
University of California Audio Podcasts (Audio)
277 episodes — Page 2 of 6
Medicaid: What is it Why is it Important What does the Reconciliation Bill mean for the Future
Green Building in the Age of Wild Fires with Drew Hubbell
Sexual Well-Being: How it Evolves as We Age
The Geometry of Reasoning and Learning in the Age of Agentic AI with Stefano Soatto
Youth Mental Health and Conversational AI: AI Use for Emotional Support In the Wild
The Audacity of Listening with Carol Gilligan 2025 Kyoto Prize Laureate in Arts and Philosophy
Growing Human Brains in Space
My Life Has Been Lucky! with Shun-Ichi Amari 2025 Kyoto Prize Laureate in Advanced Technology
Sexual Health and Menopause
What is Menopause?
Defining Perimenopause
An Introduction to Academic Medicine
An Airline Odyssey with Maurice Gallagher
CARTA: The Idea Organ - Questions Answers and Closing Remarks
A Conversation with George Saunders - Writer's Symposium By the Sea 2026
Where Are We Now? Bias in Health AI
Is This Your Only Life?
CARTA: Development and Evolutionary Specializations of Human Cognitive Networks with Nenad Sestan
CARTA: The Costs of Big Brains with Alex Pollen
Artificial Intelligence in (AI-Driven) Healthcare
A Conversation with Jamaica Kincaid - Writer's Symposium By the Sea 2026
CARTA: The Human Brain in its Usual Extraordinary and Compromised States with Bruce Miller
The Impact of AI on Business
Alzheimer's and Other Neurodegenerative Diseases: From Mechanisms to (Faltering) Therapies - Shiley Endowed Lecture
Awake Brain Surgery to Protect Speech
Seizures caused by epilepsy can have a dramatic impact on one's quality of life. For Nolan, his seizures cost him everyday independence, including the ability to drive. When he decided to have surgery, he chose awake brain surgery led by Dr. Edward Chang, a neurosurgeon at UCSF. During surgery, Nolan speaks and responds as the medical team carefully maps the language regions of his brain — guiding their treatment of him while protecting his ability to communicate. The result opens a path back toward the freedoms Nolan has been missing. [Health and Medicine] [Show ID: 41414]
Social Science Careers in Climate Action
Climate action needs more than great science, it needs people who understand how communities, institutions, and policy actually change. The Climate Action Lab in UC San Diego’s School of Social Sciences spotlights alumni building climate careers across sustainability, climate, and public policy. Panelists trace the paths that led them into the field, share how social science training helped them navigate real-world climate work, and offer practical lessons they’ve learned along the way. Expect candid career advice, an honest look at challenges in climate-related roles, and a clear case for why the social sciences are essential to addressing climate change. Series: "Career Channel" [Education] [Show ID: 41405]
Germline Epigenetic Imprints Regulate Mammalian Development with Azim Surani 2025 Kyoto Prize Laureate in Basic Sciences
Azim Surani, Director of Research at the Gurdon Institute and Professor Emeritus at University of Cambridge, received the Kyoto Prize in Basic Sciences, specifically in the field of Life Sciences and Medicine, for his work in demonstrating how male and female mammalian genomes receive distinct imprints during germ cell development. Genomic imprinting introduced a novel concept to Mendelian genetics and is a now fundamental principle in the life sciences. Surani's research has contributed to developmental biology and epigenetics, along with a wide range of life science fields including physiology, regenerative medicine, reproductive medicine, and plant science. Series: "Kyoto Prize Symposium" [Science] [Show ID: 41117]
CARTA: The Transformational Potential of Computer-assisted Brains with Joseph Paradiso
From stone tools and shelters to symbolic art and abstract thought, human history is shaped by a brain built to form and share ideas. Joseph Paradiso, Professor in Media Arts and Sciences at the MIT Media Lab, explores what comes next after the early visions of ubiquitous computing have largely arrived in today’s Internet of Things world, where low-power sensors and interfaces are embedded in smart devices across our environments and connect seamlessly to widespread networking infrastructure. He asks how this information connects to people, and how perception, cognition, and identity might expand beyond our corporeal confines. Drawing on recent projects from his Responsive Environments research group, he examines sensing at multiple scales in the physical world, including wearables, smart buildings, connected landscapes, and space missions, and the different ways sensed or inferred information can connect to people. Examples include smart buildings as “prosthetic” extensions of their inhabitants, manifesting sensed or inferred phenomena in virtual analog environments, and interfaces modulated by user attention and focus or augmented by real-time AI. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41327]
Mapping Cognitive Resilience: How Environment Aging and Inflammation Shape Information Encoding in the Hippocampus
