{"type":"rich","version":"1.0","provider_name":"Transistor","provider_url":"https://transistor.fm","author_name":"TrueLife","title":"Living Computers: Can Human Brain Cells Power the Next Generation of AI? | Dr. Ewelina Kurtys","html":"<iframe width=\"100%\" height=\"180\" frameborder=\"no\" scrolling=\"no\" seamless src=\"https://share.transistor.fm/e/2e96b23f\"></iframe>","width":"100%","height":180,"duration":3516,"description":"What happens when computers are built from living human neurons?\nTrueLife explores one of the strangest frontiers in artificial intelligence: biological computing. George Monty speaks with neuroscientist and entrepreneur Dr. Ewelina Kurtys about brain organoids, living neural networks, neuroscience, signal processing, biomedical technology, and the possibility of using living cells to build radically different kinds of computers.\nThe conversation sits at the intersection of AI, neuroscience, biotechnology, brain organoids, biological computing, and the future of technology. We ask what biological computers could mean for energy efficiency, machine intelligence, human-machine relationships, and the boundary between living systems and machines.\nWe also explore the deeper philosophical question: if machines can learn through living neurons, where does computation end and biology begin?\nTopics include: living computers, brain organoids, biological computing, AI and neuroscience, neural networks, human neurons, brain-computer interfaces, biotechnology, machine intelligence, computational neuroscience, biomedical innovation, and the future of AI.\nGuest: Dr. Ewelina Kurtys\nTrueLife Podcast with George Monty","thumbnail_url":"https://img.transistorcdn.com/cw_W_CQmjdVkaGdASnTGkCHS3oiJPYuxv2ObEGu7cmY/rs:fill:0:0:1/w:400/h:400/q:60/mb:500000/aHR0cHM6Ly9pbWct/dXBsb2FkLXByb2R1/Y3Rpb24udHJhbnNp/c3Rvci5mbS84Y2U5/YjI1ZGVhNmQ4NmYz/OGNlOGU0NGY4MmY5/YjJlZi5wbmc.webp","thumbnail_width":300,"thumbnail_height":300}