Nigel Rogasch
@NigelRogasch
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Research Fellow and lab head at @UniofAdelaide, @sahmriAU. Interested in TMS, EEG, networks, memory
Adelaide, South Australia
Joined January 2016
Dear all. My family and I have been overwhelmed by the outpouring of love, support, and generosity over the year and especially in the last few days. I feel privileged to be part of such an amazing community. Thank you all so much!
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We are excited to announce our new paper “Experimental Suppression of TMS-EEG Sensory Potentials,” published in Human Brain mapping! This paper introduces a protocol called ATTENUATE for minimizing sensory confounds in TMS-EEG. 1/10
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New 3 yr post-doc in our Systems Neuroscience Group "Generative models of brain disorders" Applications open now -> July 15th https://t.co/Pe206xgABa
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The last part of my PhD is finally, officially out! We focused on stochastic models which use simple wiring rules based on a trade-off between cost and value to generate brain-like networks. We wanted expanded upon these models in two main ways.... https://t.co/qoBpPvYmSL
science.org
Including brain physiology and physical growth in generative network models improves their ability to capture brain topology.
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If you are living with fibromyalgia and using transauricular vagus nerve stimulation then we would like to hear your experiences. Please click on the link: https://t.co/CONypGliUZ to make your way to the online survey being run by University of South Australia (ethics 204387)
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How does TMS excite the brain? In this consensus & critical position paper, we summarize what we know (and still do not know) about the neurophysiological underpinnings of transcranial magnetic stimulation (TMS). A big "thank you" to all co-authors for their valuable input !
[Transcranial magnetic stimulation (TMS)] Siebner et al.: "Myelinated axon terminals of pyramidal cells and inhibitory interneurons in the crown of the gyri constitute low-threshold targets for TMS." https://t.co/1UfzuAHlPj
@DRCMR_MRI
https://t.co/LzHAzeGMZ5
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“Asymmetric Signaling Across the Hierarchy of Cytoarchitecture within the Human Connectome” — new preprint with @DaniSBassett, @sattertt and the team at @Penn @pennbioeng @PennMedicine! 🥳 https://t.co/XtKGXu3C44
biorxiv.org
Cortical variations in cytoarchitecture form a sensory-fugal axis that systematically shapes regional profiles of extrinsic connectivity. Additionally, this axis is thought to guide signal propagat...
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Our new preprint investigating the links between GWAS and pharmacological treatments in psychiatry is now out 🧬💊🎯: https://t.co/UR2XXKeS7G! Together with @benfulcher, @AFornito, Janette Tong, Ken Pang, and Mark Bellgrove. See a 🧵for more 👇:
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What do High Frequency Oscillations (HFO) and Short Interval Intracortical Facilitation (SICF) have in common? And, what is the role of the cortical myelin in high frequencies? Check out what we found in @brainstimj: https://t.co/eDyMjT1Wzf
brainstimjrnl.com
The human primary sensory (S1) and primary motor (M1) hand areas feature high-frequency neuronal responses. Electrical nerve stimulation evokes high-frequency oscillations (HFO) at around 650 Hz in...
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Department of Neuroscience and Biomedical Engineering (NBE) at @AaltoUniversity will organize the 8th Science Factory: TMS–EEG Workshop and Summer School, on September 16–21, 2022 @tmseeg Registration deadline: June 2, 2022 More information at
aalto.fi
The Department of Neuroscience and Biomedical Engineering at Aalto University School of Science will organize the 8th Science Factory: TMS–EEG Summer School and Workshop, on Sep 16–21, 2022. The main...
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Interested in neural mass models of large-scale brain dynamics? Tread carefully! Final version of paper on how model results depend on data quality lead by @Kevin_M_Aquino is now out. Peep orig thread below. https://t.co/Ae4uGpOoeN.
Have you ever wondered how models of resting state fMRI really perform? Then this is the thread (+ pp https://t.co/vdKCMp2tOK) for you! 🧵1/8 In collaboration with: @AFornito @bendfulcher @LindenParkes @StuartJOldham + Deco, G + Gollo, L.
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Very excited to share our tool for improved/standardised neural burst detection, called fBOSC! @biorxiv_neursci @WCHN_UCL @Nic_AAlexander
https://t.co/TsnhqUcWjP
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My third paper is now published. Umm it's a weird one with a range of 'findings' that ultimately beg the question- 'what are we even measuring with EEG during working memory tasks?' Check it out here 👇
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Our latest PP: https://t.co/iJeygPTkm9. Amazing work by @AshleaSegal in close collab with @amarquand and many others, using a multi scale approach to understand individual differences of brain deviations in 6 psychiatric disorders. Peep the thread...
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Tomorrow is #InternationalWomensDay! We'll be celebrating the achievements of women in STEM, and discussing how we can #BreakTheBias by calling out gender bias, discrimination and stereotyping when we see it. #GenderEquality #IWD2022 #IWD #WomenInSTEM @brain_stim @SharnaJamadar
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Happy International Women’s Day! This year’s theme is #BreakTheBias. Read more about our new President, A/Prof Hannah Keage (she/her) @CAIN_Lab, and how she hopes to build on ACNS’s open, inclusive and progressive culture https://t.co/vii2taQ6aI
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Incredibly proud of Tim West’s latest work on restoring network-wide fingerprints using brain stimulation @PLOSCompBiol @MRCBNDU @OxNeuro : https://t.co/4gZJHpFG4y
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My first animal work and first brain stimulation/optogenetic work with @FlavioFrohlich. https://t.co/zdQoTXiOtL . We ask how exactly the phase of alpha oscillations modulates neuronal excitability! 1/4
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My first work with @justinmriddle & @FlavioFrohlich connecting dynamical systems concepts such as bistability to understanding intrinsic symptom dynamics in depression and the treatment effects of closed-loop deep brain stimulation https://t.co/8nV1ifheWv 1/4
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Reinventing the wheel: We needed to control the TMS device both from MATLAB and from the device itself. First, I tried a hack with MAGIC toolbox, reading the status after I saw a trigger. But, the 'get' commands took way too long (a few seconds). 🧵 https://t.co/0cItUp9ATx 1/X
github.com
A toolbox for TMS-EMG experiments. Contribute to L2K2/TMSEMG_toolbox development by creating an account on GitHub.
Want to remotely control your TMS device via MATLAB? The open-source MAGIC toolbox is what you need: https://t.co/tqPY2OPWPd (published in Brain Stimulation: https://t.co/TfFTy0T7u0; preprint at https://t.co/KjmNnPisj6).
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