Cognitive resilience depends on how the brain responds to environment, aging, and inflammation. J. Tiago Gonçalves, Ph.D., studies the hippocampus to examine how spatial memory is shaped by factors such as cognitive enrichment, exercise, social interaction, disease, and age. Gonçalves explains how adult neurogenesis and microglia help support the brain’s ability to encode information, and how disruptions in these systems can affect memory. He also shows that aging and systemic inflammation can weaken spatial encoding while still revealing signs of adaptation and recovery over time. By connecting brain plasticity, immune activity, and memory formation, Gonçalves presents a broader view of how cognition changes across the lifespan and how these mechanisms may inform future strategies for addressing cognitive decline Series: "Stem Cell Channel" [Health and Medicine] [Science] [Show ID: 40848]
Learning Beyond the Data: Adam Klivans on Distribution Shift and the Future of AI
Trustworthy machine learning requires models that still work when real-world data changes, and Adam Klivans, Ph.D., Director of the Institute for Foundations of Machine Learning (IFML), emphasizes learning under “distribution shift” as a major barrier to relying on models to predict disease across different patient populations. IFML focuses on foundational algorithms and mathematical techniques that push generative AI forward, including better methods for training and inference in deep learning and advances in diffusion approaches. Klivans highlights robustness and safety as core priorities, asking how to trust a model trained in one setting when it is applied in another. IFML connects these foundations to use-inspired domains such as imaging, protein engineering and biologics, and AI for mathematical discovery. Series: "Data Science Channel" [Science] [Show ID: 40972]
Where Innovation Meets Patients: The Work of California’s Alpha Clinics
Alpha Clinics in California accelerate the development of regenerative medicine therapies that use cells and genes to treat serious diseases. Patient advocate Tara Radcliffe Ghiglieri shares lived experience with gene therapy, while Sheldon Morris, M.D., M.P.H., Mehrdad Abedi, M.D., Daniela A. Bota, M.D., Ph.D., Catriona Jamieson, M.D., Ph.D., Michael Lewis, M.D., Mark Walters, M.D., and Leo D. Wang, M.D., Ph.D., describe how Alpha Clinic teams design and deliver clinical trials for a wide range of conditions, including cancer, blood disorders, neurologic disease, osteoarthritis, metabolic disorders, pulmonary arterial hypertension, and Duchenne muscular dystrophy. They highlight how coordinated networks, community partnerships, and genomic tools help expand access, lower financial barriers, and bring promising cell and gene therapies to more patients while carefully tracking safety, effectiveness, and long-term outcomes. Series: "Stem Cell Channel" [Health and Medicine] [Show ID: 41168]
A Conversation with Judy Woodruff - Writer's Symposium By the Sea 2026
Widely regarded as one of the most respected figures in American broadcast journalism, Judy Woodruff is known for her decades-long career covering politics and current events. She is also the author of the book, This Is Judy Woodruff at the White House. Renowned for her calm, balanced reporting and commitment to journalistic integrity, Woodruff has covered every U.S. presidential election since 1976. A former anchor and managing editor of the PBS NewsHour, she now travels the country reporting for America at a Crossroads. Woodruff joins host Dean Nelson for a engaging conversation at Point Loma Nazarene University. Series: "Writer's Symposium By The Sea" [Public Affairs] [Humanities] [Show ID: 41203]
CARTA: The Evolution of the Human Brain through Shifts in Gene Regulation with Miles Wilkinson
A fundamental question in biology is: how did humans acquire their unique characteristics? What allows us to stand upright, while our primate ancestors walked on all fours? What brain alterations drove our increased intelligence and allowed us to perceive our own mortality? One of the mechanisms that has been hypothesized to be involved is changes in gene expression elicited by nucleotide alterations in non-coding regions of the human genome. Miles Wilkinson, a professor in the Department of Obstetrics, Gynecology, and Reproductive Sciences at UC, San Diego, discusses a class of DNA sequences hypothesized to have this role. These human accelerated regions (HARs) are segments of DNA that exhibit 3 characteristics that—together—make them prime candidates for specifying human-specific traits by altering patterns of gene expression. First, HARs have rapidly changed in sequence specifically in the human lineage. Second, HARs are highly conserved in sequence, indicating they that must have been selected for the ability to confer one or more function in higher organisms. Third, the vast majority of HARs are in the non-coding portion of animal genomes, indicating that most are likely to have a regulatory function. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41300]
Reimagining T Cell Therapy: An Unconventional Path to Universal CAR-T Cells
