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<CourseUnit xmlns="http://www.manchester.ac.uk/CUICourseUnitDetails" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.manchester.ac.uk/CUICourseUnitDetails.xsd">
  <UnitCode Applicant="Y" Label="Unit code" Student="Y">
    <Code>BIOL68911</Code>
  </UnitCode>
  <UnitTitle Applicant="Y" Label="Unit title" Student="Y">
    <Title>Technologies Workshops</Title>
  </UnitTitle>
  <MaxUnits Applicant="Y" Label="Credit rating" Student="Y">
    <Units>15</Units>
  </MaxUnits>
  <TeachingPeriods Applicant="Y" Label="Teaching period(s)" Student="Y">
    <Period>Semester 1</Period>
  </TeachingPeriods>
  <AcademicCareer Applicant="Y" Label="Academic career" Student="Y">
    <Value>Postgraduate Taught</Value>
  </AcademicCareer>
  <UnitLevel Applicant="Y" Label="Unit level" Student="Y">
    <Level>Level 7</Level>
  </UnitLevel>
  <StaffList Applicant="Y" Label="Teaching staff" RoleLabel="Course Unit Role" Student="Y">
    <StaffMember>
      <Name>Michael Bromley</Name>
      <Role>Unit coordinator</Role>
    </StaffMember>
  </StaffList>
  <OfferedBy Applicant="Y" Label="Offered by" Student="Y">
    <OrganisationList>
      <Organisation>
        <OrgName>School of Biological Sciences</OrgName>
      </Organisation>
    </OrganisationList>
    <GroupList>
      <Group>
        <GroupName></GroupName>
      </Group>
    </GroupList>
    <FheqLevels>
      <FheqLevel>
        <LevelNumber>1</LevelNumber>
        <LevelName>FHEQ level (Framework for Higher Education Qualifications) ' Masters/Integrated Masters P4 ' </LevelName>
      </FheqLevel>
    </FheqLevels>
    <Ects>
      <MaxUnits>European Credit Transfer &amp; Accumulation System Rating :   7.5</MaxUnits>
    </Ects>
  </OfferedBy>
  <MarketingOverview Applicant="Y" Label="Marketing Course unit overview" Student="">
    <Content>&lt;p&gt;Advanced technologies workshops will take place throughout the academic year, providing practical training in advanced research methods. Students will be taught the theoretical basis of advanced technologies delivered in situ in the University&amp;rsquo;s research facilities and by highly skilled researchers or facility managers. Opportunities to gain hands-on experience via practical demonstrations and real-time experimentation will be included wherever possible. Exemplar raw datasets and real data analysis exercises will be made available during workshops and on Blackboard to support your learning, when possible.&lt;/p&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</Content>
  </MarketingOverview>
  <UnitOverview Applicant="" Label="Course unit overview" Student="Y">
    <Content>&lt;p&gt;Advanced technologies workshops will take place throughout the academic year, providing practical training in advanced research methods. Students will be taught the theoretical basis of advanced technologies delivered in situ in the University&amp;rsquo;s research facilities and by highly skilled researchers or facility managers. Opportunities to gain hands-on experience via practical demonstrations and real-time experimentation will be included wherever possible. Exemplar raw datasets and real data analysis exercises will be made available during workshops and on Blackboard to support your learning, when possible.&lt;/p&gt;</Content>
  </UnitOverview>
  <Aims Applicant="Y" Label="Aims" Student="Y">
    <Content>&lt;div&gt;	&lt;p&gt;Equip students with a working understanding of the application of a wide repertoire of advanced scientific methods at the cutting edge of&amp;nbsp;infection-related research, including flow cytometry, single cell technologies, imaging and mathematical modelling.&lt;/p&gt;&lt;p&gt;Equip students with a working knowledge of mechanistic approaches to problem-solving in molecular and cellular biomedical science.&lt;/p&gt;&lt;p&gt;Enable students to understand the principles of modelling of host and microbial aspects of infection to help characterize the host-pathogen interaction.&lt;/p&gt;&lt;p&gt;Enable students to harness critical thinking and synthesis techniques by integration of data of varying types, and from a range of sources.&lt;/p&gt;&lt;/div&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</Content>
