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NEATCast Episode 4 - How does brain stimulation work? Analytics Table
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About NEATCast Episode 4 - How does brain stimulation work?
Explore NEATCast Episode 4 - How does brain stimulation work? with 2,650 views, 156 likes, and 5 comments. Experience the impact of this video content that has captured audience attention.
β‘ How TMS Rewires the Depressed Brain at the Cellular Level | Dr. Scott Wilke In this episode, resident TMS expert and psychiatrist Dr. Dhakshin Ramanathan sits down with neuroscientist Dr. Scott Wilke to explore the groundbreaking science behind Transcranial Magnetic Stimulation (TMS) and how it impacts the brain at the cellular level. TMS is an FDA-approved treatment for depression, but many people still donβt fully understand how it works inside the brain. Dr. Wilke shares exciting new findings from his lab using a mouse model of depression, revealing how TMS modulates specific neural circuits linked to mood, behavior, and emotional regulation. Together, they discuss the future of brain stimulation therapies, neuroscience research, mental health innovation, and what these discoveries could mean for improving depression treatment in humans. This episode is essential for anyone interested in psychiatry, neuroscience, mental health, brain stimulation, and cutting-edge depression research. π₯ In This Episode: π― What Transcranial Magnetic Stimulation (TMS) actually does in the brain π― How TMS changes neural circuits linked to depression π― New cellular-level discoveries from mouse model research π― The neuroscience behind mood and emotional regulation π― Why TMS is becoming a major breakthrough in psychiatry π― The future of non-invasive brain stimulation therapies π― How neuroscience research could improve depression treatment outcomes π― Brain plasticity, neural activity & mental health recovery ποΈ Topics Covered: β Depression and brain circuitry β TMS therapy and brain stimulation β Neuroscience research and neural modulation β Psychiatry and innovative mental health treatments β Neuroplasticity and emotional processing β The future of depression therapies β Cellular neuroscience and behavior β Mental health and brain science CHAPTER 0:00 β Introduction to the episode and guest Dr. Scott Wilke 1:17 β What is Transcranial Magnetic Stimulation (TMS)? 3:26 β Why TMS is different from antidepressant medications 5:23 β How does TMS work for depression? 6:26 β Repetitive TMS and neuroplasticity explained 7:33 β The dorsolateral prefrontal cortex and depression 9:07 β Why researchers needed a mouse model of TMS 11:08 β The challenge of building a mouse-sized TMS coil 14:18 β Creating a focal, clinically relevant rodent TMS system 16:26 β Keeping mice awake during TMS experiments 17:00 β Solving the overheating problem with liquid cooling 18:31 β Validating antidepressant-like effects in mice 20:21 β Investigating how TMS changes the brain 21:33 β Different neuron types in the prefrontal cortex 22:27 β Why researchers suspected TMS affects neuron classes differently 23:49 β Clinical observations that inspired the hypothesis 26:13 β TMS selectively affects IT neurons 26:46 β Functional changes in neuron activity after TMS 27:55 β Stress, synapse loss, and structural brain changes 28:33 β TMS restores synaptic connections in IT neurons 29:10 β Why understanding TMS mechanisms matters clinically 30:36 β Could this research lead to better brain stimulation treatments? 31:57 β IT neurons vs PT neurons in depression treatment 32:13 β Personalizing TMS by tuning stimulation patterns 34:01 β Why translational animal models are important 34:37 β Limitations of the study and animal research 35:39 β Similarities and differences between mouse and human brains 36:36 β Why mice do not βhave depressionβ 37:22 β The importance of translating findings back to humans 37:50 β Closing thoughts and future directions π¨ββοΈ About the Guests: Dr. Dhakshin Ramanathan is a psychiatrist and expert in Transcranial Magnetic Stimulation (TMS) and brain-based mental health treatments. Dr. Scott Wilke is a neuroscientist researching how brain circuits and neural activity contribute to depression and emotional behavior. π§ Subscribe for more conversations on neuroscience, psychiatry, brain health, mental wellness, and innovative therapies shaping the future of healthcare. #TMS #DepressionTreatment #Neuroscience #MentalHealth #Psychiatry #BrainHealth #TranscranialMagneticStimulation
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