129129 < div class ="page-content ">
130130 < section id ="projects " class ="content-section ">
131131 < div class ="section-heading ">
132- < h1 > Endoskeletal mineralisation of fish < br > < em > facing climate change</ em > </ h1 >
132+ < h1 > Ontogeny of shoaling < br > < em > under climate change</ em > </ h1 >
133133 </ div >
134134 < div class ="section-content ">
135135 < div class ="row ">
136136 <!-- <div class="dji-container">
137137 <img src="img/image18.jpg" alt="column" style="width:100%" class="back-img">
138138 <div class="row yann-left"> -->
139139 < div class ="col-md-6 ">
140- < img src ="img/tesseral.jpg " alt ="Tesseral mineralisation " title ="Tesseral mineralisation "
141- class ="rounded-corner ">
142- </ div >
143- < div class ="col-md-6 ">
144- < img src ="img/lamellar.jpg " alt ="Lamellar mineralisation " title ="Lamellar mineralisation "
145- class ="rounded-corner ">
140+ < img src ="img/fish_mineralisation.jpg " alt ="µCT scan of a fish head "
141+ title ="µCT scan of a fish head " class ="rounded-corner ">
146142 </ div >
143+ <!-- <div class="col-md-6">
144+ <img src="img/flowtank.jpg" alt="Flowtank" title="Flowtank" class="rounded-corner">
145+ </div> -->
147146 </ div >
148147 < div class ="row ">
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150149 < div class ="col-md-12 ">
151150 < p class ="text-black text-justify ">
152- < b > Ocean temperature and pH</ b > are environmental factors shaping the distribution and
153- < b > survival of teleost species</ b > . They also undergo < b > dramatic changes</ b > in the
154- context of global climate change, and their short-term impact on < b > endoskeletal
155- mineralisation</ b > in marine species has been investigated.< br >
156- We aim at quantifying the < b > long-term</ b > impact of climate change on the
157- skeleton of marine fish by using specimens from multiple < b > museum
158- collections</ b > .< br > < br >
159- < u > Methods/Tools:</ u > MicroCT scans< br > < br >
151+ The < b > Baltic Sea</ b > is a unique environment characterised by a low salinity, depth,
152+ and highly stratified waters, where species are specifically adapted. However, the
153+ Baltic is one of the fastest warming closed seas. Taken together, these parameters
154+ imperil the survival of Baltic Sea species...
155+ .< br > < br >
156+ < u > Methods:</ u > Micro-computed tomography, morphometrics< br > < br >
157+ <!-- <u>Working with:</u> <a
158+ href="http://www.isem.univ-montp2.fr/fr/personnel/equipes/macroevolution-et-developpement/debiais-thibaud-melanie.index/"
159+ target="_blank"> Mélanie Debiais-Thibaud</a>, <a
160+ href="https://www.researchgate.net/profile/Faviel_Alejandro_Lopez_Romero"
161+ target="_blank"> Faviel Alejandro López-Romero</a>, and <a
162+ href="https://www.rhem.cnrs.fr/" target="_blank"> RHEM members</a> -->
160163 </ p >
161164 <!-- <p class="text-black text-justify">
162165 <u>Related publication:</u><br><br>
163- <b>F. Berio</b>, M. Broyon, S. Enault, N. Pirot, F. A. López-Romero & amp; M.
164- Debiais-Thibaud (2021 ). Diversity and Evolution of Mineralized Skeletal Tissues in
165- Chondrichthyans . — <i>Frontiers in Ecology and Evolution</i>, <i>9</i>, 223. <a
166- href="https://www.frontiersin. org/articles/ 10.3389/fevo.2021.660767/full "
167- target="_blank">https://www.frontiersin. org/articles/ 10.3389/fevo.2021.660767 </a>
166+ <b>F. Berio</b>, C. Morerod, X. Qi & amp; V. Di Santo
167+ (2023 ). Ontogenetic plasticity in shoaling behavior in a forage fish under
168+ warming . — <i>Integrative and Comparative
169+ Biology.</i> <a href="https://doi. org/10.1093/icb/icad043 "
170+ target="_blank">https://doi. org/10.1093/icb/icad043 </a>
168171 </p> -->
169172 </ div >
170173 </ div >
@@ -173,7 +176,7 @@ <h1>Endoskeletal mineralisation of fish<br><em> facing climate change</em></h1>
173176 </ section >
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