Register event
  • Bacterial Genomes: Disease Outbreaks and Antimicrobial Resistance

    31 August 2020 - 3 January 2021

    Bacterial Genomes: Disease Outbreaks and Antimicrobial Resistance https://tess.elixir-europe.org/events/bacterial-genomes-disease-outbreaks-and-antimicrobial-resistance-2aa0df3a-e74c-4f5c-acc3-8c2ee0847f71 # Overview * **Duration**: 3 weeks, 3 hours per week * Free * Certificate of achievement available on satisfactory completion * **CPD Approval**: Royal College of Pathologists (9 credits), Royal College of Nursing (9 credits) * **Start Date**: The course is run ‘live’ for 3 weeks from the start date above. Once this period is over there will be no live monitoring of the forums, but you can still join and complete the course during the remaining period. ### Why join the course? The increase in resistance of harmful bacteria to antibiotics is a major global threat to health. Here we explore bacterial genomes and the use of genome sequencing to identify and track these drug resistant bacteria. Join us to discover how genome research is helping scientists and healthcare professionals track disease outbreaks and prevent the rise of antibiotic resistant ‘superbugs’. ### Who is the course for? This course will be of interest to scientists, healthcare professionals, biomedical researchers and bioinformaticians. The course offers all learners an opportunity to learn about genomes, disease, and antimicrobial resistance. You require no previous knowledge of genome science to complete the course. ### What do people say about this course? "_I would definitely point students to this resource. Text, videos, and figures were all very well done._" Pablo Tsukayama, Assistant Professor of Microbiology "_A highlight of the course was the introduction to whole genome sequencing – new information for me._" Christine Laws, Medical Doctor “_Exchanging genetic information quickly throughout the world is clearly going to revolutionise the ability to combat disease._” Prue van der Hoorn, Artist # Programme and start dates ### Course start dates This course is repeated twice a year. ### What topics will you cover? * Diseases caused by bacteria * What bacterial genomes look like * Genome sequencing technology * Mechanisms of transmission and resistance * Genomic epidemiology – tracking the spread of bacterial pathogens * Antimicrobial resistance ### What will you achieve? By the end of the course, you'll be able to... * Explain why some bacteria are pathogenic * Explore the structure of bacterial genomes * Describe the uses of different genome sequencing technologies * Investigate how genome data are used to track the spread of bacterial disease * Discuss the role of genome sequencing in stopping the spread of antimicrobial resistance # Educators ## **Lead Educators** **[Dr Adam Reid][1]** I am a senior staff scientist at the Wellcome Sanger Institute near Cambridge in the United Kingdom. I'm interested in using genomics and bioinformatics to better understand infectious diseases. **[Dr Josie Bryant][2]** I am a Henry Wellcome Postdoctoral Fellow in the University of Cambridge, Department of Medicine. I am working on bacterial genomics and evolution with a focus on within-patient microbial diversity ### Dr Francesca Short I am a scientist at the Wellcome Sanger Institute. I am interested in using functional genomics techniques to understand infections caused by the bacterium _Klebsiella pneumoniae_. ## **Programme Lead Educator** **[Professor Nicholas Thomson][3]** I am a Group Leader at the Wellcome Sanger Institute. I provide scientific oversight for this course. I am interested in bacterial evolution and the spread of infectious disease. ### The course also features interviews with distinguished scientists, including: * **[Mathew Beale][4]** - Wellcome Sanger Institute * **[Daryl Domman][5]** - Wellcome Sanger Institute * **[Gal Horesh][6]** - Wellcome Sanger Institute * **[Catherine Ludden][7]** - London School of Hygiene and Tropical Medicine * **[Tapoka Mkandawire][8]** - Wellcome Sanger Institute * **[Julian Parkhill][9]** - Wellcome Sanger Institute * **Lindsay Pike** - Wellcome Sanger Institute * **[Michael Quail][10]** - Wellcome Sanger Institute * **[Susannah J. Salter][11]** - Wellcome Sanger Institute * **[Estee Torok][12]** - Addenbrooke’s Hospital and University of Cambridge [1]: http://www.sanger.ac.uk/people/directory/reid-adam-james [2]: https://www.infectiousdisease.cam.ac.uk/directory/josie-bryant [3]: http://www.sanger.ac.uk/people/directory/thomson-nicholas-robert [4]: http://www.sanger.ac.uk/people/directory/beale-mathew [5]: http://www.sanger.ac.uk/people/directory/domman-daryl [6]: http://www.sanger.ac.uk/people/directory/horesh-gal [7]: https://www.lshtm.ac.uk/aboutus/people/ludden.catherine [8]: http://www.sanger.ac.uk/people/directory/mkandawire-tapoka-t [9]: http://www.sanger.ac.uk/people/directory/parkhill-julian [10]: http://www.sanger.ac.uk/people/directory/quail-michael-andrew [11]: http://www.sanger.ac.uk/people/directory/salter-susannah-j [12]: https://www.infectiousdisease.cam.ac.uk/directory/et317@medschl.cam.ac.uk # What's Included Wellcome Genome Campus Advanced Courses and Scientific Conferences are offering everyone who joins this course a free digital upgrade, so that you can experience the full benefits of studying online for free. This means that you get: * Unlimited access to this course * Includes any articles, videos, peer reviews and quizzes * Tests to validate your learning * A PDF Certificate of Achievement to prove your success when you’re eligible # CDP Approval 2020-08-31 09:00:00 UTC 2021-01-03 23:59:59 UTC Wellcome Genome Campus - Advanced Courses [] advancedcourses@wellcomegenomecampus.org [] [] workshops_and_courses [] bacterialgenomesAMRHDRUK
  • ELIXIR CZ Artificial Intelligence in Life Sciences I

