If you missed our awesome webinars... CATCH-UP HERE, as leading experts discuss a range of neuro-techniques and best practices for our silicon neural probes in a variety of experimental settings and species from in vitro to head-fixed to free-behaving. https://t.co/l5gJaMNfNp
Don't miss out on this exciting webinar detailing methods for studying theta oscillations and corticohippocampal function using Pten genetic knockout mice, as a model for autism spectrum disorder and epilepsy https://t.co/zgJQ3qsj06
Don't miss out on this exciting webinar detailing methods for studying theta oscillations and corticohippocampal function using Pten genetic knockout mice, as a model for autism spectrum disorder and epilepsy https://t.co/zgJQ3qsj06
Join us with the super-talented Ellery Jones for a tour-de-force methods-focussed webinar on how she developed prism googles that mice can wear, (yes MICE!) as dissect the electrophysiological neural underpinnings of visual adaptation. Grab your spot now: https://t.co/CKnVzjk7I1
Join us with the super-talented Ellery Jones for a tour-de-force methods-focussed webinar on how she developed prism googles that mice can wear, (yes MICE!) as dissect the electrophysiological neural underpinnings of visual adaptation. Grab your spot now: https://t.co/CKnVzjk7I1
Join us on March 12th to get the inside-track on how to perform dual-site MiniScope calcium recordings in freely-behaving rats - you won't want to miss this one! #miniscope Grab your spot here: https://t.co/FUEgFN5pWm
Join us on March 12th to get the inside-track on how to perform dual-site MiniScope calcium recordings in freely-behaving rats - you won't want to miss this one! #miniscope Grab your spot here: https://t.co/FUEgFN5pWm
Join us on March 5th for a deep-dive webinar of a novel platform (MouseWalk) built to enable head-fixed locomotion in mice undergoing multi-modal studies with electrophysiology, 2-photon imaging and focussed ultrasound.
Grab your spot now ➡️ https://t.co/UptzG9QSJR
Join us on March 5th for a deep-dive webinar of a novel platform (MouseWalk) built to enable head-fixed locomotion in mice undergoing multi-modal studies with electrophysiology, 2-photon imaging and focussed ultrasound.
Grab your spot now ➡️ https://t.co/UptzG9QSJR
Today, Michael Zabolocki, postdoc from the @Knoblich_lab will speak at @CambNeuroTech's Neural Probe Techniques Webinars. Michael, whose project recently got funded by @MSCActions, will discuss electrophysiological characterization of human brain organoids.
Join us on Jun 11th for a tour de force deep-dive on electrophysiological characterisation of human brain organoids with Michael Zabolocki @IMBA_Vienna - @organoidscience. Grab your spot now ⏬https://t.co/y68j2q1ZSo
Join us on Jun 11th for a tour de force deep-dive on electrophysiological characterisation of human brain organoids with Michael Zabolocki @IMBA_Vienna - @organoidscience. Grab your spot now ⏬https://t.co/y68j2q1ZSo
Join us on Apr 30th with @cloois for a super cool webinar on combining electrophysiology with diverse optical methods such as wide-field or 2-photon imaging, fiber photometry, and optogenetic perturbations in awake, behaving mice. Grab your spot here: https://t.co/y68j2q1s2Q
Join us on Apr 30th with @cloois for a super cool webinar on combining electrophysiology with diverse optical methods such as wide-field or 2-photon imaging, fiber photometry, and optogenetic perturbations in awake, behaving mice. Grab your spot here: https://t.co/y68j2q1s2Q
TOMORROW ⬇️- join us to discover how to use optical stimulation to selectively manipulate neuronal plasticity during real-time learning. This is super-cool!
If you're interested in the plasticity mechanisms at play during premotor cortical learning of lick-timing then you'll love this! Join us with the talented @ShouvikMajumd11 from the Inagaki lab at @MPFNeuro Register here: https://t.co/y68j2q1s2Q
If you're interested in the plasticity mechanisms at play during premotor cortical learning of lick-timing then you'll love this! Join us with the talented @ShouvikMajumd11 from the Inagaki lab at @MPFNeuro Register here: https://t.co/y68j2q1s2Q
This is a super exciting step forward for human assembloids - stunning work from @Sergiu_P_Pasca Lab - they even used 4 of our silicon neural probes at the same time to measure synchronous activity across all 4 #organoids segments! https://t.co/CVV93rTT3i
Today we are sharing our most complex #assembloid to date: a 4-part model of the human ascending neural somatosensory pathway generated by functionally integrating stem cell-derived cerebral cortical, thalamic, spinal and sensory #organoids.
Check out the @biorxivpreprint and a short video of activity as these parts self-assemble
Work led by the multi-talented Ji-il Kim & Kent Imaizumi
https://t.co/MjHOBya05Q
I may be biased but this should be a fun talk tomorrow! Come learn about how neurons in a special wasp's brain identifies "a wasp" and "which wasp" it is seeing using multichannel electrophysiology in a tiny brain!
Join us TOMORROW for what promises to be an excellent talk on the electrophysiology of face-cell analogs in wasps, with the talented @PlasticPercep (Chris Jernigan) from Mike Sheehan's @IDsignals lab at Cornell. Grab your spot here: https://t.co/RMS2fXK1Xm