Direction selectivity in Drosophila emerges from preferred-direction enhancement and null-direction suppression

JCS Leong, JJ Esch, B Poole, S Ganguli… - Journal of …, 2016 - Soc Neuroscience
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

[PDF][PDF] Direction Selectivity inDrosophilaEmerges from Preferred-Direction Enhancement and Null-Direction Suppression

XJCS Leong, JJ Esch, B Poole… - The Journal of …, 2016 - ganguli-gang.stanford.edu
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

[HTML][HTML] Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression

JCS Leong, JJ Esch, B Poole, S Ganguli… - The Journal of …, 2016 - ncbi.nlm.nih.gov
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression

JCS Leong, JJ Esch, B Poole… - The Journal of …, 2016 - pubmed.ncbi.nlm.nih.gov
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression

JCS Leong, JJ Esch, B Poole, S Ganguli… - Journal of …, 2016 - Soc Neuroscience
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression.

JC Leong, JJ Esch, B Poole, S Ganguli… - The Journal of …, 2016 - europepmc.org
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression.

JCS Leong, JJ Esch, B Poole, S Ganguli… - Journal of …, 2016 - search.ebscohost.com
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

[引用][C] Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression

JCS Leong, JJ Esch, B Poole, S Ganguli… - Journal of …, 2016 - cir.nii.ac.jp
Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction
Suppression | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 …

Direction Selectivity in Drosophila Emerges from Preferred-Direction Enhancement and Null-Direction Suppression.

JC Leong, JJ Esch, B Poole, S Ganguli… - The Journal of …, 2016 - europepmc.org
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …

[PDF][PDF] Direction Selectivity inDrosophilaEmerges from Preferred-Direction Enhancement and Null-Direction Suppression

XJCS Leong, JJ Esch, B Poole… - The Journal of …, 2016 - ganguli-gang.stanford.edu
Across animal phyla, motion vision relies on neurons that respond preferentially to stimuli
moving in one, preferred direction over the opposite, null direction. In the elementary motion …