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added some pubs and a repostiroy
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4 changes: 2 additions & 2 deletions docs/about.html
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Expand Up @@ -2792,8 +2792,8 @@ <h3 id="how-to-contact-us">How to contact us?</h3>
D-10315 Berlin, Germany</p>
<p><br></p>
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<p><br><br></p>
<div class="sourceCode" id="cb1"><pre class="sourceCode r distill-force-highlighting-css"><code class="sourceCode r"></code></pre></div>
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4 changes: 2 additions & 2 deletions docs/index.html
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Expand Up @@ -2817,8 +2817,8 @@ <h2 class="appendix" id="contact">Contact</h2>
Coordination: Dr. Conny Landgraf<br />
<a href="mailto:assist6@izw-berlin.de">assist6[at]izw-berlin.de</a></p>
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<h2 class="appendix" id="address">Address</h2>
<p>Leibniz Institute for Zoo and Wildlife Research<br />
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4 changes: 4 additions & 0 deletions docs/publications.html
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Expand Up @@ -2785,8 +2785,11 @@ <h2 id="section">2024</h2>
<li><p>Jarquín-Díaz VH, <strong>Ferreira Martins SC</strong>, Balard A, Ďureje Ľ, Macholán M, Piálek J, Bengtsson-Palme J, <strong>Kramer-Schadt S</strong>, Forslund-Startceva SK, Heitlinger E (2024): Aberrant microbiomes are associated with increased antibiotic resistance gene load in hybrid mice, ISME COMMUN, <strong>1</strong>, 4, ycae053. doi:<span><a href="https://doi.org/10.1093/ismeco/ycae053">10.1093/ismeco/ycae053</a></span></p></li>
<li><p>Ke A, <strong>Sollmann R</strong>, Frishkoff L, Echeverri A, Zook J, Karp DS (2024): Effects of agriculture and nature reserves on avian behavior in northwestern Costa Rica. CONSERV BIOL, e14241. doi:<span><a href="https://doi.org/10.1111/cobi.14241">10.1111/cobi.14241</a></span></p></li>
<li><p><strong>Kürschner T</strong>, <strong>Scherer C</strong>, <strong>Radchuk V</strong>, Blaum N, <strong>Kramer-Schadt S</strong> (2024): Resource asynchrony and landscape homogenization as drivers of virulence evolution: The case of a directly transmitted disease in a social host. ECOL EVOL, <strong>14</strong>, e11065. doi:<span><a href="https://doi.org/10.1002/ece3.11065">10.1002/ece3.11065</a></span></p></li>
<li><p>Leonard A, Earth Hologenome Initiative Consortium (…<strong>Kramer-Schadt S</strong>, …, Voigt, CC,…), Alberdi A (2024): A global initiative for ecological and evolutionary hologenomics. TRENDS ECOL EVOL, <strong>3290</strong>: 1-5. doi:<span><a href="https://doi.org/10.1016/j.tree.2024.03.005">10.1016/j.tree.2024.03.005</a></span></p></li>
<li><p>Mendes CP, Wido RA, Zachary A, …, <strong>Wilting A</strong>, et al. (2024): CamTrapAsia: A Dataset of Tropical Forest Vertebrate Communities from 239 Camera Trapping Studies. ECOLOGY, e4299. doi:<span><a href="https://doi.org/10.1002/ecy.4299">10.1002/ecy.4299</a></span></p></li>
<li><p>Milles A, Bielcik M, Banitz T, Gallagher CA, Jeltsch F, Jepsen JU, Oro D, <strong>Radchuk V</strong>, Grimm V (2024): Defining ecological buffer mechanisms should consider diverse approaches. TREE, <strong>39</strong>. doi:<span><a href="https://doi.org/10.1016/j.tree.2023.12.008">10.1016/j.tree.2023.12.008</a></span></p></li>
<li><p>Moesch SS, Straka TM, Jeschke JM, Haase D, <strong>Kramer-Schadt S</strong> (2024): The good, the bad, and the unseen: wild mammal encounters influence wildlife preferences of residents across socio-demographic gradients. ECOL SOC <strong>29</strong>(3):6. doi:<span><a href="https://doi.org/10.5751/ES-15211-290306">10.5751/ES-15211-290306</a></span></p></li>
<li><p>Moesch SS, Jeschke JM, Lokatis S, Peerenboom G, <strong>Kramer-Schadt S</strong>, Straka TM, Haase D (2024): The frequent five: Insights from interviews with urban wildlife professionals in Germany. PEOPLE NAT, <strong>00</strong>, 1–18. doi:<span><a href="https://doi.org/10.1002/pan3.10697">10.1002/pan3.10697</a></span></p></li>
<li><p><strong>Mugerwa B</strong>, <strong>Niedballa J</strong>, <strong>Planillo A</strong>, Sheil D, <strong>Kramer-Schadt S</strong>, <strong>Wilting A</strong> (2024): Global disparity of camera trap research allocation and defaunation risk of terrestrial mammals. REMOTE SENS ECOL CONS, <strong>10</strong>, 121-136. doi:<span><a href="https://doi.org/10.1002/rse2.360">10.1002/rse2.360</a></span></p></li>
