Difference between revisions of "BrainRegionLPC FD RT"
From aHuman Wiki
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− | <pre style="color: green"> | + | <pre style="color: green">Retinal Nucleus</pre> |
@@[[Home]] -> [[BiologicalLifeResearch]] -> [[BrainAreaLPC]] -> [[BrainRegionLPC_FD_RT]] | @@[[Home]] -> [[BiologicalLifeResearch]] -> [[BrainAreaLPC]] -> [[BrainRegionLPC_FD_RT]] | ||
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− | This page covers biological details of component | + | This page covers biological details of component Retinal Nucleus. |
Region is part of aHuman target integrated biological model. | Region is part of aHuman target integrated biological model. | ||
− | * '''Top-down path to region''': Forebrain Diencephalon -> [[BrainRegionLPC_FD_RT| | + | * '''Top-down path to region''': Forebrain Diencephalon -> [[BrainRegionLPC_FD_RT|Retinal Nucleus]] (LPC.FD.RT) (see [[OverallMindMaps|Mind Maps]]) |
* '''Type''': nucleus | * '''Type''': nucleus | ||
* '''Brain area''': [[BrainAreaLPC|Lower Brain - Peripheral Control Area]] | * '''Brain area''': [[BrainAreaLPC|Lower Brain - Peripheral Control Area]] | ||
− | * '''Role''': | + | * '''Role''': sensory.nucleus |
* '''Function''': Spatial decorrelation through center surround inhibition | * '''Function''': Spatial decorrelation through center surround inhibition | ||
− | * '''Notes to function''': 100:1 cones/rods to ganglion cells aggregation, edge extraction | + | * '''Notes to function''': 100:1 cones/rods to ganglion cells aggregation, edge extraction; inner nuclear layer (5) and ganglion cell layer (3) |
(generated) | (generated) | ||
= Components = | = Components = | ||
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| '''Source Area''' || '''Source Region''' || '''Source Name''' || '''Type''' || '''Reference''' | | '''Source Area''' || '''Source Region''' || '''Source Name''' || '''Type''' || '''Reference''' | ||
|- | |- | ||
− | | [[ | + | | [[BrainAreaLPC|LPC]] || [[BrainRegionLPC_PN_SG_RT|LPC.PN.SG.RT]] || Retinal Ganglion || excitatory-glu || (unknown reference) |
|} | |} | ||
Revision as of 08:48, 2 October 2015
Retinal Nucleus
@@Home -> BiologicalLifeResearch -> BrainAreaLPC -> BrainRegionLPC_FD_RT
This page covers biological details of component Retinal Nucleus. Region is part of aHuman target integrated biological model.
- Top-down path to region: Forebrain Diencephalon -> Retinal Nucleus (LPC.FD.RT) (see Mind Maps)
- Type: nucleus
- Brain area: Lower Brain - Peripheral Control Area
- Role: sensory.nucleus
- Function: Spatial decorrelation through center surround inhibition
- Notes to function: 100:1 cones/rods to ganglion cells aggregation, edge extraction; inner nuclear layer (5) and ganglion cell layer (3)
(generated)
Components
(generated)
- no child items defined
Connectivity
(generated)
Inbound Region Connections:
Source Area | Source Region | Source Name | Type | Reference |
LPC | LPC.PN.SG.RT | Retinal Ganglion | excitatory-glu | (unknown reference) |
Outbound Region Connections:
Target Area | Target Region | Target Name | Type | Reference |
LAC | LAC.FD.HT.SCN | Suprachiasmatic Nucleus | excitatory-glu | Effect of light on pupil diameter (RET -> SCN) |
LRC | LRC.MM.PT.NOT | Nucleus of Optic Tract | excitatory-glu | Targets of retina neurons (Retina -> Pretectum, abstract) |
LRC.MM.PT.PON | Pretectal Olivary Nucleus | excitatory-glu | Effect of light on pupil diameter (RET -> OPN) | |
LRC.MM.PT.SL | Sublentiform Nucleus | excitatory-glu | Targets of retina neurons (Retina -> Pretectum, abstract) | |
LRC.MM.SC.SUP | Superficial Superior Colliculus | excitatory-glu | Geniculate and Extyrageniculate Paths (Retina -> SC, abstract) | |
NPE | NPE.FD.TH.MPV | Medial Pulvinar | excitatory-glu | Retina and superior colliculus targets (Retina -> Pulvinar, abstract) |
NSA | NSA.FD.LGN | Lateral Geniculate Nucleus | excitatory-glu | Geniculate and Extyrageniculate Paths (Retina -> LGN) |
Thirdparty Circuits
(generated)
- Vision Components - see Reference
- Saccadic Vision - see Reference
- Eye muscles - see Reference
References
(generated)
- http://unifiedtao-en.blogspot.ru/2011/03/what-we-see-of-tao.html
- http://www.rci.rutgers.edu/~uzwiak/AnatPhys/Vision.htm
- http://journal.frontiersin.org/article/10.3389/fnint.2012.00094/full
- http://www.sciencedirect.com/science/article/pii/S0387760401003308
- http://asweknowit.ca/evcult/NatIntel/nat_intel.shtml
- http://www.hindawi.com/journals/nri/2012/719056
- http://neuroscience.uth.tmc.edu/s3/chapter07.html
- http://www.nature.com/nrn/journal/v5/n3/box/nrn1345_BX1.html
- http://thebrain.mcgill.ca/flash/i/i_02/i_02_cr/i_02_cr_vis/i_02_cr_vis.html
- http://www.sciencedirect.com/science/article/pii/S0959438808001566
- http://etc.usf.edu/clipart/53700/53763/53763_eye.htm
- http://meded.ucsd.edu/clinicalmed/eyes.htm