Embodied Learning Insights
Kristen explores the concept of embodied learning, drawing parallels between human cognitive development and machine learning systems. She highlights a study on kittens that illustrates the importance of motion in visual perception development. By utilizing first-person egocentric video and motor signals, the goal is to enable systems to autonomously discover visual representations, enhancing their learning process through interaction with the environment.In this clip
From this podcast

The TWIML AI Podcast (formerly This Week in Machine Learning & Artificial Intelligence)
Embodied Visual Learning with Kristen Grauman - #85
Related Questions
Do you have anything to add to the statement from the episode Using Failures, Movement & Balance to Learn Faster | Huberman Lab Podcast #7 and the clip Sensory Map Alignment: "We have a map of visual space. Certain neurons are seeing things in certain portions of visual space and not others. We have a map of motor space, meaning when we move our limbs in particular directions, we know where those limbs are because even if we can't see them, we have what's called proprioceptive feedback. So we have knowledge about where our limbs are. Our maps of the motor world and our maps of the sensory world are merged"?
Do you have anything to add to this statement from the episode Using Failures, Movement & Balance to Learn Faster | Huberman Lab Podcast #7 and the clip Sensory Map Alignment? "We have a map of visual space. Certain neurons are seeing things in certain portions of visual space and not others. We have a map of motor space, meaning when we move our limbs in particular directions, we know where those limbs are because even if we can't see them, we have what's called proprioceptive feedback. So we have knowledge about where our limbs are. Our maps of the motor world and our maps of the sensory world are merged."
Do you have anything to add to this statement: "We have a map of visual space. Certain neurons are seeing things in certain portions of visual space and not others. We have a map of motor space, meaning when we move our limbs in particular directions, we know where those limbs are because even if we can't see them, we have what's called proprioceptive feedback. So we have knowledge about where our limbs are. Our maps of the motor world and our maps of the sensory world are merged" from the episode Using Failures, Movement & Balance to Learn Faster | Huberman Lab Podcast #7 and the clip Sensory Map Alignment?