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	<title><![CDATA[BOL: Related items]]></title>
	<link>https://bioinformaticsonline.com/related/28787?offset=30</link>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/26915/phd-programme-in-computational-biology</guid>
  <pubDate>Wed, 06 Apr 2016 11:47:35 -0500</pubDate>
  <link></link>
  <title><![CDATA[Ph.D. Programme in Computational Biology]]></title>
  <description><![CDATA[
<p>Ph.D. Programme in Computational Biology</p>

<p>For students interested in frontier research at the interface of biology, computation, physics and applied mathematics</p>

<p>IMSc is a leader in India in fundamental research in theoretical physics, mathematics and theoretical computer science, with several members actively pursuing research in interdisciplinary areas including computational biology.   In 2013 IMSc started a unique Ph.D. programme in this subject, training students to apply cutting-edge computational and mathematical techniques to problems in modern biology, in collaboration with leading biology departments and institutions in India and abroad.  <br />IMSc  is an autonomous national research institute under the Department of Atomic Energy, Government of India, and a constituent institution of the Homi Bhabha National Institute (HBNI), Mumbai (a deemed university).   Ph.D. degrees will be awarded by HBNI.<br />STRUCTURE OF PROGRAMME<br />Before embarking on their research, students have three semesters of coursework, which consists of seven core courses, to be carried out at IMSc; elective courses, which may be taken at IMSc or at other institutions by mutual consent; and lab rotations, at collaborating labs in other institutions. The core coursework covers essentials of modern biology, essential techniques from physics, mathematics, statistics and computer science, physics of proteins and biomolecules, biological sequence analysis and algorithms, and systems biology. Elective coursework covers various topics in greater depth. Following the coursework and a comprehensive examination, students will embark on research leading to a Ph.D. degree.<br />Selected candidates will be research fellows at IMSc and will receive fellowships, housing or house rent allowance, and contingency grants.</p>

<p>More at http://www.imsc.res.in/graduate_programme_0</p>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/43768/summer-school-open-to-phd-students</guid>
  <pubDate>Wed, 02 Feb 2022 06:08:35 -0600</pubDate>
  <link></link>
  <title><![CDATA[Summer school open to PhD students]]></title>
  <description><![CDATA[
<p>Some PhD students are organizing a summer school open to PhD students with different backgrounds and interests.</p>

<p>Several sessions and workshops will be held within five focus groups, and one common theme: mountain research.</p>

<p>The summer school will take place in Obergurgl, in the middle of the Austrian Alps, September 5-9.</p>

<p>Abstract submission is now open, until February 16th: https://www.imc2022.info/summerschool/</p>

<p>The summer school takes place in the context of the International Mountain Conference 2022, Innsbruck, Austria: https://www.imc2022.info/</p>

<p>Please feel free to spread the word among potentially interested colleagues and PhD students.</p>

<p>"Capponi, Lisa"</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/45266/phd-studentship-statistical-complexity-in-the-evolution-of-biological-networks</guid>
  <pubDate>Thu, 27 Aug 2026 00:59:23 -0500</pubDate>
  <link></link>
  <title><![CDATA[PhD Studentship: Statistical Complexity in the Evolution of Biological Networks]]></title>
  <description><![CDATA[
<p>Advancing network science to understand the organisation, function and evolution of biological systems<br />We are seeking an ambitious PhD student to develop a new generation of approaches for understanding the structure and evolution of biological networks.</p>

<p>Biological systems are extraordinarily complex. Protein-protein interaction networks, gene regulatory networks, metabolic networks and other molecular interaction systems contain enormous numbers of components and interactions, and their organisation is both far from random and far from regular. Their networks exhibit hierarchy (a few nodes with many connections and many nodes with few),  homophily (nodes which are more â€œsimilarâ€ are more likely to connect), modularity and other forms of structure that emerge from the underlying biological processes governing how components interact. But only recently have methods been proposed to measure network complexity directly and parsimoniously.</p>

<p>So, how statistically complex are biological networks? What mechanisms generate this complexity? And, critically, how is this network complexity related to biological function and evolutionary history?</p>

<p>More at https://evoldir.net/brian/evoldir/GradStudentPositions//UK.Glasgow.UStrathclyde.Statistical_complexity_in_the_evolution_of_biological_networks</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/24258/postdoctoral-fellowship-at-department-of-psychiatry-warneford-hospital-oxford</guid>
  <pubDate>Tue, 01 Sep 2015 05:24:49 -0500</pubDate>
  <link></link>
  <title><![CDATA[Postdoctoral Fellowship at Department of Psychiatry, Warneford Hospital, Oxford]]></title>
  <description><![CDATA[
<p>Applications are invited for a postdoctoral research assistant to work in the Translational Neuroscience and Dementia Research Group (TNDRG) on a project using informatics approaches to understand and prevent dementia, specifically on the role of the immune system in Alzheimer’s. The post is for a fixed-term duration of 1 year.</p>

