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An electrophysiological breakthrough for diab

<p style="text-align:justify">A research team from the Institute for Research on Next-generation Semiconductor and Sensing Science (IRES&sup2;) at the Toyohashi University of Technology, National Institute of Technology, Ibaraki College, and TechnoPro R&amp;D Company has successfully demonstrated low-invasive neural recording technology for the brain tissue of diabetic mice. This was achieved using a small needle-electrode with a diameter of 4 &micro;m. Recording neuronal activity within the diabetic brain tissue is particularly challenging due to various complications, including the development of cerebrovascular disease. Because of the significant advantage of the miniaturized needle-electrode compared to conventional technologies, the needle electrode minimized tissue injury and enabled stable recording for an entire month.</p>
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D Koji Yamashita , Shohei Yokoyama , Koji Yamashita , Takeshi Kawano , Rika Numano , Shota Yamagiwa , Rioki Sanda , Kowa Koida , Kensei Sakamoto , Ibaraki College , National Institute Of Technology , Institute For Research On Semiconductor , Takeda Science Foundation , Method Of Research , Development Background , Toyohashi University Of Technology , Technopro Rd Company , Nagai Foundation For Science Technology , Seamless Technology , Next Generation Semiconductor , Sensing Science , Toyohashi University , National Institute , Hirohito Sawahata , Grant Numbers , Strategic Advancement ,

New Bluetooth-Low-Energy-Based Wireless Neuronal Recording System


New Bluetooth-Low-Energy-Based Wireless Neuronal Recording System
Scientists have now created a compact, lightweight, Bluetooth-low-energy-based wireless neuronal recording system.
The wireless system was developed by researchers from the Department of Electrical and Electronic Information Engineering, Department of Computer Science and Engineering, Department of Applied Chemistry and Life Science, and the Electronics-Inspired Interdisciplinary Research Institute (EIIRIS) at the Toyohashi University of Technology.
The weight of the system is less than 3.9 g and it measures 15 × 15 × 12 mm
3 together with the battery. The system offers the benefits of ideal versatility, high signal quality, and low cost than wired recording using a commercial neurophysiology system. The study was published online on January 8 ....

Shinnosuke Idogawa , Takeshi Kawano , Kowa Koida , Rika Numano , Interdisciplinary Research Institute , Nagai Foundation For Science Technology , Development Background , Research Team Leader , Takeda Science Foundation , Department Of Computer Science , Toyohashi University Of Technology , Department Of Electrical , Department Of Applied Chemistry , Electronic Information Engineering , Computer Science , Applied Chemistry , Life Science , Toyohashi University , Study First Author , Phd Candidate , Associate Professor , Strategic Advancement , Multi Purpose Ultra Human Robot , Artificial Intelligence Technologies , Nagai Foundation , Takeda Science ,