Two mechanisms for direction selectivity in a model of the primate starburst amacrine cell

被引:2
|
作者
Wu, Jiajia [1 ]
Kim, Yeon Jin [2 ]
Dacey, Dennis M. [2 ]
Troy, John B. [1 ]
Smith, Robert G. [3 ]
机构
[1] Northwestern Univ, Dept Biomed Engn, Evanston, IL USA
[2] Univ Washington, Washington Natl Primate Res Ctr, Dept Biol Struct, Seattle, WA USA
[3] Univ Penn, Dept Neurosci, Philadelphia, PA 19104 USA
基金
美国国家卫生研究院;
关键词
Direction selectivity; starburst amacrine; primate retina; electrotonic propagation; modeling; GANGLION-CELLS; CHOLINERGIC NEURONS; WIRING SPECIFICITY; RABBIT RETINA; MOTION; CHANNELS; INPUT; SPEED; DENDRITES; ACCOUNTS;
D O I
10.1017/S0952523823000019
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In a recent study, visual signals were recorded for the first time in starburst amacrine cells of the macaque retina, and, as for mouse and rabbit, a directional bias observed in calcium signals was recorded from near the dendritic tips. Stimulus motion from the soma toward the tip generated a larger calcium signal than motion from the tip toward the soma. Two mechanisms affecting the spatiotemporal summation of excitatory postsynaptic currents have been proposed to contribute to directional signaling at the dendritic tips of starbursts: (1) a "morphological" mechanism in which electrotonic propagation of excitatory synaptic currents along a dendrite sums bipolar cell inputs at the dendritic tip preferentially for stimulus motion in the centrifugal direction; (2) a "space-time" mechanism that relies on differences in the time-courses of proximal and distal bipolar cell inputs to favor centrifugal stimulus motion. To explore the contributions of these two mechanisms in the primate, we developed a realistic computational model based on connectomic reconstruction of a macaque starburst cell and the distribution of its synaptic inputs from sustained and transient bipolar cell types. Our model suggests that both mechanisms can initiate direction selectivity in starburst dendrites, but their contributions differ depending on the spatiotemporal properties of the stimulus. Specifically, the morphological mechanism dominates when small visual objects are moving at high velocities, and the space-time mechanism contributes most for large visual objects moving at low velocities.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Computational analysis of direction-selective light responses of starburst amacrine cell dendrites
    Dmitriev, AV
    Gavrikov, KE
    Mangel, SC
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2004, 45 : U411 - U411
  • [22] Investigating the Mechanisms Underlying the Starburst Amacrine Cell Light Response Polarity Switch
    Hellmer, Chase B.
    Bohl, Jeremy
    Smith, Robert G.
    Ichinose, Tomomi
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2020, 61 (07)
  • [23] Formation of retinal direction-selective circuitry initiated by starburst amacrine cell homotypic contact
    Ray, Thomas A.
    Roy, Suva
    Kozlowskil, Christopher
    Wang, Jingjing
    Cafaro, Jon
    Hulbert, Samuel W.
    Wright, Christopher V.
    Field, Greg D.
    Kay, Jeremy N.
    ELIFE, 2018, 7
  • [24] lConditional Knock-Out of Vesicular GABA Transporter Gene from Starburst Amacrine Cells Reveals the Contributions of Multiple Synaptic Mechanisms Underlying Direction Selectivity in the Retina
    Pei, Zhe
    Chen, Qiang
    Koren, David
    Giammarinaro, Benno
    Ledesma, Hector Acaron
    Wei, Wei
    JOURNAL OF NEUROSCIENCE, 2015, 35 (38): : 13219 - 13232
  • [25] Synaptic connections of starburst amacrine cells and localization of acetylcholine receptors in primate retinas
    Yamada, ES
    Dmitrieva, N
    Keyser, KT
    Lindstrom, JM
    Hersh, LB
    Marshak, DW
    JOURNAL OF COMPARATIVE NEUROLOGY, 2003, 461 (01) : 76 - 90
  • [26] Origins of direction selectivity in the primate retina
    Yeon Jin Kim
    Beth B. Peterson
    Joanna D. Crook
    Hannah R. Joo
    Jiajia Wu
    Christian Puller
    Farrel R. Robinson
    Paul D. Gamlin
    King-Wai Yau
    Felix Viana
    John B. Troy
    Robert G. Smith
    Orin S. Packer
    Peter B. Detwiler
    Dennis M. Dacey
    Nature Communications, 13
  • [27] Origins of direction selectivity in the primate retina
    Kim, Yeon Jin
    Peterson, Beth B.
    Crook, Joanna D.
    Joo, Hannah R.
    Wu, Jiajia
    Puller, Christian
    Robinson, Farrel R.
    Gamlin, Paul D.
    Yau, King-Wai
    Viana, Felix
    Troy, John B.
    Smith, Robert G.
    Packer, Orin S.
    Detwiler, Peter B.
    Dacey, Dennis M.
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [28] TESTS OF AN ASYMMETRIC AMACRINE CELL MODEL FOR RETINAL DIRECTIONAL SELECTIVITY
    GRZYWACZ, NM
    AMTHOR, FR
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 1993, 34 (04) : 1292 - 1292
  • [29] Starburst amacrine cells orchestrate assembly of retinal direction-selective circuitry
    Kay, Jeremy N.
    Stogsdill, Megan
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2015, 56 (07)
  • [30] Starburst amacrine cells symmetrically facilitate the responses of direction selective ganglion cells
    Chiao, C
    Masland, RH
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2002, 43 : U1343 - U1343