<p>Working with other members of the TNDRG you will analyse complex genomic and epidemiological datasets, evaluating which computational tools are most suitable. You will contribute to the generation of innovative tools for linking epidemiological and multilevel omics datasets, ensuring that computer programs are written in a form that other collaborators can use and expand.</p>

<p>You will have or be close to completion of a PhD in either: bioinformatics; neuroscience; machine learning; statistics; epidemiology; neurology; or other relevant field. You will have experience programming on either R, Matlab, Python, C++, Java or any other imperative, object oriented or functional language.</p>

<p>Please direct Informal enquiries to Dr Alejo Nevado-Holgado (alejo.nevado-holgado@psych.ox.ac.uk).</p>

<p>You will be required to upload a supporting statement explaining how you meet the selection criteria for the post, a CV, and details of two referees as part of your online application.</p>

<p>The closing date for applications is 12.00 midday on 2 September 2015. Interviews will be held on Tuesday 15 September 2015. </p>

<p>https://www.recruit.ox.ac.uk/pls/hrisliverecruit/erq_jobspec_version_4.jobspec?p_id=118696</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/26712/post-doctoral-fellow-jobs-opportunity-in-srm-university</guid>
  <pubDate>Thu, 17 Mar 2016 11:20:14 -0500</pubDate>
  <link></link>
  <title><![CDATA[Post-Doctoral Fellow Jobs opportunity in SRM University]]></title>
  <description><![CDATA[
<p>Post-Doctoral Fellow Jobs opportunity in SRM University</p>

<p>Essential qualification : Ph.D. in Bioinformatics/Biotechnology/Genetics/Computational Biology.Understanding of genomics data and advanced knowledge of Java, and C/C++ as the programming languages and the scripting language like perl and/or Python, SQL is preferred. Experience in High Performance Computing, data architecture, database development is desirable</p>

<p>Fellowship: Rs 35,000 /-<br /> <br />How to apply</p>

<p>Candidates are requested to send their CV, and a brief summary of research experience by e-mail careers.genetics@ktr.srmuniv.ac.in  on or before 30/03/2016.</p>

<p>More at http://www.srmuniv.ac.in/jobs-applications-for-position-of-post-doctoral-fellow</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/45211/postdoc-in-germany-evolutionarytheory</guid>
  <pubDate>Mon, 03 Aug 2026 06:50:26 -0500</pubDate>
  <link></link>
  <title><![CDATA[PostDoc in Germany @ EvolutionaryTheory]]></title>
  <description><![CDATA[
<p>We are seeking a postdoctoral researcher to join the group of Jonathan Henshaw at the University of Freiburg in Germany (https://www.henshaw-lab.com/). We are a primarily theoretical lab working on a broad set of topics in evolutionary biology, with a particular focus on the evolution of animal behaviour. We develop both individual-based simulations and mathematical models (e.g., using evolutionary game theory, adaptive dynamics and quantitative genetics). We put a strong emphasis on a supportive and inclusive working environment. As a postdoc in our lab, you would have considerable freedom to shape the direction of your projects within these broad areas of interest.</p>

<p>More at https://evoldir.net/brian/evoldir/PostDocs//UniFreiburg_Germany.EvolutionaryTheory</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/30334/postdoc-at-ubritishcolumbia-in-troutgenomics</guid>
  <pubDate>Thu, 22 Dec 2016 08:18:46 -0600</pubDate>
  <link></link>
  <title><![CDATA[Postdoc at UBritishColumbia in TroutGenomics]]></title>
  <description><![CDATA[
<p>Landscape Genomics Postdoc at UBC A research team at the University of British Columbia’s Department of Zoology and Biodiversity Research Centre is seeking a postdoctoral researcher in landscape genetics of native rainbow trout (Oncorhynchus mykiss). </p>

<p>This project is part of a larger Genome Canada project on genetics and physiology of adaptation to climate change in rainbow trout, and the population genomics component is in the labs of Eric Taylor and Michael Whitlock. The landscape genomics component primarily involves whole genome sequencing approaches to understanding the genomic basis of adaptation to features of habitat, but also to provide insights into phylogeography and the influence of watershed structure on population subdivision in rainbow trout. A PhD in a related field with expertise in basic theory and bioinformatic analysis of population genomics data is required. </p>

