PHY3012 Integrative neuroscience
Faculty of Science
PHY3012 Integrative neuroscience is a level 3, 6-credit-point, undergraduate unit from the Faculty of Science, offered in 2020 in Semester 2 at Clayton. It has no prerequisites.
- Credit points
- 6
- Offered in 2020
- Semester 2
- Clayton
- Assessment
- Exam 50%
- and 3 other tasks
This is the 2020 handbook entry. See the 2027 entry.
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Requisites
Before PHY3012
No prerequisites or corequisites besides the enrolment rules below.
After PHY3012
No unit lists PHY3012 as a prerequisite in the 2020 handbook.
Overview
The major focus of this course relates to "neuronal plasticity" associated with nervous system function in health and disease. Structural and functional changes in nervous system function occur throughout development, adulthood and in disease states associated with neural dysfunction. This course seeks to: focus on specific examples of plastic changes in nervous system function; identify and describe mechanisms contributing to neuronal plasticity; develop an understanding of functional physiological and pathophysiological consequences of neuronal plasticity. We will explore neuronal plasticity at the cellular and neural circuit level associated with higher brain function, such as learning and memory, motor control, cognition and consciousness, and how disruption and dysfunction of neural circuit function contributes to disease states including Alzheimer's, Parkinson's, and Huntington's disease and traumatic brain injury-induced epilepsy. At the level of the peripheral nervous system and spinal cord, functional plasticity underlying the development of chronic pain states will be described. Throughout the course, an emphasis is placed on the use of state-of-the-art research and diagnostic technologies to investigate neural function, including imaging techniques. Emphasis is on assisted self-directed and project based learning.
Offerings in 2020
| Teaching period | Campus | Mode |
|---|---|---|
| Second semester | Clayton | On campus |
Assessment
- Project (weeks 1-6 of semester)15%
- Mid-Semester test20%
- Project (weeks 7-12 of semester)15%
- Examination (2 hours and 10 minutes)Threshold hurdle50%
Learning outcomes
When you finish this unit, you should be able to:
- 1
Describe the fundamental mechanisms underlying neuronal communication and plasticity via synaptic and non-synaptic routes.
- 2
Recognise molecular, cellular and neural circuit components contributing to higher brain function and disease.
- 3
Describe the neural responses to brain injury, neurodegeneration, pain and ageing.
- 4
Describe how knowledge of the functional operation of neural circuits can be used to devise novel therapeutic approaches targeting neurological disorders.
- 5
Critically evaluate scientific information and communicate this in an oral or poster presentation.
- 6
Work collaboratively and cohesively as a team.
Workload and teaching
- Lectures23 hours
- Workshops24 hours
- Teaching approachActive learning
- Teaching approachResearch activities
Two 1-hour lectures and one 3-hour practical/discussion class per week
Two research projects are on offer instead of practical/laboratory sessions where you are given the opportunity to work in teams to tackle a research project which is designed to reinforce lecture content.
You are required to complete 2 research projects. For the projects, you will work in teams to tackle a research project which will include conducting a literature review on the topic, data analysis and communication of the findings in the form of a poster and an oral presentation.
Where it fits
PHY3012 is part of 1 area of study in the 2020 handbook.
Contacts
- Unit Coordinators
- Associate Professor Siew Chai
- Chief Examiners
- Dr Yan Wong
Common questions
What are the prerequisites for PHY3012?
PHY3012 has no prerequisites, but enrolment rules apply.
When is PHY3012 offered?
In 2020, PHY3012 runs in Semester 2 at Clayton.
Does PHY3012 have an exam?
Yes. The exam is worth 50% of the final mark, alongside 3 other tasks.
Which majors and minors include PHY3012?
PHY3012 is part of Physiology.