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  • ...ry of alpha RGCs in mouse retina. S-pigment dominated cones send inputs to M-cone-dominated hyperpolarizing bipolar cell, which in turn sends its signal
    3 KB (555 words) - 23:13, 29 September 2015
  • ...ry of alpha RGCs in mouse retina. S-pigment dominated cones send inputs to M-cone-dominated hyperpolarizing bipolar cell, which in turn sends its signal
    3 KB (555 words) - 23:49, 29 September 2015
  • Turaga, S., Briggman, K., Helmstaedter, M., Denk, W., & Seung, S. "Maximin Affinity Learning of Image Segmentation".
    3 KB (520 words) - 15:56, 17 November 2015
  • ...ef name="Hodgkin" /><ref name="Barnett">Barnett, Mark W., Larkman, Phillip M. (2007) [http://pn.bmj.com/content/7/3/192.full The Action Potential] <em>P
    3 KB (474 words) - 15:57, 17 November 2015
  • ...bottom view of the traced arbors.<ref name="briggman2011">K. L. Briggman, M. Helmstaedter, and W. Denk (2011). [http://www.nature.com/nature/journal/v
    9 KB (1,312 words) - 16:11, 17 November 2015
  • ...ells in [a] ganglion cell's surround."<ref name="Tessier">Tessier-Lavigne, M. "Visual Processing by the Retina." ''Principles of Neural Science''. New Y ...ibitory (i.e., GABAergic/glycinergic) amacrine cells<ref name="Bieda 1999">M. C. Bieda & D. R. Copenhagen (1999) [http://jn.physiology.org/content/81/6/
    14 KB (2,016 words) - 15:54, 17 November 2015
  • ...er a bright green color. When in Explore players must use the command ctrl+m to commit their work before submitting it. They can also press ctrl+d to di
    5 KB (834 words) - 15:50, 17 November 2015
  • Each cube consists of 256 slices and is 4.1 µm x 4.1 µm x 5.6 µmm = micrometer = 10^-6 meters). ...I selected something incorrectly. Why don’t I still get feedback as I’m working?=====
    17 KB (3,107 words) - 16:12, 17 November 2015
  • ..." of amacrine cells.<ref name="Cherry 2009">T. J. Cherry, J. M. Trimarchi, M. B. Stadler & C. L. Cepko (2009)[http://www.pnas.org/content/106/23/9495.fu
    21 KB (898 words) - 16:16, 21 June 2016
  • Turaga, S., Briggman, K., Helmstaedter, M., Denk, W., & Seung, S. \"Maximin Affinity Learning of Image Segmentation\
    4 KB (79 words) - 11:42, 15 June 2016
  • ...ef name="Hodgkin" /><ref name="Barnett">Barnett, Mark W., Larkman, Phillip M. (2007) [http://pn.bmj.com/content/7/3/192.full The Action Potential] <em>P
    3 KB (147 words) - 08:06, 24 June 2016
  • A trace going backwards from the point of a [[The_Eyewire_Lexicon#M|merger]], allowing one to see that the piece in question is not part of the ...less than 3.0 is required for a consensus to form on [[The_Eyewire_Lexicon#M|mystery cells]], and no less than 2.0 for [[The_Eyewire_Lexicon#L|lightning
    34 KB (5,914 words) - 14:03, 14 June 2016
  • 39 KB (3,993 words) - 02:59, 15 March 2018
  • ...ificity in the Direction-Selectivity Circuit of the Retina. K. L. Briggman M. Helmstaedter W. Denk. Nature volume471 pgs183-188 http://www.nature.com/na ...nelles unstained. SBFSEM was used to image a volume of size 350×300×60 µm{{math|<sup>3</sup>}} (left) with voxel resolution 16.5×16.5×23 nm{{math|<
    6 KB (966 words) - 18:26, 14 June 2016
  • ...ificity in the Direction-Selectivity Circuit of the Retina. K. L. Briggman M. Helmstaedter W. Denk. Nature volume471 pgs183-188 http://www.nature.com/na ...nelles unstained. SBFSEM was used to image a volume of size 350×300×60 µm{{math|<sup>3</sup>}} (left) with voxel resolution 16.5×16.5×23 nm{{math|<
    6 KB (951 words) - 01:27, 15 June 2016
  • ...en el circuito de selectividad de dirección de la retina. K. L. Briggman M. Helmstaedter W. Denk. Nature volume471 pgs183-188 http://www.nature.com/na ...ral como la conectividad en la misma retina mediante la aplicación de dos métodos de imagen uno tras otro: microscopía de dos fotones (2P) y [[micros
    7 KB (1,187 words) - 16:34, 20 July 2019
  • ...er a bright green color. When in Explore players must use the command ctrl+m to commit their work before submitting it. They can also press ctrl+d to di
    5 KB (847 words) - 21:57, 19 August 2016
  • Each cube consists of 256 slices and is 4.1 µm x 4.1 µm x 5.6 µmm = micrometer = 10^-6 meters). ...I selected something incorrectly. Why don’t I still get feedback as I’m working?=====
    17 KB (2,817 words) - 16:21, 12 November 2016
  • ...ef name="Hodgkin" /><ref name="Barnett">Barnett, Mark W., Larkman, Phillip M. (2007) [http://pn.bmj.com/content/7/3/192.full The Action Potential] <em>P
    3 KB (439 words) - 16:16, 9 November 2016
  • ...://en.wikipedia.org/wiki/Postsynaptic_density postsynaptic density], but I'm not sure if that is visible in zfish slides. Ironically, the presynaptic si
    4 KB (679 words) - 00:37, 12 March 2018

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