Search Results - "Dhawale, Ashesh K"

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  1. 1

    Motor cortex is required for learning but not for executing a motor skill by Kawai, Risa, Markman, Timothy, Poddar, Rajesh, Ko, Raymond, Fantana, Antoniu L, Dhawale, Ashesh K, Kampff, Adam R, Ölveczky, Bence P

    Published in Neuron (Cambridge, Mass.) (06-05-2015)
    “…Motor cortex is widely believed to underlie the acquisition and execution of motor skills, but its contributions to these processes are not fully understood…”
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    Journal Article
  2. 2

    The Role of Variability in Motor Learning by Dhawale, Ashesh K, Smith, Maurice A, Ölveczky, Bence P

    Published in Annual review of neuroscience (25-07-2017)
    “…Trial-to-trial variability in the execution of movements and motor skills is ubiquitous and widely considered to be the unwanted consequence of a noisy nervous…”
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  3. 3

    The basal ganglia control the detailed kinematics of learned motor skills by Dhawale, Ashesh K., Wolff, Steffen B. E., Ko, Raymond, Ölveczky, Bence P.

    Published in Nature neuroscience (01-09-2021)
    “…The basal ganglia are known to influence action selection and modulation of movement vigor, but whether and how they contribute to specifying the kinematics of…”
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  4. 4
  5. 5

    Non-redundant odor coding by sister mitral cells revealed by light addressable glomeruli in the mouse by Murthy, Venkatesh N, Albeanu, Dinu F, Hagiwara, Akari, Bhalla, Upinder S, Dhawale, Ashesh K

    Published in Nature neuroscience (01-11-2010)
    “…Using optogenetic techniques, Dhawale et al . find that, although sister mitral cells (which receive input from the same olfactory glomerulus) have highly…”
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  6. 6

    Automated long-term recording and analysis of neural activity in behaving animals by Dhawale, Ashesh K, Poddar, Rajesh, Wolff, Steffen Be, Normand, Valentin A, Kopelowitz, Evi, Ölveczky, Bence P

    Published in eLife (08-09-2017)
    “…Addressing how neural circuits underlie behavior is routinely done by measuring electrical activity from single neurons in experimental sessions. While such…”
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  7. 7

    CA1 cell activity sequences emerge after reorganization of network correlation structure during associative learning by Modi, Mehrab N, Dhawale, Ashesh K, Bhalla, Upinder S

    Published in eLife (25-03-2014)
    “…Animals can learn causal relationships between pairs of stimuli separated in time and this ability depends on the hippocampus. Such learning is believed to…”
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  8. 8

    Adaptive Regulation of Motor Variability by Dhawale, Ashesh K., Miyamoto, Yohsuke R., Smith, Maurice A., Ölveczky, Bence P.

    Published in Current biology (04-11-2019)
    “…Trial-to-trial movement variability can both drive motor learning and interfere with expert performance, suggesting benefits of regulating it in…”
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  9. 9

    Long-term stability of single neuron activity in the motor system by Jensen, Kristopher T., Kadmon Harpaz, Naama, Dhawale, Ashesh K., Wolff, Steffen B. E., Ölveczky, Bence P.

    Published in Nature neuroscience (01-12-2022)
    “…How an established behavior is retained and consistently produced by a nervous system in constant flux remains a mystery. One possible solution to ensure…”
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