Off-the-shelf immune cell therapies using engineered T cells represent an important direction in cancer treatment. Lili Yang, Ph.D., at UCLA develops an off-the-shelf platform based on invariant natural killer T (iNKT) cells generated from hematopoietic stem cells, often sourced from cord blood. Yang programs these stem cells with iNKT cell receptors, chimeric antigen receptors (CARs), and genes such as IL-15 to create pure, expandable iNKT products that recognize lipid antigens presented by non polymorphic CD1d molecules. These cells combine multiple killing mechanisms, infiltrate tissues, target tumor cells and immunosuppressive myeloid cells, and show reduced risk of graft versus host disease and cytokine release syndrome in preclinical models. Yang’s group tests this strategy in models of blood cancers and solid tumors, aiming to generate many therapeutic doses from a single donor. Series: "Stem Cell Channel" [Health and Medicine] [Show ID: 40846]
How to be Remarkable with Guy Kawasaki
Guy Kawasaki, chief evangelist of Canva and a former Apple evangelist who helped market the Macintosh in 1984, shares his 10 tips for writing your own story forward. A New York Times bestselling author, Kawasaki uses reinvention and resilience as a framework for decision-making in personal and professional life. His books include "Wiser Guy: Life-Changing Revelations and Revisions from Tech’s Chief Evangelist," reflecting lessons from his career and his Remarkable People podcast. Presented in conjunction with UC Your Future, a signature UC San Diego Division of Extended Studies Lifelong Learning Program designed to ignite possibility, strengthen resilience, and empower individuals to shape the next chapter of their lives with intention and creativity. Series: "Career Channel" [Business] [Show ID: 41266]
CARTA: Human Brain Specializations Related to Language and Theory of Mind with James Rilling
Humans excel at transmitting ideas, skills, and knowledge across generations, and at building on those competencies in a cumulative manner. James Rilling, Professor of Psychology at Emory University, explores how the transmission of our cumulative culture is assumed to depend on both language and mental perspective-taking, or theory of mind. If humans have specialized abilities in these domains, we must have neurobiological specializations to support them. Our research has used comparative primate neuroimaging to attempt to identify such specializations. The arcuate fasciculus is a white matter fiber tract that links Wernicke’s and Broca’s language areas. It is known to be involved in multiple, high level linguistic functions such as lexical semantics, complex syntax, and speech fluency. Using diffusion weighted imaging and tractography, we have demonstrated human specializations in the size and trajectory of the arcuate fasciculus that may partially explain human linguistic abilities. Theory of Mind depends on a set of cortical regions that belong to a neural network known as the default mode network that is functionally connected, highly active at rest, and deactivated by attention-demanding cognitive tasks. We and others have used functional neuroimaging to show that chimpanzees and other primates appear to have a default mode network that is similar to that of humans. However, the non-human primate default mode network seems to have weaker connectivity between certain key nodes, suggesting that these connections could play a role in human theory of mind specializations. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41329]
Slowing the Clock: Longevity Science Meets Alzheimer’s Prevention
How fast are you really aging, and what could that mean for brain health? Aladdin H. Shadyab, Ph.D., explores the gap between chronological age and biological age, and why that difference matters for long-term health. Shadyab describes tools that use information from blood to estimate how quickly the body is aging, including approaches that look beyond the body as a whole to consider aging in specific systems. He connects faster biological aging with higher risk for age-related disease and declines in physical and cognitive function, and discusses how blood-based biomarkers may offer earlier signals of processes linked to Alzheimer’s disease. Shadyab also highlights lifestyle and treatment findings that may support healthier aging and longer survival. Series: "Stein Institute for Research on Aging" [Health and Medicine] [Show ID: 41073]
Araceli Cervantes: Champion of Latin Dance
Latin dance is a living blend of rhythms, histories, and styles, and Araceli Cervantes approaches it as both cultural practice and personal craft. Cervantes is an actress and dancer whose love for the arts began early and continues to shape her work. Drawing on training that spans Mexican traditional dance as well as contemporary and Latin forms, she brings both technique and joy to performance. A dance champion and medal-winning competitor, Cervantes shares what it takes to keep growing through discipline, resilience, and a commitment to reaching the next level. Series: "Mi Universidad " [Arts and Music] [Education] [Show ID: 41212]
CARTA: Hominin Paleoneurology During the Stone Age - and Before! with Dean Falk
