Bornali Kundu
bkundu.bsky.social
Bornali Kundu
@bkundu.bsky.social
neurosurgeon, neuroscientist
Reposted by Bornali Kundu
Dear scientists of BlueSky: Wouldn't it be great to learn how large language models work by running experiments on them and analyzing the data? Yeah, you can do that, and I'll show you how.
mikexcohen.substack.com/s/ml-on-llms
Dissecting LLMs with ML | Mike X Cohen | Substack
Understand how large language models (LLMs) really work by applying machine learning (ML) methods to their internal activations. Each post explores how LLMs process text, isolate patterns, and generat...
mikexcohen.substack.com
September 1, 2025 at 4:13 PM
Reposted by Bornali Kundu
A new study led by @doriswang.bsky.social's lab developed a systematic way to quantify key aspects of gait in patients with #Parkinsons and used machine learning to identify personalized deep brain stimulation (DBS) settings to improve walking: www.ucsf.edu/news/2025/07...
@ucsfhealth.bsky.social 🧠📈
July 23, 2025 at 9:26 PM
Reposted by Bornali Kundu
Just dropped in @natcomms.nature.com: we show that re-engaging a thalamic–ventral tegmental circuit with deep brain stimulation can reignite consciousness in patients with severe brain injury. Work led by Aaron Warren, with @andreashorn.org @foxmdphd.bsky.social @ others! tinyurl.com/4kz8j89b
A human brain network linked to restoration of consciousness after deep brain stimulation - Nature Communications
In people with severe brain injuries, stimulation restored consciousness by engaging a deep brain circuit for wakefulness—revealing a target that may also guide treatment in stroke and epilepsy.
www.nature.com
July 21, 2025 at 9:39 PM
Reposted by Bornali Kundu
Very excited to share our newest publication on identifying neurophysiological signatures of improved gait using bidirectional DBS devices!
New in npj Parkinson's Disease, @doriswang.bsky.social's lab presents an AI approach for identifying personalized deep brain stimulation (DBS) settings to improve walking. The findings lay the groundwork for adaptive DBS systems that adjust in real-time: www.nature.com/articles/s41...
🧠📈 🧪
June 30, 2025 at 3:29 PM
Reposted by Bornali Kundu
The fastest-growing neurological disorder is also one of the hardest to recognize. Get an overview of the fundamental diagnostic and clinical tools: 30-minute module » https://loom.ly/axmgg-4
June 3, 2025 at 8:41 PM
Reposted by Bornali Kundu
New paper from our group showing how neural traveling waves can be evoked by stimulation of the human brain.

www.jneurosci.org/content/earl...
Macroscale traveling waves evoked by single-pulse stimulation of the human brain
Understanding the spatiotemporal dynamics of neural signal propagation is fundamental to unraveling the complexities of brain function. Emerging evidence suggests that cortico-cortical evoked potentia...
www.jneurosci.org
April 20, 2025 at 4:31 PM
Reposted by Bornali Kundu
In @elife.bsky.social: Human single-neuron activity is modulated by intracranial theta burst stimulation of the basolateral amygdala doi.org/10.7554/eLif...
Human single-neuron activity is modulated by intracranial theta burst stimulation of the basolateral amygdala
doi.org
April 11, 2025 at 9:59 PM