Week 2 of ACAN (Networks and Systems) introduced students to a wide range of in vivo techniques and skills. Experts from across Australasia and internationally came to teach our students the theory and hands-on practicals. @ausneurosoc.bsky.social
Australasian Course in Advanced Neuroscience
@acancourse.bsky.social
The Australasian Course in Advanced Neuroscience (ACAN) is an intensive neuroscience course targeted at early to mid-career researchers with the aim of providing substantial training in modern neuroscience techniques. https://ans.org.au/acan/
We're now into week 2 of ACA - Networks and Systems. See the photos for some highlights of week 1 where all students managed to patch multiple cells, even some dendrites! @ausneurosoc.bsky.social
Less than a week until ACAN 2026! Week 1 introduces students to the theory and practical aspects of electrophysiology, from ex vivo to in vivo recordings. Guiding our students are experts from the USA, Europe, and Australasia. @ausneurosoc.bsky.social
Only 2 weeks until ACAN 2026! The course wouldn't be possible without the funding and equipment from our institutional partners and sponsors. @ausneurosoc.bsky.social
📣Due to unforeseen issues in the application process affecting various applicants, we are re-opening applications until 11:59pm, Wednesday 18 March 2026. @ausneurosoc.bsky.social
Reminder that ACAN 2026 applications are due in 5 days, Saturday the 8th of March. Applications requires letters of support, so give yourself enough time to apply and head to ans.org.au/acan/applica... if you haven't already. @ausneurosoc.bsky.social
Application
ans.org.au
📣ACAN 2026 applications are now open! ACAN continues in 2026 at UNSW from May 10 - 30. Go to ans.org.au/acan/applica... and submit by Saturday 8th March 2026. Over 50 faculty from around the world will provide hands-on training in ephys, imaging, behaviour and more. You don't want to miss out!
Further info for ACAN 2026: Registration fee is $5,250 AUD (~3,100 EUR and 3,650 USD – currency exchange rate applies at the time of payment). The course fee covers the whole course, accommodation, and meals. It is anticipated that the student’s host laboratory will cover the registration fee.
📣ACAN 2026 applications are now open! ACAN continues in 2026 at UNSW from May 10 - 30. Go to ans.org.au/acan/applica... and submit by Saturday 8th March 2026. Over 50 faculty from around the world will provide hands-on training in ephys, imaging, behaviour and more. You don't want to miss out!
We are happy to share that #IBRO will support the Australasian Course in Advanced Neuroscience that we are organizing in Sydney from May 10th to 30th. @ibroorg.bsky.social #training #neuroscience #IBROSupportedSchool #IBROinAfrica #IBROinLatAm #IBROinAsiaPacific #IBROinEurope #IBROinUSCanada
We're happy to welcome A/Prof Robyn Brown as the new co-director of ACAN and head of fundraising. A/Prof Brown has been a faculty member of ACAN for several years and we're looking forward to having her help pushing ACAN forward. @ausneurosoc.bsky.social findanexpert.unimelb.edu.au/profile/1508...
A/Prof Robyn M Brown : Find an Expert : The University of Melbourne
Robyn Brown is a DECRA Fellow and laboratory head in the Department of Biochemistry and Pharmacology. She completed her PhD at Monash Institute of Pharmaceutical Sciences (MIPS) in 2010 and a Bachelor of Commerce/Science (hons) in 2004 at University of Melbourne. In 2011 she obtained a Sir Keith Murdoch Fellowship from the Amercian Australian Association to undertake postdoctoral training in the laboratory of Peter Kalivas (Medical University of South Carolina) where she contributed to a number of influential studies investigating neuroplasticity in drug addiction. During her postdoc Robyn established an independent line of research investigating the parallels between drug addiction and overeating. In 2014 Robyn returned to Australia (Florey Institute of Neuroscience and Mental Health) where she continued this line of research and has been continuously funded in the form of career awards and major grants since her return. Her laboratory studies the neural mechanisms underlying pathological forms of motivated behaviour such as loss-of-control eating and drug addiction, as well as the impact of high-fat high-sugar food on the brain and behaviour. Her team uses a multi-disciplinary approach including behavioural models, electrophysiology, fibre photometry, chemogenetics, optogenetics, transgenic mouse models, viral methods and confocal microscopy.
findanexpert.unimelb.edu.au
After 7 years in the role, Prof Elena Bagley has stepped down from her role as ACAN co-director and fundraising head. We are very grateful to Prof Bagley for her hard work in securing the funding and sponsorship needed to deliver the advanced and hands-on training at ACAN. @ausneurosoc.bsky.social
Planning for ACAN 2026 is well underway and we're excited to announce that Dr Christina Mo has joined as a co-director (florey.edu.au/researcher/c...). Christina's expertise strengthen our focus on bridging imaging approaches and in vivo systems neuroscience. @ausneurosoc.bsky.social
Dr Christina Mo | Researcher | The Florey
Dr Christina Mo is interested in the neural basis of thoughts and decisions, and uses calcium imaging and behavioural tasks to understand the circuitry.
florey.edu.au
🎉That's a wrap for ACAN 2025, the 20th anniversary of ACAN 🎉. Well done to our 12 students for making it through 21 days of intensive training! Congratulations to Jay Bertran-Gonzalez and the entire team who volunteered their time to put on an amazing course. We look forward to ACAN 2026.
