VET SC 3512RW - Veterinary Immunology and Infectious Diseases III
Roseworthy Campus - Semester 1 - 2018
General Course Information
Course Code VET SC 3512RW Course Veterinary Immunology and Infectious Diseases III Coordinating Unit School of Animal and Veterinary Sciences Term Semester 1 Level Undergraduate Location/s Roseworthy Campus Units 6 Contact Up to 15 hours per week Available for Study Abroad and Exchange Y Prerequisites VET SC 2510RW Restrictions Available to BSc(Veterinary Bioscience) students only Course Description This course will incorporate the pre-clinical scientific disciplines of immunology and microbiology, and highlight the relationship between pathogens and disease at the tissue and animal level in various body systems. The course will introduce the concepts of zoonoses and infectious disease implications for veterinary public health.
Course Coordinator: Dr Farhid Hemmatzadeh
The full timetable of all activities for this course can be accessed from Course Planner.
Course Learning Outcomes
1 Knowledge of the terminology, basic
principles and application of veterinary microbiology and immunology
2 Knowledge of the terminology, basic
principles and application of veterinary public health
3 Knowledge and application of diagnostic and
4 Development of practical laboratory skills
University Graduate Attributes
This course will provide students with an opportunity to develop the Graduate Attribute(s) specified below:
University Graduate Attribute Course Learning Outcome(s) Deep discipline knowledge
- informed and infused by cutting edge research, scaffolded throughout their program of studies
- acquired from personal interaction with research active educators, from year 1
- accredited or validated against national or international standards (for relevant programs)
1,3,4 Critical thinking and problem solving
- steeped in research methods and rigor
- based on empirical evidence and the scientific approach to knowledge development
- demonstrated through appropriate and relevant assessment
1,3 Teamwork and communication skills
- developed from, with, and via the SGDE
- honed through assessment and practice throughout the program of studies
- encouraged and valued in all aspects of learning
1,3 Career and leadership readiness
- technology savvy
- professional and, where relevant, fully accredited
- forward thinking and well informed
- tested and validated by work based experiences
1,3,4 Intercultural and ethical competency
- adept at operating in other cultures
- comfortable with different nationalities and social contexts
- Able to determine and contribute to desirable social outcomes
- demonstrated by study abroad or with an understanding of indigenous knowledges
1,3,4 Self-awareness and emotional intelligence
- a capacity for self-reflection and a willingness to engage in self-appraisal
- open to objective and constructive feedback from supervisors and peers
- able to negotiate difficult social situations, defuse conflict and engage positively in purposeful debate
This course will require the following texts and other resources:
1- Quinn, P. Markey B.K., Carter M., Donnelly W.J., Leonard F. (2011) Veterinary Microbiology and Microbial Disease. Wiley-Blackwell
2-Fenner's Veterinary Virology: The 4th Edition; MacLachlan, N. James and Dubovi, Edward J. Academic Press, 2011
3-A color atlas of virology. Jan Versteeg, Publisher: Chicago : Year Book Medical Publishers, 1985.
4-IR Tizard Veterinary Immunology 8th Ed ISBN 9781416049890
Additional reading resources will be required and will all be available through the Roseworthy library facilities
Learning & Teaching Activities
Learning & Teaching Modes3 x 3hr blocks of lectures per week
2 x 3hr practical sessions per week
The information below is provided as a guide to assist students in engaging appropriately with the course requirements.A student enrolled in a 3 unit course, such as this, should expect to spend, on average 12 hours per week on the studies required. This includes both the formal contact time required to the course (e.g., lectures and practicals), as well as non-contact time (e.g., reading and revision).
Learning Activities SummaryThis course is divided into four components: immunology (30% of total course), virology (30% of total course), bacteriology (30% of total course) and public health(10% of total course). As the course is being redesigned, specific topics may alter, so areas are listed below within each component. Practicals and tutorials will complement the topics listed under lectures.
Lectures will be divided between the components as:
Immunology 22 hrs
· Innate & adaptive immunity
· Cells & tissues
· Antibody structure & function
· The infected would
· Antibody technology
· Cell-mediated immunity
· Receptors & cytokines
· Tolerance & autoimmunity
· Immunity to specific antigens (parasites, viruses, bacteria)
· Neonatal immunity
· Comparative immunology
Virology 35 hrs
· Virus structure and morphology
. Virus classification
· Virus replication
· Viral genetics
· Virus-cell interactions
· Pathogenesis of viral disease
· Diseases caused by viruses (Parvovirus, Caliciviridae, Paramyxoviruses, etc)
Bacteriology 35 hrs
· Bacterial structure
· Growth & nutrition of bacteria
· Classification & identification of bacteria
· What makes a pathogen?
