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James Pang

@jchrispang.bsky.social

NHMRC Emerging Leadership Fellow at the School of Psychological Sciences, Monash University Physicist/neuroscientist working on neuroimaging and computational models in human and non-human species

142 Followers  |  37 Following  |  27 Posts  |  Joined: 02.02.2025  |  2.5161

Latest posts by jchrispang.bsky.social on Bluesky

If you’re attending #OHBM2025 and will be your first time visiting Brisbane, this is an amazing resource created by the student and postdoc group

20.06.2025 01:12 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

Due to unforeseen circumstances, we've extended the deadline to apply for our Systems and Comp Neuro postdoc position by a week (new deadline: May 25)! πŸ₯³

If you have experience in modelling brain dynamics &/or analysing (s, d, f)MRI, we want you! Please help spread the word πŸ‘‡

18.05.2025 04:38 β€” πŸ‘ 1    πŸ” 3    πŸ’¬ 0    πŸ“Œ 0

Applications for our postdoc position closes in 6 days! (Deadline: May 18 11:55pm AEST)

If you are interested in MRI, modelling of brain dynamics, and genetics in health, disease, or across evolution, we would love for you to join our teamπŸ‘‡πŸ‘‡

12.05.2025 00:44 β€” πŸ‘ 11    πŸ” 10    πŸ’¬ 0    πŸ“Œ 0

Please share with anyone who you think might be interested

@ohbm-australia.bsky.social @acnsau.bsky.social @ausneurosoc.bsky.social @ohbmtrainees.bsky.social

17.04.2025 04:33 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

The job is for at least two years, and we're looking for someone who can start before the end of the year.

Job ad closes on May 28 (see link for details).

DM or email me at james{dot}pang1@monash{dot}edu for further questions.

17.04.2025 04:33 β€” πŸ‘ 1    πŸ” 1    πŸ’¬ 1    πŸ“Œ 0
Job Search

We are hiring!

@aurinaarn.bsky.social and I are jointly looking for a talented Postdoc in Systems and Comp Neuro at Monash (AUS).

If you like neuroimaging 🧠, comp models πŸ’», genetics 🧬, brain disorders πŸ€•, and/or evolution 🐡🐭, this could be the job for you!!

careers.pageuppeople.com/513/cw/en/jo...

17.04.2025 04:33 β€” πŸ‘ 29    πŸ” 25    πŸ’¬ 2    πŸ“Œ 3
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🐷🧠

05.02.2025 05:32 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 1

Average should be fine

03.02.2025 18:18 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0

Send me some 🐷 brains to add to the library πŸ˜†πŸ˜†

03.02.2025 18:02 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0

Thanks!

03.02.2025 08:05 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

Thanks!

03.02.2025 08:05 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

Thanks!

03.02.2025 08:05 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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Geometric influences on the regional organization of the mammalian brain (!)

Great new work lead by James Pang,
@alexfornito.bsky.social & star collaborators!

www.biorxiv.org/content/10.1...

02.02.2025 07:27 β€” πŸ‘ 60    πŸ” 25    πŸ’¬ 0    πŸ“Œ 2

For anyone interested in using our methods, the paper's associated GitHub page will be released soon.

In the meantime, check out the preprint's main text and supps for all the juicy details. Can also send a DM or email at james{dot}pang1{at}monash{dot}edu for more info. (15/n)

03.02.2025 00:44 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

We started this in 2021, so it has been a long 4 yr study! Big thanks to @alexfornito.bsky.social PRobinson @kevinaquino.bsky.social PLevi @dralexholmes.bsky.social MMarkicevic XShen TFunck NPalomero RKong @bttyeo.bsky.social JTiego MBellgrove @toddc.bsky.social ELake @drbreaky.bsky.social (14/n)

03.02.2025 00:44 β€” πŸ‘ 8    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0

In summary, this work points to a fundamental role that geometry plays not just in shaping brain function but also in its regional organization that is conserved across the mammalian species. (13/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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We find highly robust correspondence between model solutions vs geometric modes and model parcs vs geometric parcs, demonstrating that the reaction-diffusion process may represent a conserved developmental mechanism for establishing the regional organization of the brain. (12/n)

03.02.2025 00:44 β€” πŸ‘ 3    πŸ” 0    πŸ’¬ 1    πŸ“Œ 1
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We want to go further and provide mechanistic insights into why our geometric parcellations work so well. Hence, we go back to the initial motivation of this study and develop a computational model that mimics the reaction and diffusion of patterning molecules. (11/n)

03.02.2025 00:44 β€” πŸ‘ 3    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Fourth, we can even go to the individual level, only needing individual-specific cortical surfaces. (10/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 2    πŸ“Œ 0
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Third, the approach and homogeneity results are generalizable to non-neocortical structures such as subcortical and allocortical structures (i.e., HIP, AMY, THA, NAc, GP, PUT, CAU). (9/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Second, thanks to the data in the beautiful study of Schwartz et al. (2023, Nat Comms), we show that we can generate parcs for 24 other mammalian species, covering the Primata, Scandentia, Dermoptera, Rodentia, and Lagomorpha orders. Most don't even have parcs to date! (8/n)

03.02.2025 00:44 β€” πŸ‘ 6    πŸ” 1    πŸ’¬ 1    πŸ“Œ 0
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The great thing about our approach is that it only requires T1w MRI, so it is highly generalizable!

First, it is generalizable to mammals (macaque, marmoset, mousse neocortices), with superior homogeneity against 15 existing parcs across 114 FC and non-FC phenotypes. (7/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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We also find that the homogeneity of the geometric parcs remains superior across 242 non-FC cortical phenotypes, covering diverse properties of morphometry, microstructure, cytoarchitecture, metabolism, gene expression, chemoarchitecture, and fMRI task activations! (6/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Focusing first on the human neocortex, we find that the geometric parcs produce regions that are more functionally homogeneous (FC based on 3 independent resting-state fMRI datasets) than those in nearly all 17 cortical parcs commonly used in the field. (5/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Inspired by this equivalence, we use the geometric eigenmodes (which can be derived directly from T1w MRI) to develop a simple, hierarchical approach for generating a multiscale parcellation of any brain structure. We term as geometric parcellations. (4/n)

03.02.2025 00:44 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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We know that patterning molecules (morphogens) are crucial for areal specification early in development. Interestingly, their expressions align with the rostrocaudal, mediolateral, and dorsoventral axes, corres. to low-order geometric modes. Image from O'Leary et al. (2017) (3/n)

03.02.2025 00:44 β€” πŸ‘ 3    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
Preview
Geometric constraints on human brain function - Nature Cortical and subcortical activity can be parsimoniously understood as resulting from excitations of fundamental, resonant modes of the brain’s geometry rather than from modes of complex interregional ...

Following our recent work showing how geometry constrains function (nature.com/articles/s41...), we ask whether geometry can also inform the regionalization of the brain.

This is an important question as parcellations/atlases are fundamental to many aspects of neuroscience. (2/n)

03.02.2025 00:44 β€” πŸ‘ 7    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Geometric influences on the regional organization of the mammalian brain The mammalian brain is comprised of anatomically and functionally distinct regions. Substantial work over the past century has pursued the generation of ever-more accurate maps of regional boundaries,...

For my first-ever bluesky post, I'm really excited to share our new preprint "Geometric influences on the regional organization of the mammalian brain" with @alexfornito.bsky.social and a superstar 17-person team! (1/n)

www.biorxiv.org/content/10.1...

03.02.2025 00:44 β€” πŸ‘ 63    πŸ” 32    πŸ’¬ 2    πŸ“Œ 5

@jchrispang is following 20 prominent accounts