The ACAN community has great spirit, built on a passion for neuroscience and collaboration. Some behind the scenes of an ACAN birthday and ACAN faculty showing off the 2025 T-shirt designed by our students.
Week 3 is coming to an end and we want to thank the main theme sponsor MED Associates for all their behavioural equipment. Also thank you to Doric Lenses, Stoelting, and HP Australia for providing equipment for our students to learn fibre photometry, surgery, and advanced data analysis.
Second last day of ACAN 2025, wrapping up our lecture series with synaptic genes, cognition and mental disorders by Jess Nithianantharajah. A big thank you to @campdeninstruments.bsky.social for sponsoring this special lecture. Providing advanced training isn't possible without such great sponsors.
We're getting to the end of ACAN 2025. Yesterday saw lectures by Nathalie Dehorter on Leigh Walker on acetylcholine in the striatum, and muscarinic control of neural function. We also had a special lecture by John Reynolds on dopamine & acetylcholine in corticostriatal plasticity.
We are now into week 3- systems & behaviour. So far we've had lectures on behaviour, photometry, neurogenesis, & evolution of the cortex from experts across Oz & the USA. In the labs we've been running conditioning experiments, electroporation, fibre photometry, and a lot of advanced data analysis.
Today's lectures were given by @meunierlab.bsky.social and Victor Anggono on probing synaptic with super resolution microscopy, and the molecular structure of learning and memory. In the afternoon the students will have a go at super resolution, and TIRF microscopy.
Imaging week continues with lectures from @ethanscottlab.bsky.social and Lezanne Ooi on light sheet imaging in zebrafish, and brain organoids respectively. Today the students try their hand at light sheet imaging, imaging organoids, and MEA recordings from organoids.
Today the students had lectures from John Power and Jack Waters on calcium imaging and wide field imaging respectively. In the lab the students start their 2 photon, intravital imaging, and confocal microscopy workshop rotations.
Thank you to all our week 1 faculty for volunteering their time. A special thank you to our ephys instructors for all their preparation and staying past midnight each day to train the students. Ben Lau, Toby Bluett, Lee Fletcher, Alex Tang, Cherry Mao, Bryony Winters, and Stephen Williams
We are now into week 2 of ACAN - Network and Systems. This week focusses on advanced imaging techniques and how to combine it with electrophysiology. At the end of last week we saw students patch dendrites and have a go at paired neuron recordings. Congrats to Chow and Bronwyn for winning the prizes
Day 5 of ACAN had a lectures on dendritic integration, and in vivo recordings. In the lab we have been learning dendritic recordings with a special prize sponsored by Prof Cliff Abraham. Due to popular demand, Prof Stephen Williams gave an impromptu part 2 lecture on dendrites at 10pm!
Days 3 & 4 of ACAN saw lectures on axonal signalling, synaptic transmission, synaptic plasticity, and learning. Last night we had a hot topic lecture by Prof Chris Reid on translational research for rare forms of epilepsy.In the lab we have collected and analysed current and voltage clamp data.
Day 2 at ACAN featured lectures on the electrical structure of neurons, and ion channels by Prof Greg Stuart and Dr Bill Connelly. In the lab the students studied voltage-current relationships with many students patching their first cells.
ACAN 2025 has started! Today we started with a course overview and introduction to the week 1 theme by course directors Jay and Lee. It wouldn't be ACAN electrophysiology if the first lecture wasn't by Prof John Bekkers on "The Golden Rules of Electrophysiology".
Last but not least, we have @sushmithasp.bsky.social and Sadaf. Sushmitha's PhD studies the role of astrocytes and inflammation in ALS. Sadaf's PhD investigates the molecular properties of inhibitory interneurons in the adult and aged brain.
Next is Bronwyn and Morgane. Bronwyn's PhD at Auckland Uni investigates how the tail striatum contributes to sensory symptoms of neurological disorders. Morgane's PhD at the NIN investigates how chandelier cells modulate the axon initial segment of pyramidal neurons during predictive coding.
Next up we have @raphapricci.bsky.social and Luke Keevers. Luke's PhD at UNSW investigates how aversive events lead to appropriate behaviour adaptation. Raphael is an ECR at the Mater and UQ, investigating how abnormal myelination impacts neuropsychiatric and neurodegenerative disorders.