  </Aims>
  <LearningOutcomes Applicant="Y" Label="Learning outcomes" Student="Y">
    <Content></Content>
  </LearningOutcomes>
  <Knowledge Applicant="Y" Label="Knowledge and understanding" Student="Y">
    <Content>&lt;p&gt;Understand and apply the theory and practice of research methods and scientific techniques basic to the discipline&lt;/p&gt;&lt;p&gt;Understand the practical issues and problems associated with conducting high quality research, including ethical issues&lt;/p&gt;&lt;p&gt;Work individually and collaboratively to identify appropriate methodology during experimental planning, interpret and present scientific data, interrogate relevant scientific literature and develop research plans&lt;/p&gt;&lt;p&gt;Recognise potential methodological failings and strategize accordingly&lt;/p&gt;&lt;p&gt;Understand state-of-the-art scientific methodology together with the philosophical contexts within which research is conducted in science and medicine&amp;nbsp;&lt;/p&gt;</Content>
  </Knowledge>
  <IntellectualSkills Applicant="Y" Label="Intellectual skills" Student="Y">
    <Content>&lt;p&gt;Understand and be able to critically appreciate methodology, including the appropriate selection of quantitative or qualitative methods&lt;/p&gt;&lt;p&gt;Recognise the importance of rigour in collecting, analysing and interpreting data&lt;/p&gt;&lt;p&gt;Exhibit creativity in learning, scientific endeavour and research skills&lt;/p&gt;</Content>
  </IntellectualSkills>
  <PracticalSkills Applicant="Y" Label="Practical skills" Student="Y">
    <Content>&lt;p&gt;Demonstrate practical dexterity in the commonly employed and more advanced practical techniques of molecular and cellular microbiology and immunology&lt;/p&gt;&lt;p&gt;Demonstrate competence in practical laboratory skills to enable sound and reproducible collection of data&lt;/p&gt;&lt;p&gt;Design research projects using appropriate methodologies to address specific research questions&lt;/p&gt;&lt;p&gt;Recognise the importance of justifying expenditure (cost and time) during experimental planning&amp;nbsp;&lt;/p&gt;</Content>
  </PracticalSkills>
  <TransferableSkills Applicant="Y" Label="Transferable skills and personal qualities" Student="Y">
    <Content>&lt;p&gt;Effectively manage time resources and set priorities&lt;/p&gt;&lt;p&gt;Demonstrate a capacity for self-directed, independent learning and adopt the principles of critical reflection and evaluation&lt;/p&gt;&lt;p&gt;Understand and comply with the requirements of research governance&lt;/p&gt;&lt;p&gt;Recognise the views of others and work constructively with them in a multidisciplinary context&lt;/p&gt;</Content>
  </TransferableSkills>
  <EmployabilitySkillsList Applicant="Y" Label="Employability skills" Student="Y">
    <Skill>
      <SkillId></SkillId>
      <SkillDescription></SkillDescription>
    </Skill>
  </EmployabilitySkillsList>
  <Syllabus Applicant="Y" Label="Syllabus" Student="Y">
    <Content></Content>
  </Syllabus>
  <TeachingMethods Applicant="Y" Label="Teaching and learning methods" Student="Y">
    <Content>&lt;div&gt;	&lt;p&gt;Workshop-based teaching&lt;/p&gt;&lt;p&gt;On-line resources&lt;/p&gt;&lt;p&gt;Independent study&lt;/p&gt;&lt;/div&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</Content>
  </TeachingMethods>
  <AssessmentMethods Applicant="Y" Label="Assessment methods" Student="Y">
    <IntroText> </IntroText>
    <Method>
      <MethodId>0</MethodId>
      <MethodName>Other</MethodName>
      <MethodWeight>50%</MethodWeight>
    </Method>
    <Method>
      <MethodId>9</MethodId>
      <MethodName>Set exercise</MethodName>
      <MethodWeight>50%</MethodWeight>
    </Method>
    <OtherDescription>&lt;p&gt;Multiple choice questions (50%)&amp;nbsp;&lt;/p&gt;&lt;p&gt;Data Processing, Analysis and Summary exercise (50%)&amp;nbsp;&lt;/p&gt;&lt;p&gt;&amp;nbsp;&lt;/p&gt;</OtherDescription>
  </AssessmentMethods>
  <FeedbackMethods Applicant="Y" Label="Feedback methods" Student="Y">
