Improve Flexibility with Research-Supported Stretching Protocols
In this episode, I explain the science behind limb range of motion and flexibility and how to increase them by using science-supported protocols. Flexibility is crucial for physical movements and can help prevent injuries, decrease inflammation, modulate physical and mental pain, impact exercise recovery speed and even potentially slow the progression of certain diseases. I explain the biology of flexibility, including the specific neural mechanisms that sense stretch and load (i.e., tension) on the muscles and limbs, as well as how specific brain regions like the insula combine those signals to ultimately control limb range of movement. I also provide science-based stretching and “micro-stretching” protocols that reliably improve limb flexibility with the minimum necessary time investment. I review all the details of those stretching protocols: how often to do them, for how long, their timing relative to other exercises, sets, the time between sets, measuring progress and more. All people, physically active or not, should benefit from the information and tools described in this episode. For the full show notes, visit hubermanlab.com. Thank you to our sponsors AG1: https://athleticgreens.com/huberman LMNT: https://drinklmnt.com/hubermanlab Waking Up: https://wakingup.com/huberman Momentous: https://livemomentous.com/huberman Timestamps (00:00:00) Flexibility & Stretching (00:02:57) Sponsors: AG1, InsideTracker (00:07:22) Innate Flexibility (00:09:23) Movement: Nervous System, Connective Tissue & Muscle; Range of Motion (00:17:51) Golgi Tendon Organs (GTOs) & Load Sensing Mechanisms (00:20:20) Decreased Flexibility & Aging (00:22:38) Insula, Body Discomfort & Choice (00:30:02) von Economo Neurons, Parasympathetic Activation & Relaxation (00:42:00) Muscle Anatomy & Cellular ‘Lengthening,’ Range of Motion (00:47:16) Tool: Protocol - Antagonistic Muscles, Pushing vs. Pulling Exercises (00:51:57) Types of Stretching: Dynamic, Ballistic, Static & PNF (Proprioceptive Neuro
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