Retinal ganglion cell topography and spatial resolving power in the white rhinoceros (Ceratotherium simum)

被引:8
作者
Coimbra, Joao Paulo [1 ]
Manger, Paul R. [1 ]
机构
[1] Univ Witwatersrand, Sch Anat Sci, Parktown 2193, ZA-2193 Johannesburg, South Africa
基金
新加坡国家研究基金会;
关键词
retinal topography; perissodactyls; retinal ganglion cells; alpha ganglion cells; stereology; spatial resolving power; RRID: AB_477257; RRID: SciRes_000114; RRID: SciRes_000116; OPTICAL FRACTIONATOR; TYRANT FLYCATCHERS; VISUAL RESOLUTION; MAMMALIAN RETINAE; PEAK DENSITY; EYE SHAPE; LAYER; NEURONS; SIZE; AVES;
D O I
10.1002/cne.24136
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
This study sought to determine whether the retinal organization of the white rhinoceros (Ceratotherium simum), a large African herbivore with lips specialized for grazing in open savannahs, relates to its foraging ecology and habitat. Using stereology and retinal wholemounts, we estimated a total of 353,000 retinal ganglion cells. Their density distribution reveals an unusual topographic organization of a temporal (2,000 cells/mm(2)) and a nasal (1,800 cells/mm(2)) area embedded within a well-defined horizontal visual streak (800 cells/mm(2)), which is remarkably similar to the retinal organization in the black rhinoceros. Alpha ganglion cells comprise 3.5% (12,300) of the total population of ganglion cells and show a similar distribution pattern with maximum densities also occurring in the temporal (44 cells/mm(2)) and nasal (40 cells/mm(2)) areas. We found higher proportions of alpha cells in the dorsal and ventral retinas. Given their role in the detection of brisk transient stimuli, these higher proportions may facilitate the detection of approaching objects from the front and behind while grazing with the head at 45 degrees. Using ganglion cell peak density and eye size (29mm, axial length), we estimated upper limits of spatial resolving power of 7 cycles/deg (temporal area), 6.6 cycles/deg (nasal area), and 4.4 cycles/deg (horizontal streak). The resolution of the temporal area potentially assists with grazing, while the resolution of the streak may be used for panoramic surveillance of the horizon. The nasal area may assist with detection of approaching objects from behind, potentially representing an adaptation compensating for limited neck and head mobility. J. Comp. Neurol., 525:2484-2498, 2017. (c) 2017 Wiley Periodicals, Inc.
引用
收藏
页码:2484 / 2498
页数:15
相关论文
共 64 条
[1]   The retina of tyrant flycatchers:: Topographic organization of neuronal density and size in the ganglion cell layer of the great kiskadee Pitangus sulphuratus and the rusty margined flycatcher Myiozetetes cayanensis (Aves: Tyrannidae) [J].
Coimbra, Joao Paulo ;
Luiza Videira Marceliano, Maria ;
Lara da Silveira Andrade-da-Costa, Belmira ;
Yamada, Elizabeth Sumi .
BRAIN BEHAVIOR AND EVOLUTION, 2006, 68 (01) :15-25
[2]   Retinal ganglion cell topography and spatial resolving power in African megachiropterans: Influence of roosting microhabitat and foraging [J].
Coimbra, Joao Paulo ;
Pettigrew, John D. ;
Kaswera-Kyamakya, Consolate ;
Gilissen, Emmanuel ;
Collin, Shaun P. ;
Manger, Paul R. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2017, 525 (01) :186-203
[3]   The Topographic Organization of Retinal Ganglion Cell Density and Spatial Resolving Power in an Unusual Arboreal and Slow-Moving Strepsirhine Primate, the Potto (Perodicticus potto) [J].
Coimbra, Joao Paulo ;
Kaswera-Kyamakya, Consolate ;
Gilissen, Emmanuel ;
Manger, Paul R. ;
Collin, Shaun P. .
BRAIN BEHAVIOR AND EVOLUTION, 2016, 87 (01) :4-18
[4]   The Retina of Ansorge's Cusimanse (Crossarchus ansorgei) : Number, Topography and Convergence of Photoreceptors and Ganglion Cells in Relation to Ecology and Behavior [J].
Coimbra, Joao Paulo ;
Kaswera-Kyamakya, Consolate ;
Gilissen, Emmanuel ;
Manger, Paul R. ;
Collin, Shaun P. .
BRAIN BEHAVIOR AND EVOLUTION, 2015, 86 (02) :79-93
[5]   Topographic Specializations in the Retinal Ganglion Cell Layer of Australian Passerines [J].
Coimbra, Joao Paulo ;
Collin, Shaun P. ;
Hart, Nathan S. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2014, 522 (16) :3609-3628
[6]   Topographic Specializations in the Retinal Ganglion Cell Layer Correlate With Lateralized Visual Behavior, Ecology, and Evolution in Cockatoos [J].
Coimbra, Joao Paulo ;
Collin, Shaun P. ;
Hart, Nathan S. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2014, 522 (15) :3363-3385
[7]   Scene from above: Retinal ganglion cell topography and spatial resolving power in the giraffe (Giraffa camelopardalis) [J].
Coimbra, Joao Paulo ;
Hart, Nathan S. ;
Collin, Shaun P. ;
Manger, Paul R. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2013, 521 (09) :2042-2057
[8]   Retinal Ganglion Cell Topography and Spatial Resolving Power in Penguins [J].
Coimbra, Joao Paulo ;
Nolan, Paul M. ;
Collin, Shaun P. ;
Hart, Nathan S. .
BRAIN BEHAVIOR AND EVOLUTION, 2012, 80 (04) :254-268
[9]  
Collin S.P., 1999, P509
[10]  
desBusserolles F., 2014, BRAIN BEHAV EVOLUT, V84, P262