    26 - 27 October 2020

    Prague, Czechia

    Elixir node event
    ELIXIR CZ Artificial Intelligence in Life Sciences I https://tess.elixir-europe.org/events/elixir-cz-artificial-intelligence-in-life-sciences-i This workshop will provide a basic introduction to machine learning and its application in Life Sciences, with a special focus on molecular and cell biology. Data-driven approaches penetrate various scientific disciplines, including the fields of biology, biochemistry and biotechnology. Novel technologies of high-throughput data collection and advanced data analysis, such as deep neural networks, offer exceptional opportunities for the development of very complex and accurate mathematical models. The theoretical lectures will cover main methods, algorithms and technologies, illustrate their use in biology and biochemistry research using real-life examples. Hands-on practicals will provide participants with essential skills for the application of machine learning methods and software tools for solving problems in Life Sciences. We plan to continue in our effort to organize follow-ups of this meeting and focus on challenging issues in life science disciplines approachable by AI technology. 2020-10-26 11:00:00 UTC 2020-10-27 14:00:00 UTC ELIXIR CZ, IOCB, FNUSA – ICRC, University of West Bohemia Flemingovo nám. 542, 542, Flemingovo náměstí, Prague, Czechia Flemingovo nám. 542, 542, Flemingovo náměstí Prague Hlavní město Praha Czechia 166 10 [] https://www.elixir-czech.cz/events/elixir-cz-artificial-intelligence-in-life-sciences-oct-2020 [] [] 75 workshops_and_courses first_come_first_served Artificial Intelligencemachine learningDrug design
  • Bacterial Genomes: Comparative Genomics using Artemis Comparison Tool (ACT)

