Deblina Sarkar (@deblinasarkar59) 's Twitter Profile
Deblina Sarkar

@deblinasarkar59

Assistant Professor @MIT
Founder & Director of @NCB_MIT Lab
Inventor, Scientist, Speaker
Neurotechnology, Nanoelectronics, AI

ID: 708853210732175360

linkhttps://web.mit.edu/deblina-sarkar/ calendar_today13-03-2016 03:12:30

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Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Thrilled to share that our work on deterministic switching of atomically layered magnets is one of the top 25 physics papers published in Nature Communications in 2024. These devices can form fundamental building blocks of #energy-#efficient #AI. news.mit.edu/2024/researche… . . @mit

Thrilled to share that our work on deterministic switching of atomically layered magnets is one of the top 25 physics papers published in Nature Communications in 2024. These devices can form fundamental building blocks of #energy-#efficient #AI.

news.mit.edu/2024/researche…
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@mit
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

A #brain #implant that is completely #SurgeryFree is here! No intracranial surgery. No catheters. No surgery related risks or costs! We have built the world’s first #Autonomous and #NonSurgical brain implants for treating intractable neural diseases! This technology can provide

A #brain #implant that is completely #SurgeryFree is here!

No intracranial surgery. No catheters. No surgery related risks or costs!

We have built the world’s first #Autonomous and #NonSurgical brain implants for treating intractable neural diseases! This technology can provide
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Imagine a smartwatch that keeps track of important cells in your blood all day long. Our recent paper introduces #CircTrek - a wearable device that can detect the faintest signals from even a single circulating cell trekking through the blood vessels. This technology creates a

Imagine a smartwatch that keeps track of important cells in your blood all day long. Our recent paper introduces #CircTrek - a wearable device that can detect the faintest signals from even a single circulating cell trekking through the blood vessels. This technology creates a
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

My star student Kyuho Jang will be presenting about our latest technology the #CirkTrek: a wearable device capable of detecting even single circulating cells trekking through the bloodstream, which opens up unprecedented opportunities in health monitoring as well as diagnosis and

My star student Kyuho Jang will be presenting about our latest technology the #CirkTrek: a wearable device capable of detecting even single circulating cells trekking through the bloodstream, which opens up unprecedented opportunities in health monitoring as well as diagnosis and
MIT Media Lab (@medialab) 's Twitter Profile Photo

Developed by researchers in Nano-Cybernetic Biotrek Lab, led by Prof. Deblina Sarkar, #CircTrek is a wearable device capable of detecting individual cells circulating through the bloodstream. Presented in npj Biosensing (npj Journals), CircTrek could facilitate early diagnosis of disease, detect

Developed by researchers in <a href="/NCB_MIT/">Nano-Cybernetic Biotrek Lab</a>, led by Prof. <a href="/DeblinaSarkar59/">Deblina Sarkar</a>, #CircTrek is a wearable device capable of detecting individual cells circulating through the bloodstream. Presented in npj Biosensing (<a href="/Nature_NPJ/">npj Journals</a>), CircTrek could facilitate early diagnosis of disease, detect
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

It was wonderful to give an invited lightning talk at the Brainmind event about our #autonomous and #non-#surgical #brain #implant technology, developed in our lab at MIT. This technology has already been proven through our preclinical animal studies. Now we are excited to

It was wonderful to give an invited lightning talk at the Brainmind event about our #autonomous and #non-#surgical #brain #implant technology, developed in our lab at MIT. This technology has already been proven through our preclinical animal studies. Now we are excited to
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Please #share. Cahira Technologies : our MIT spinoff company is #hiring! Several new positions have been posted in last few days in #nanoelectronic devices, #micro-#nano-#fabrication, #neural-#interface, in vitro & in vivo #electrophysiology and #neuroscience/ #neurotechnology as well

Please #share. 

<a href="/CahiraTech/">Cahira Technologies</a> : our MIT spinoff company is #hiring!

Several new positions have been posted in last few days in #nanoelectronic devices, #micro-#nano-#fabrication, #neural-#interface, in vitro &amp; in vivo #electrophysiology and #neuroscience/ #neurotechnology as well
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Congrats to my star student Hao-Tung Yang for winning the MIT Presidential award! Coming from a bioengineering background, how he has fused physics and electrical enginering for building transformative wireless neural implants, is truly commendable! I am super proud to be his

Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Please #share. Cahira Technologies : our MIT spinoff company is hiring #AI / #ML engineers - #NeuroAI  and #Computational #Neuroscientists! There are multiple open positions in these two areas. We have pioneered the first autonomous, surgery-free electronic brain implants that

Please #share.

<a href="/CahiraTech/">Cahira Technologies</a> : our MIT spinoff company is hiring #AI / #ML engineers - #NeuroAI  and #Computational #Neuroscientists! There are multiple open positions in these two areas.

We have pioneered the first autonomous, surgery-free electronic brain implants that
Deblina Sarkar (@deblinasarkar59) 's Twitter Profile Photo

Our work on bioelectronic treatment of #brain #cancer has recently been highlighted by ChadTough Defeat DIPG Foundation Defeat DIPG Foundation. Diffuse intrinsic pontine glioma (#DIPG) is a lethal pediatric brain cancer, with no existing cure. Surgery is challenging for DIPG because of the risks of

Our work on bioelectronic treatment of #brain #cancer has recently been highlighted by <a href="/chadtough/">ChadTough Defeat DIPG Foundation</a>  Defeat DIPG Foundation.

Diffuse intrinsic pontine glioma (#DIPG) is a lethal pediatric brain cancer, with no existing cure. Surgery is challenging for DIPG because of the risks of