="nofollow">Home</a> - <a href="/page-about/" rel="nofollow">About</a> - <a href="/page-disclaimer/" rel="nofollow">Disclaimer</a> - <a href="/page-privacy/" rel="nofollow">Privacy</a> </div></div> <link rel="stylesheet" href="//ajax.googleapis.com/ajax/libs/jqueryui/1.11.4/themes/smoothness/jquery-ui.min.css"/> <script> (function(ss,ex){ window.ldfdr=window.ldfdr||function(){(ldfdr._q=ldfdr._q||[]).push([].slice.call(arguments));}; (function(d,s){ fs=d.getElementsByTagName(s)[0]; function ce(src){ var cs=d.createElement(s); cs.src=src; cs.async=1; fs.parentNode.insertBefore(cs,fs); }; ce('https://sc.lfeeder.com/lftracker_v1_'+ss+(ex?'_'+ex:'')+'.js'); })(document,'script'); })('JMvZ8gvrWA9a2pOd'); </script> </body> </html>