    <Content>&lt;p&gt;Marks will be provided online within 15 working days of assessment deadline&lt;/p&gt;</Content>
  </FeedbackMethods>
  <RequirementsList Applicant="Y" Label="Pre/co-requisites" Student="Y">
    <Requirement>
      <UnitCode></UnitCode>
      <UnitTitle></UnitTitle>
      <RequirementType></RequirementType>
      <Description></Description>
    </Requirement>
    <AdditionalRequirement></AdditionalRequirement>
  </RequirementsList>
  <AcademicPrograms Applicant="Y" Label="Academic programmes" Student="Y">
    <AcademicProgram>
      <Program></Program>
      <Plan></Plan>
      <Level></Level>
      <Requirement></Requirement>
    </AcademicProgram>
  </AcademicPrograms>
  <FreeChoice Applicant="Y" Label="Available as a free choice unit?" Student="Y">
    <Content>N</Content>
  </FreeChoice>
  <Accreditation Applicant="Y" Label="Accreditation" Student="Y">
    <Content></Content>
  </Accreditation>
  <RecommendedReading Applicant="Y" Label="Recommended reading" Student="Y">
    <Content>&lt;p&gt;Jeffrey D Martell, Thomas J Deerinck, Stephanie S Lam, Mark H Ellisman, Alice Y Ting (2017) Electron microscopy using the genetically encoded APEX2 tag in cultured mammalian cells Nature Protocols 12, 1792&amp;ndash;1816. doi:10.1038/nprot.2017.065&lt;/p&gt;&lt;p&gt;Cheung RK, Utz PJ. SCREENING: CyTOF&amp;mdash;the next generation of cell detection.&amp;nbsp;&lt;em&gt;Nature Reviews Rheumatology&lt;/em&gt;. 2011;7(9):502-503. doi:10.1038/nrrheum.2011.110.&lt;/p&gt;&lt;p&gt;Mora J, Chunyk AG, Dysinger M, et al. Next Generation Ligand Binding Assays&amp;mdash;Review of Emerging Technologies&amp;rsquo; Capabilities to Enhance Throughput and Multiplexing.&amp;nbsp;&lt;em&gt;The AAPS Journal&lt;/em&gt;. 2014;16(6):1175-1184. doi:10.1208/s12248-014-9660-1.&lt;/p&gt;&lt;p&gt;Atkuri KR, Stevens JC, Neubert H. (2014) Mass cytometry: a highly multiplexed single-cell technology for advancing drug development. &lt;em&gt;Drug Metab Dispos&lt;/em&gt;. 43(2):227-33. doi: 10.1124/dmd.114.060798.&lt;/p&gt;&lt;p&gt;Kay AW, Strauss-Albee DM, Blish CA. Application of Mass Cytometry (CyTOF) for Functional and Phenotypic Analysis of Natural Killer Cells.&amp;nbsp;&lt;em&gt;Methods in molecular biology (Clifton, NJ)&lt;/em&gt;. 2016;1441:13-26. doi:10.1007/978-1-4939-3684-7_2.&lt;/p&gt;&lt;p&gt;Sandra Nell, Sebastian Suerbaum, Christine Josenhans (2010) The impact of the microbiota on the pathogenesis of IBD: lessons from mouse infection models &lt;em&gt;Nature Reviews Microbiology&lt;/em&gt; 8, 564&amp;ndash;577. doi:10.1038/nrmicro2403&lt;/p&gt;&lt;p&gt;Rory M Power &amp;amp; Jan Huisken (2017) A guide to light-sheet fluorescence microscopy for multiscale imaging &lt;em&gt;Nature Methods&lt;/em&gt; 14, 360&amp;ndash;373. doi:10.1038/nmeth.4224&lt;/p&gt;&lt;p&gt;Charles Gawad, Winston Koh &amp;amp; Stephen R. Quake (2016) Single-cell genome sequencing: current state of the science &lt;em&gt;Nature Reviews Genetics&lt;/em&gt; 17, 175&amp;ndash;188. doi:10.1038/nrg.2015.16&lt;/p&gt;</Content>
  </RecommendedReading>
  <StudyHours Applicant="Y" Label="Study hours" Student="Y">
    <IntroText> </IntroText>
    <ScheduledHours Applicant="Y" Label="Scheduled activity hours" Student="Y">
      <ActivityHours>
        <ActivityType>Practical classes &amp; workshops</ActivityType>
        <Hours>100</Hours>
      </ActivityHours>
    </ScheduledHours>
    <PlacementHours Applicant="Y" Label="Placement hours" Student="Y">
      <ActivityHours>
        <ActivityType></ActivityType>
        <Hours>0</Hours>
      </ActivityHours>
    </PlacementHours>
    <TotalHours Applicant="Y" Label="Independent study hours" Student="Y">
      <Hours>50</Hours>
    </TotalHours>
  </StudyHours>
  <Notes Applicant="Y" Label="Additional notes" Student="Y">
    <Content>&lt;p&gt;40 hours face-to-face teaching in &amp;lsquo;Technologies&amp;rsquo; workshops, 40 hours online learning via exemplar datasets and questionnaires, 20 hours assignment preparation, 50 hours independent study.&amp;nbsp;&lt;/p&gt;</Content>
  </Notes>
</CourseUnit>