<li><p><strong>Nguyen A</strong>, <strong>Tilker A</strong>, Le D, <strong>Niedballa J</strong>, <strong>Pflumm L</strong>, Pham XH, Le VS, Luu HT, Tran VB, <strong>Kramer-Schadt S</strong>, <strong>Sollmann R</strong>, <strong>Wilting A</strong> (2024): Ground-dwelling mammal and bird diversity in the southern Annamites: Exploring complex habitat associations and the ghost of past hunting pressure. CONSERV SCI PRACT, <strong>6</strong>, e13093. doi:<span><a href="https://doi.org/10.1111/csp2.13093">10.1111/csp2.13093</a></span></p></li>
<li><p><strong>Planillo A</strong>, <strong>Wenzler-Meya M</strong>, Reinhardt I, Kluth G, Michler F-U, Stier N, <strong>Louvrier J</strong>, Steyer K, Gillich B, Rieger S, Knauer F, Kuemmerle T, <strong>Kramer-Schadt S</strong> (2024): Understanding habitat selection of range-expanding populations of large carnivores: 20 years of grey wolves (<em>Canis lupus</em>) recolonizing Germany. DIVERS DISTRIB, <strong>30</strong>, 71–86. doi:<span><a href="https://doi.org/10.1111/ddi.13789">10.1111/ddi.13789</a></span></p></li>
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<li><p><strong>Sollmann R</strong> (2024): Estimating the temporal scale of lagged responses in species abundance and occurrence. ECOSPHERE, <strong>15</strong>(1), e4704. doi:<span><a href="https://doi.org/10.1002/ecs2.4704">10.1002/ecs2.4704</a></span></p></li>
<li><p><strong>Sollmann R</strong> (2024): Mt or not Mt: Temporal variation in detection probability in spatial capture-recapture and occupancy models. PEER COMMUNITY J, <strong>4</strong>, e1. doi:<span><a href="https://doi.org/10.24072/pcjournal.357">10.24072/pcjournal.357</a></span></p></li>
<li><p>Tarbill GL, White AM, <strong>Sollmann R</strong> (2024): Floral richness drives pollinator diversity after fire in upland forest and meadows of the Sierra Nevada, California. INSECT CONSERV DIVERS (in press). doi:<span><a href="https://doi.org/10.1111/icad.12756">10.1111/icad.12756</a></span></p></li>
<li><p><strong>Tilker A</strong>, <strong>Niedballa J</strong>, Viet HL, Abrams JF, Marescot L, Wilkinson N, Rawson BM, <strong>Sollmann R</strong>, <strong>Wilting A</strong> (2024): Addressing the Southeast Asian snaring crisis: Impact of 11 years of snare removal in a biodiversity hotspot. CONSERV LETT, e13021. doi:<span><a href="https://doi.org/10.1111/conl.13021">10.1111/conl.13021</a></span></p></li>
<li><p>Vullioud C, <strong>Benhaiem S</strong>, Meneghini D, Szyf M, Shao Y, Hofer H, <strong>East ML</strong>, Fickel J, Weyrich A (2024): Epigenetic signatures of social status in wild female spotted hyenas (<em>Crocuta crocuta</em>). COMMUN BIOL, <strong>7</strong>, 1-12. doi:<span><a href="https://doi.org/10.1038/s42003-024-05926-y">10.1038/s42003-024-05926-y</a></span></p></li>
</ul>
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13 changes: 13 additions & 0 deletions docs/repositories.html
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</p>
</li>
<li class="card-repo">
<img class="card-repo-img" src='img/repo/tilker_2024_conservlett.jpg' alt='Figure 1 of Tilker et al. 2024: (a) Total number of snares removed by Forest Guards (blue line) and patrol effort in ha (red line); (b) response of snare detection probability to survey effort; (c) response of snare occupancy probability to covariates; thick black line shows mean effect for all years, gray shaded area show 95% confidence intervals (b and c), and light gray lines show mean effect for individual years (c only); (d) median snare occupancy probability for survey period (2011–2021); (e) median change in snare occupancy probability across the survey period; (f) percentage of area occupied (PAO) values for individual years; black dot indicates median and line indicates 50% posterior mass; based on predictions from multi-season occupancy model (d–f); (g) response of snare occupancy to prior patrol effort for two time periods, 2016 and 2021; and (h) cost of setting and removing an individual snare in the study areas, with removal cost divided by Payment for Forest Ecosystem Services and NGO aid funds.'>
<h3>
Tilker et al. 2024
</h3>
<p>
Addressing the Southeast Asian snaring crisis: Impact of 11 years of snare removal in a biodiversity hotspot. <em>CONSERV LETT</em>, e13021.
</p>
<p>
<a href='https://doi.org/10.1111/conl.13021'><img src="img/repo/icon-paper.png" style="width:12.0%" /></a>
<a href='https://github.com/EcoDynIZW/Tilker_Niedballa_2024_CONL'><img src="img/repo/icon-github.png" style="width:12.0%" /></a>
</p>
</li>
<li class="card-repo">
<img class="card-repo-img" src='img/repo/voigt_2022.png' alt='Figure 2 of Voigt, Scherer & Runkel 2022: Conceptual overview of the two hypothetical scenarios used for illustration of extreme situations: Low coverage scenario at large wind turbines and when encountering high-frequency echolocating bat species (top row) and high coverage scenario at small wind turbines and with low-frequency echolocating bat species (lower row).'>
<h3>
Voigt et al. 2022
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