Happy to share our paper, out this week in Cell Reports. We show that a neuron can act as a frequency mixer, and describe a new method for detecting higher-order frequency mixing interactions in brain activity. Always a pleasure to work with @RobertPeach15
If you’re curious about whether and how you can use waveform and spiking information to predict the cell-type of an extracellularly recorded neuron, 1) yes you can, and 2) check out our preprint to find out! We cracked it for the major cell types of the cerebellum cortex. 1/5 🧵
I’m at #SfN23 this year! 👋 Come check out my poster on neuronal dynamics evoked by Temporal Interference stimulation tomorrow morning (Tuesday, 14 Nov, 8am -12pm), board no XX42 🧠⚡️
🔥📢Very excited to see our latest paper now out in @NatureNeuro
By combining temporal interference stimulation and fMRI, we show noninvasive and focal DBS of the human striatum during motor learning
@Neuro_X_EPFL@EPFL
Paper here:
https://t.co/9O1q4FQj0O
Thread below🧵
(1/7) We are thrilled to share our new study on Non-invasive Temporal Interference (TI) Electrical Stimulation of the Human Hippocampus published in @NatureNeuro today https://t.co/Czr5iNC4S6 @inesviolante@Ketevanity@nir_grossman@EddyRhodes
Our improved ability to phase-lock stimuli to the brain has allowed us to begin causally probing previously highlighted phasic dependencies. @VinaoCarl's work demonstrates that the way we analyse phase dependency needs to change. Looking forward to the feedback! #eeg#phase
Hi #neurotwitter, I’m looking for a second SfN sponsor if anyone can help out? Been struggling to find anyone around with a currently active account so would be much appreciated! @SfNtweets
Thrilled to share my PhD work, out in @nature today. @fisekmehmet & I developed an all-optical approach to study long-range connectivity across brain areas. Upshot: visual feedback is spatially organized & nonlinearly integrated in V1 apical dendrites. https://t.co/VuMwuB8tes
Announcing our new work out @CommsPhys! https://t.co/vFNlDZsws2
We demonstrate how electric fields mix with acoustic fields, creating a new electric field that can be shaped by the applied acoustic field.
Hello #BrainStimConf! To learn more about our work, come to symposium 3a tomorrow (21/02/23; 4pm) and check out our posters today (no 173: @Junheng19) and tomorrow (no 175: @pdzialecka; no 178: @Ketevanity; no 180: @xiaoqi_zhu) ⚡️🧠
A generous £7.5 million gift from the Michael Uren Foundation will drive forward experimental research into #Alzheimers disease at @imperialcollege@UKDRI https://t.co/Oxc8HZBTtK
Squirrels just ate the fourth (green!) female squash in the last week. How can I deter them / protect the fruit? Send help 🐿 #GardeningTwitter#gardenlife
On the train to Paris for @FENSorg forum with @CharlotteLuff 🥐 Monday afternoon poster session (2-5:30pm, board no S04-108). Come say hi and find out more about my work on Temporal Interference stimulation⚡️#FENS2022
✨ISN Intro✨Pat (@pdzialecka) is a PhD student in the ISN lab, who investigates the effects of Temporal Interference stimulation on healthy & diseased neural circuits 🧠⚡️ Outside the lab, she enjoys running around, climbing walls & repotting her favourite garden plants 🏃🏻♀️🧗🏻♀️🌱
**********************🧠 WE ARE HIRING 🧠**********************
We have an opening for a postdoc and a research technician, closing 20/10/2021. Apply here:
👉Research Associate: https://t.co/0TJXGK20Ce
👉Research Technician: https://t.co/ZeOl9bTk6d