# Sambandamurthy Ganapathy, University at Buffalo - The Human Brain Offers Clues to How to Make AI More Energy Efficient Page: https://stenobird.com/podcast/the-academic-minute-1102038/sambandamurthy-ganapathy-university-at-buffalo-the-human-brain-offers-clues-to-how-to-make-ai-more-energy-efficient Text version: https://stenobird.com/podcast/the-academic-minute-1102038/sambandamurthy-ganapathy-university-at-buffalo-the-human-brain-offers-clues-to-how-to-make-ai-more-energy-efficient.md Podcast: [The Academic Minute](https://stenobird.com/podcast/the-academic-minute-1102038) Published: 2026-06-17T04:01:00+00:00 Episode link: https://www.academicminute.org/p/sambandamurthy-ganapathy-university Audio file: https://api.substack.com/feed/podcast/201777855/c6dadfc0b33286bfba9ac412fd768d14.mp3 Processing state: not_requested JSON: https://stenobird.com/v1/public/podcasts/the-academic-minute-1102038/episodes/sambandamurthy-ganapathy-university-at-buffalo-the-human-brain-offers-clues-to-how-to-make-ai-more-energy-efficient Duration seconds: 150 ## Resource On University at Buffalo Week: Finding ways to reduce AI’s energy consumption can be crucial. Sambandamurthy Ganapathy , professor of physics, explores how the human brain may have an answer. Faculty Bio: Sambandamurthy Ganapathy is a physicist who studies nanoscale materials and devices and how they relate to cutting-edge phenomena like superconductivity and resistive switching. His experimental research group, which uses advanced nanofabrication techniques, designs and develops devices smaller than one micrometer that can explore the fundamental, microscopic mechanisms that dictate physical properties. Ganapathy’s research examines electron transport in semiconductors and other atomic layers under ultra-low temperatures, high magnetic fields and other extreme physical conditions. It also investigates metal-insulator transitions, neuromorphic computing and superconductor-insulator transitions. This work strives to unlock hidden quantum phenomena in novel states of matter which manifest when subatomic particles interact. Transcript: There’s nothing in the world as efficient as the human brain. It can store and process enormous amounts of information while using very little energy. That’s why my team and I are working on computing systems designed to mimic how the brain works. This approach is called neuromorphic computing. It’s been around since the 1980s, but it’s gaining new attention as artificial intelligence makes computing more complex — and far more energy-hungry. Computers and brains are already surprisingly similar. Computers have billions of transistors that switch on and off. Brains have billions of neurons that either fire signals or stay silent. But there’s a major difference. In the brain, memory and processing happen in the same place. In traditional com… ## Actions - request_transcript: `POST https://stenobird.com/v1/public/podcasts/the-academic-minute-1102038/episodes/sambandamurthy-ganapathy-university-at-buffalo-the-human-brain-offers-clues-to-how-to-make-ai-more-energy-efficient/transcription-requests` — Idempotently request low-priority transcript generation for this episode. - read_markdown: `GET https://stenobird.com/podcast/the-academic-minute-1102038/sambandamurthy-ganapathy-university-at-buffalo-the-human-brain-offers-clues-to-how-to-make-ai-more-energy-efficient.md` — Read the agent-friendly Markdown representation of this episode resource. A page view does not enqueue transcription. Agents should invoke `request_transcript` explicitly when they need this episode processed. ## Transcript Full transcripts are not published on public pages unless there is a clear rights basis.