The distinct biology of the human brain, scaffolded by language and culture, allows ideas to be formed, named, shared, and accumulated across generations. Dean Falk, Professor of Anthropology, Florida State University, explains how paleoneurologists study the brains of human ancestors by producing endocasts from fossilized skulls and measuring cranial capacities. Dated skulls indicate brain size more than tripled in hominins during the Stone Age that began around 3.5 million years ago, while endocasts can also preserve traces of blood vessels and convolutions, even though sulci are often fragmentary and difficult to interpret. Falk describes how sulcal patterns differ most noticeably between great apes and humans in the lateral prefrontal cortex and in the parieto-occipital association cortices, and she addresses long-running debate about whether the lunate sulcus in evolving hominins marked the anterior border of primary visual cortex as it does in living monkeys and apes. Because few fossils exist from the earlier “Botanic Age,” she outlines how comparative primatology and evolutionary developmental biology can extend the study of brain evolution by considering brain development and locomotion, including bipedalism. She applies this extended paleoneurological synthesis with special attention to auditory entrainment and complex grammatical language. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41328]
What to Expect After Birth: Postpartum Care Basics
CARTA: Human-specific Alterations in Brain Cellular Proportions with Genevieve Konopka
Our brains are engines of imagination—an “idea organ” that has transformed both our species and the planet. Genevieve Konopka, Chair of the Department of Neurobiology in the David Geffen School of Medicine at UCLA, asks how genes drive the development of the cell types that build the human brain and give rise to cognition, and how cognitive behavior emerges from evolutionarily adapted genomic programs. Because the human brain is comprised of heterogenous cell types, she examines gene expression patterns and chromatin states within specific cell types to gain insights into brain evolution and the development of cognitive disorders. Using single cell genomics to compare human and nonhuman primate brains, her work uncovers human brain innovations, including changes in the proportions of immature oligodendrocytes in the neocortex. She recapitulates this result in vitro using stem cell derived models from humans and nonhuman primates, highlighting the intersection of cellular genomics with brain evolution and function. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41298]
CARTA: The Idea Organ - Welcome and Opening Remarks
Humans live in a world of ideas—born in the brain, shared through language, accumulated in culture across generations, and made reality. From the first flaked stone tools to the building of shelters, from figurative and symbolic art to abstract thought, our brains are engines of imagination—an “idea organ” that has transformed both our species and the planet itself. The distinct biology of the human brain, scaffolded by language and culture, allows ideas to be formed, named, shared, and accumulated across generations. This process of cumulative culture, knowledge built upon knowledge, has propelled humans far beyond the cognitive landscapes of other large-brained animals, including our closest living and extinct relatives. This symposium explores how the human brain develops, functions, and maintains its role as the seat of ideas. We trace its story from molecules, cells, neuronal migration and circuitry, to the maternal, parental, and social influences that shape its growth, including the countless ways that brain function can be compromised at any stage of life. We examine how the uniquely human interplay of biology and culture gave rise to a brain capable of perceiving and remaking the world around us. By examining the evolutionary roots of our “idea organ,” we aim to illuminate how this singular capacity emerged—and how it continues to drive human innovation. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41358]
Development of a Multivalent Gene Therapy to Correct Cryptic Splicing in ALS
RNA binding proteins help cells control how genetic information becomes working proteins, and Gene Yeo, Ph.D., M.B.A., at UC San Diego investigates how their disruption contributes to neurodegenerative disease. Yeo focuses on ALS, a severe motor neuron disease in which the RNA binding protein TDP-43 moves from the nucleus to the cytoplasm, loses normal RNA processing functions, and triggers cryptic exons that damage key neuronal genes, including one linked to motor neuropathy. His group maps these RNA changes and develops small nuclear RNA guides packaged in AAV vectors to block harmful splice sites and restore healthy RNA and protein levels. In cell cultures and a humanized mouse model, this strategy improves axon growth and supports the idea that multiplexed RNA-targeted therapies could correct multiple disease pathways at once. Series: "Stem Cell Channel" [Health and Medicine] [Show ID: 41166]
Aging Blood Stem Cells and the Roots of Cancer
Aging is the leading risk factor for cancer, Alzheimer’s, diabetes, and heart disease, and Robert A.J. Signer, Ph.D., studies how aging stem cells shape pre-cancer and healthspan. As deputy director of the Sanford Stem Cell Discovery Center, Signer focuses on rare blood-forming stem cells that self-renew, generate all blood and immune cells, and normally sustain more than 35 trillion blood cells, including about 2 million new red blood cells every second. His group finds that these “Zen” stem cells slow protein production to limit damaging “trash,” but aging stresses overwhelm these defenses. Stress response programs such as HSF1 then help both healthy and mutant stem cells, fueling clonal hematopoiesis, a common, untreated pre-cancerous condition linked to cardiovascular disease, inflammation, cancer, and increased mortality. Series: "Stem Cell Channel" [Health and Medicine] [Show ID: 41253]