· Host-parasite-environment interactions
· Bacterial genetics
· Antibiotic resistance
· Microbial diversity in health and disease
Practical classes will divided between the components as:
Immunology 21 hrs
Virology 21 hrs
Bacteriology 21 hrs
The University's policy on Assessment for Coursework Programs is based on the following four principles:
- Assessment must encourage and reinforce learning.
- Assessment must enable robust and fair judgements about student performance.
- Assessment practices must be fair and equitable to students and give them the opportunity to demonstrate what they have learned.
- Assessment must maintain academic standards.
Assessment Task Task Type Weighting Hurdle Yes/No Objective being assessed Spot quizzes Formative & Summative 5% No 1,2,3,4 Group assignments and presentations Formative & Summative 16% No 1,2,3,4 Practical assessments (2) Formative & Summative 10% No 1,5 In-semester exams (3) Formative & Summative 23% Yes 1,2,3,4 Final semester exams (3) Summative 46% 1,2,3,4,5
Course component weightings (percent of overall course grade):
Components Weightings Virology 35% Bacteriology& Mycology 35% Immunology 30%
Assessment Related Requirements
Assessment Item with hurdle % needed or requirement to meet hurdle Is additional assessment available if student does not meet hurdle requirement? Yes or No Details of additional assessment, if available Combined in-semester and final written exams Students must attain 50% in total and at least 48% for each component Yes An additional assessment will be offered to the student
Spot Quizzes (5%): The Spot Quizzes (six for virology (3%) and four for microbiology (2%)) will be conducted during lectures and will comprise of Virology and Microbiology content. Each quiz will take approximately 5-10 minutes to complete.
Group Assignments & Presentations (16%) All students in the class are divided into small groups. Each group is involved in completing and submitting an assignment (2000 words) and a 10 minute presentation at the presentation times. The virology presentations and assignments worth 8% (4% each) and microbiology presentations and assignments worth 8% (4% each).
Practical Assessments (10%) The practical assessments will comprise of a bacteriology practical exam (in class time) and assessment of the immunology practical class laboratory notebook.
In-Semester Exams (23%) There will be four in-semester exams covering virology (7%) , microbiology (6%) and immunology x 2 (10%).
Final Semester Written Exams (46%) The final exam is divided into three separated exams on three different days: 1) Virology (15%); 2) Microbiology (16%); 3) Immunology (15%). Each paper may consist of a combination of short answer, multiple choice and long answer questions.
If an extension is not applied for, or not granted then a penalty for late submission will apply. A mark of zero will be allocated to late submitted assessment.
Grades for your performance in this course will be awarded in accordance with the following scheme:
M10 (Coursework Mark Scheme) Grade Mark Description FNS Fail No Submission F 1-49 Fail P 50-64 Pass C 65-74 Credit D 75-84 Distinction HD 85-100 High Distinction CN Continuing NFE No Formal Examination RP Result Pending
Further details of the grades/results can be obtained from Examinations.
Grade Descriptors are available which provide a general guide to the standard of work that is expected at each grade level. More information at Assessment for Coursework Programs.
Final results for this course will be made available through Access Adelaide.
The University places a high priority on approaches to learning and teaching that enhance the student experience. Feedback is sought from students in a variety of ways including on-going engagement with staff, the use of online discussion boards and the use of Student Experience of Learning and Teaching (SELT) surveys as well as GOS surveys and Program reviews.
SELTs are an important source of information to inform individual teaching practice, decisions about teaching duties, and course and program curriculum design. They enable the University to assess how effectively its learning environments and teaching practices facilitate student engagement and learning outcomes. Under the current SELT Policy (http://www.adelaide.edu.au/policies/101/) course SELTs are mandated and must be conducted at the conclusion of each term/semester/trimester for every course offering. Feedback on issues raised through course SELT surveys is made available to enrolled students through various resources (e.g. MyUni). In addition aggregated course SELT data is available.
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This section contains links to relevant assessment-related policies and guidelines - all university policies.
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- Assessment for Coursework Programs
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- Modified Arrangements for Coursework Assessment
- Student Experience of Learning and Teaching Policy
- Student Grievance Resolution Process
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