<p>The position is available for one year with renewal for up to three additional years. Salary is $55,000 per year plus benefits. To apply, please send a brief cover letter summarizing your qualifications for the position, a CV, and the names, addresses, phone numbers and emails of three references. </p>

<p>Review of applications will begin January 16, 2017. Address application materials to etaylor@zoology.ubc.ca to whom any questions can also be addressed. etaylor@zoology.ubc.ca</p>
]]></description>
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<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/35267/a-computational-postdoc-position-and-a-bioinformatician-position</guid>
  <pubDate>Thu, 18 Jan 2018 16:29:42 -0600</pubDate>
  <link></link>
  <title><![CDATA[A computational postdoc position and a bioinformatician position]]></title>
  <description><![CDATA[
<p>A computational postdoc position and a bioinformatician position are available in Alessandro Romanel's Lab recently established at the Centre for Integrative Biology (CIBIO) in Trento, Italy. The positions are in the context of an AIRC grant and are immediately available.<br /> <br />Successful candidates will be involved in the design and implementation of strategies to study the role of inherited polymorphisms in combination with timedependent variables and somatic events on cancer genesis, progression and resistance.<br />The ideal postdoc candidate will have a PhD in Computer Science, Bioinformatics, Computational Biology or equivalent, experience in the analysis of next generation sequencing and high-density array data from human cells, strong analytical and quantitative background and programming skills. Background in cancer genomics is recommended.<br />The ideal bioinformatician candidate will have a four or five years degree in Computer Science, Bioinformatics or equivalent, experience in the management of large datasets, implementation of processing pipelines and strong programming skills. Background in biology/genomics is a plus.<br />Highly motivated individuals are invited to send a detailed CV, a cover letter describing research interests and experience, and contact information for two references to Alessandro Romanel (alessandro.romanel@unitn.it).</p>
]]></description>
</item>
<item>
	<guid isPermaLink="true">https://bioinformaticsonline.com/news/view/2645/dna-bending-propensity-in-the-presence-of-base-mismatches-implications-for-dna-repair</guid>
	<pubDate>Mon, 19 Aug 2013 16:01:44 -0500</pubDate>
	<link>https://bioinformaticsonline.com/news/view/2645/dna-bending-propensity-in-the-presence-of-base-mismatches-implications-for-dna-repair</link>
	<title><![CDATA[DNA Bending Propensity in the Presence of Base Mismatches: Implications for DNA Repair]]></title>
	<description><![CDATA[<p>Understanding how the human body recognizes damaged DNA and initiates repair fascinates Michael Feig, professor of biochemistry and molecular biology at Michigan State University. Feig studies the proteins MutS and MSH2-MSH6, which recognize defective DNA and initiate DNA repair. Natural DNA repair occurs when proteins like MutS (the primary protein responsible for recognizing a variety of DNA mismatches) scan the DNA, identify a defect, and recruit other enzymes to carry out the actual repair.</p><p><em>Results from computer simulations show that it is energetically less expensive to bend mismatch-containing, defective DNA (G:T, C:C, C:T, G:A, G:G, T:T, A:A, A+:C) vs. non-defective DNA (containing A:T or G:C base pairs). DNA repair mechanisms likely take advantage of this feature to detect defective DNA based on an increased bending propensity.</em></p><p>http://www.tacc.utexas.edu/news/feature-stories/2013/how-dna-repair-helps-prevent-cancer</p><p>http://pubs.acs.org/doi/abs/10.1021/jp403127a</p>]]></description>
	<dc:creator>Jitendra Narayan</dc:creator>
</item>

<item>
  <guid isPermaLink='true'>https://bioinformaticsonline.com/researchlabs/view/4656/pandey-lab</guid>
  <pubDate>Fri, 20 Sep 2013 13:19:18 -0500</pubDate>
  <link></link>
  <title><![CDATA[Pandey Lab]]></title>
  <description><![CDATA[
<p>The Pandey Lab at Johns Hopkins University is a Systems Biology lab that combines molecular biology, analytical chemistry and computational biology with various "Omics" technologies including genomics and proteomics to understand signaling pathways and to identify therapeutic targets and biomarkers in a number of cancers.</p>

<p>More at http://pandeylab.igm.jhmi.edu/</p>

<p>http://scholar.google.com/citations?user=OhuG0FcAAAAJ&amp;hl=en</p>
]]></description>
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