    30 November 2020 - 31 January 2021

    Bacterial Genomes: Comparative Genomics using Artemis Comparison Tool (ACT) https://tess.elixir-europe.org/events/bacterial-genomes-comparative-genomics-using-artemis-comparison-tool-act-3e9f10a2-bd0a-4af3-bc39-0d11856143e2 # Overview * **Duration**: 3 weeks, 5 hours per week * Free * Certificate of achievement available on satisfactory completion * **Start Date**: The course is run ‘live’ for 3 weeks from the start date above. Once this period is over there will be no live monitoring of the forums, but you can still join and complete the course during the remaining period. ### Why join the course? Disease outbreaks are still a big problem in our modern world. Comparison between two or more bacterial genomes can help improve understanding of the causes of pathogenicity and outbreaks of disease caused by bacteria. On this course you will learn how to use the free Artemis Comparison Tool (ACT). Developed at the Wellcome Sanger Institute, ACT will help you to visualise the comparison of genomes and analyse the results. ### Who is the course for? This course would benefit those interested in learning how to use tools to investigate and research bacterial genomes, and acquire bioinformatics skills to evaluate the role of microbial genes in disease. Learners will gain experience in comparative genomics, using the Artemis Comparison Tool to probe, visualise and compare genomes, and analyse the results. This course will be of interest to anyone interested in microbiology, including undergraduates, post-graduates, biomedical researchers, microbiologists, bioinformaticians, teachers, and healthcare professionals. The opportunity to gain experience in using the Artemis Comparison Tool, a computational tool designed for comparative genomics, will also be of interest to all those who have studied our pre-requisite courses: those with an interest in genomics and disease outbreaks, teachers and their 16-18-year-old science and computing students. Ideally, you will have completed [Bacterial Genomes: From DNA to Protein Function Using Bioinformatics][1] and [Bacterial Genomes: Accessing and Analysing Microbial Genome Data][2] before joining this course. [1]: /our-events/bacterial-genomes-dna-protein-function-bioinformatics-online-sep19/ [2]: /our-events/bacterial-genomes-accessing-analysing-microbial-genome-data-feb19/ # Programme ### What topics will you cover? Week 1 * Introduction to comparative genomics * Introduction to ACT Week 2 * Analyse available data * Generate your own comparison files * Make your own comparisons in ACT Week 3 * Identify pseudogenes in Mycobacterium leprae using ACT * Peer review project: Comparative genomics on two clinically relevant plasmids from Shigella ### What will you achieve? By the end of the course, you'll be able to... * Explain the advantages of comparative genomics * Explore basic tools of ACT * Interpret results from already generated comparison files * Produce new comparisons and analyse results * Develop hypothesis based on results observation ### What software or tools do you need? This course will give you an opportunity to learn about and use Artemis Comparison Tool (ACT), a free tool used to display pairwise comparisons between two DNA sequences. To run this software effectively, you will require a computer (Windows, Mac or Linux) with 2GB RAM. The current version of ACT requires version 11 of Java to run successfully. Java 11 can be downloaded from [this link][1]. Older versions of ACT require Java 8 to run successfully. Java 8 can be downloaded from [this link][2]. [1]: https://www.oracle.com/technetwork/java/javase/downloads/jdk11-downloads-5066655.html [2]: https://www.java.com/en/download/ # Educators ## Lead Educators ### Dr Anna Protasio I am a researcher in parasitology and life sciences. I am passionate about bioinformatics and how we can use these tools to answer questions in biology. ### Dr Christine Boinett I am a researcher in bacterial genetics and my interest is in understanding the development of resistance in bacterial pathogens using next generation sequencing techniques. ### Dr. Ulrike Böhme I am a researcher in parasitology at the Wellcome Sanger Institute where I work as biocurator for Plasmodium genomes. ### Dr. Pablo Tsukayama I am a professor of microbiology at Universidad Peruana Cayetano Heredia and a visiting research scholar at the Wellcome Sanger Institute. I study how pathogen populations evolve and spread in Peru. ### Martin Aslett I am the IT Manager for the Wellcome Genome Campus Advanced Courses and Scientific Conferences team. My interests lie in bioinformatics and its application to microbial genomics. ### Matthew Dorman I am a graduate student at the Wellcome Sanger Institute, where I research the virulence and the molecular genetics of bacterial pathogens as part of the Infection Genomics programme. ## Programme Lead Educator ### Professor Nicholas Thomson I am a Group Leader at the Wellcome Sanger Institute. I provide scientific oversight for this course. I am interested in bacterial evolution and the spread of infectious disease. # What's Included Wellcome Genome Campus Advanced Courses and Scientific Conferences are offering everyone who joins this course a free digital upgrade, so that you can experience the full benefits of studying online for free. This means that you get: * Unlimited access to this course * Includes any articles, videos, peer reviews and quizzes * Tests to validate your learning * A PDF Certificate of Achievement to prove your success when you’re eligible 2020-11-30 09:00:00 UTC 2021-01-31 23:59:59 UTC Wellcome Genome Campus - Advanced Courses [] advancedcourses@wellcomegenomecampus.org [] [] workshops_and_courses [] comparativegenomicsHDRUK

Note, this map only displays events that have geolocation information in TeSS.
For the complete list of events in TeSS, click the grid tab.