CARTA: Neanderthalizing Brain Organoids with Alysson Muotri
Humans live in a world of ideas—born in the brain, shared through language, accumulated in culture across generations, and made reality. Professor Alysson Muotri, UC San Diego Departments of Pediatrics and Cellular and Molecular Medicine, examines how human brain evolution reflects the interplay between genetic innovation and environmental pressures, focusing on Neuro-oncological ventral antigen 1 (NOVA1), an evolutionarily conserved splicing regulator essential for neural development with a protein-coding substitution unique to modern humans compared with Neanderthals and Denisovans. By reintroducing the archaic NOVA1 allele into human induced pluripotent stem cells and studying cortical organoids, the work finds accelerated maturation, increased surface complexity, altered synaptic marker expression, and changes in electrophysiological properties. Muotri also analyzes long-term lead exposure using fossilized teeth from multiple hominid species spanning over two million years, revealing pervasive exposure across extinct and extant hominids. Lead exposure selectively disrupted FOXP2 expression in cortical and thalamic organoids carrying the archaic NOVA1 variant, and findings were independently validated in NOVA1 humanized mouse models with altered vocalization. Together, these results suggest gene–environment interactions may have influenced neural circuit development, social behavior, and complex language capacity. Series: "CARTA - Center for Academic Research and Training in Anthropogeny" [Science] [Show ID: 41297]
Tai Chi for Mind–Body Balance: What an East–West Medicine Doctor Wants You to Know
How can Tai Chi be medicine? Sunny Pak, MD, MPH, shares simple movements that steady the mind, strengthen the body, and enhance qi flow. Series: "UCSF Honoring Origins of Mindfulness Series" [Health and Medicine] [Show ID: 41317]
Extended Studies: Lifelong Learning That Expands Opportunity
UC San Diego’s Division of Extended Studies broadens the university’s public impact by connecting campus expertise to the evolving needs of people and workplaces. Dean Hugo Villar, Ph.D., M.B.A., describes a mission centered on lifelong learning that helps individuals build skills, pursue new opportunities, and stay adaptable as work and technology change. He explains how the division develops applied learning in partnership with employers and community organizations, using workforce insights to keep offerings aligned with real-world demand. Villar also emphasizes how artificial intelligence is integrated across programs so learners can use emerging tools thoughtfully and effectively. Series: "Career Channel" [Business] [Education] [Show ID: 41108]
Science and Seafood: Understanding and Protecting a Precious Natural Resource
If you love seafood, you’re not alone — but every bite comes from a complex and fragile marine ecosystem. To keep our ocean ecosystems thriving and our seafood resources abundant, we need a deeper scientific understanding of how they function. Colleen Petrik, a professor of oceanography at UC San Diego's Scripps Institution of Oceanography, talks about her work studying the changing ecosystem of the ocean from fishing to coastal development. Series: "Jeffrey B. Graham Perspectives on Ocean Science Lecture Series" [Science] [Show ID: 41301]
Back to Our Roots: What Grandma Didn’t Tell You About Chinese Herbs
Why did Grandma ask you to drink that soup? Herbalist Yvonne Lau invites you to uncover the hidden secrets and timeless wisdom of Chinese herbs. Series: "UCSF Honoring Origins of Mindfulness Series" [Health and Medicine] [Show ID: 41316]
Three Ages and Three Intelligences: Exploit Explore Empower with Alison Gopnik
A common model of AI suggests that there is a single measure of intelligence, often called AGI, and that AI systems are agents who can possess more or less of this intelligence. Cognitive science, in contrast, suggests that there are multiple forms of intelligence and that these intelligences trade-off against each other and have a distinctive developmental profile and evolutionary history. Exploitation, the pursuit of goals, resources and utilities, is characteristic of adult cognition. Alison Gopnik, professor of psychology and affiliate professor of philosophy at the UC Berkeley, and a member of the Berkeley AI Research Group, argues that two very different kinds of cognition characterize childhood and elderhood. Childhood is characterized by exploration. In particular, children seek out information about the world. However, forgoing reward for exploration requires support, care and teaching from others. Care and teaching are particularly characteristic of elders and the intelligence of care has a distinctive structure – it involves empowering others – giving them the resources they need to be effective. The combination of these different kinds of intelligence across the course of a life explains human success. Series: "UC Berkeley Graduate Lectures" [Humanities] [Science] [Show ID: 41068]