ReDiClus: Difference between revisions
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<big><big>'''Re'''ceptor '''Di'''ffusion & '''Clus'''ter | <big><big>ReDiClus - '''Re'''ceptor '''Di'''ffusion & '''Clus'''ter Model</big></big> | ||
==Simulation Space== | |||
{{Box|font=120%|width=40%|float=left|text=12px|ReDiClus Model Space| | |||
; ReDiClus is simulated on a 2D surface in 3D space | |||
* The surface area represents a dendritic membrane with two synaptic spines | |||
* Baseline dimensions are scaled to real-world values | |||
** these values are based on empirical observations of distal dendrites | |||
** base dimensions are set to 60x30 units | |||
<br> | |||
;Scale | |||
* 1 unit ≃ 100 nm | |||
;* 10 units ≃ 1 µm | |||
*2D space: 2.3 µm x 4.6 um | |||
*PSD: 0.3 x 0.3 µm | |||
*peri-PSD: 0.3 x 0.3 µm | |||
*PSD separation: 2.0 µm | |||
<br> | |||
* The Z axis is only 2 levels: 0 and 1 | |||
** 1 represents the membrane surface | |||
** 0 represents intracellular space | |||
}} | |||
{{Box|font=120%|width=40%|float=left|text=12px|Particle Types| | {{Box|font=120%|width=40%|float=left|text=12px|Particle Types| | ||
; There are 2 types of particles in the simulation | ; There are 2 types of particles in the simulation | ||
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** Blue dots are contained in predefined PSD areas and cannot leave | ** Blue dots are contained in predefined PSD areas and cannot leave | ||
** Blue dots can exist at the surface {{Button|Z {{=}} 0}} or intracellularly {{Button|Z {{=}} -1}} | ** Blue dots can exist at the surface {{Button|Z {{=}} 0}} or intracellularly {{Button|Z {{=}} -1}} | ||
[[File:3D Model.png|500px]] | |||
}} | }} | ||
{{Box|font=120%|width=95%|float=left|text=12px|Visual Representations| | {{Box|font=120%|width=95%|float=left|text=12px|Visual Representations| | ||
[[File: | [[File:ScaleModel.png|950px]] | ||
}} | }} | ||
{{Clear}} | |||
==Physical Properties== | |||
{{ExpandBox|ReDiClus Physics| | |||
{{Box|font=120%|width=95%|float=left|text=12px|two independent processes| | {{Box|font=120%|width=95%|float=left|text=12px|two independent processes| | ||
; In this model, there are two independently occurring processes. | ; In this model, there are two independently occurring processes. | ||
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}} | }} | ||
}}<!-- END QUANTITATIVE REVIEW --> | |||
==Data Generation== | |||
{{ExpandBox|ReDiClus MODEL DATA RESULTS| | {{ExpandBox|ReDiClus MODEL DATA RESULTS| | ||
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{{PageHead|[[Malinow]]|[[Molecular Methods]]|[[Quantum Dots]]|[[Choquet]]|[[AMPAR]]}} | {{PageHead|[[Malinow]]|[[Molecular Methods]]|[[Quantum Dots]]|[[Choquet]]|[[AMPAR]]}} | ||
[[Category:Malinow]] [[Category:ReDiClus]] | [[Category:Malinow]] [[Category:ReDiClus]] | ||
__NOTOC__ |
Revision as of 21:22, 3 September 2013
ReDiClus - Receptor Diffusion & Cluster Model
Simulation Space
ReDiClus Model Space
Particle Types
Visual Representations
Physical Properties
ReDiClus Physics
two independent processes
MEAN SQUARED DISPLACEMENT
Data Generation
ReDiClus MODEL DATA RESULTS
Neural Anatomy
Quantitative Physiology of the Dendrite
Quantitative Review
The Size of Dendrites
Particle Counts
Diffusion Rates
Images
Choquet 2007 Real Time Receptor Diffusion
Choquet 2007 Real Time Receptor Diffusion Analysis
Receptor Diffusion Rate Best Estimates
Brain Data: Facts and Figures
Estimated Number of Neurons in the Brain of Humans & Other Animals
Brain vs Computer
Facts and Figures
Processor | Transistor count | Date of introduction | Manufacturer | Semiconductor device fabrication|Process | Area |
---|---|---|---|---|---|
Core 2 Duo Wolfdale3M | 230,000,000 | 2008 | Intel | 45 nm | 83 mm² |
Core i7 (Quad) | 731,000,000 (7e8) | 2008 | Intel | 45 nm | 263 mm² |
POWER6 | 789,000,000 | 2007 | IBM | 65 nm | 341 mm² |
WDC 65C02 | 785,000,000 | 2009 | western design center | 0.22 µm | 14 mm² |
Six-Core Opteron 2400 | 904,000,000 | 2009 | AMD | 45 nm | 346 mm² |
16-Core SPARC T3 | 1,000,000,000 (1e9) | 2010 | Sun Oracle Corporation|Oracle | 40 nm | 377 mm² |
Quad-Core plus GPU Sandy Bridge Core i7 | 1,160,000,000 | 2011 | Intel | 32 nm | 216 mm² |
Core i7 (Gulftown) | 1,170,000,000 | 2010 | Intel | 32 nm | 240 mm² |
8-core POWER7 32M L3 | 1,200,000,000 | 2010 | IBM | 45 nm | 567 mm² |
8-Core AMD Bulldozer | 1,200,000,000 | 2012 | AMD | 32nm | 315 mm² |
Quad-Core + GPU AMD Trinity | 1,303,000,000 | 2012 | AMD | 32 nm | 246 mm² |
z196 | 1,400,000,000 | 2010 | IBM | 45 nm | 512 mm² |
Core i7 | 1,400,000,000 | 2012 | Intel | 22 nm | 160 mm² |
Dual-Core Itanium 2 | 1,700,000,000 | 2006 | Intel | 90 nm | 596 mm² |
Six-Core Xeon 7400 | 1,900,000,000 | 2008 | Intel | 45 nm | 503 mm² |
Tukwila | 2,000,000,000 (2e9) | 2010 | Intel | 65 nm | 699 mm² |
8-core POWER7 80M L3 | 2,100,000,000 | 2012 | IBM | 32 nm | 567 mm² |
Six-Core Core i7 and 8-Core Xeon E5 | 2,270,000,000 | 2011 | Intel | 32 nm | 434 mm² |
Nehalem-EX | 2,300,000,000 | 2010 | Intel | 45 nm | 684 mm² |
10-Core Xeon Westmere-EX | 2,600,000,000 | 2011 | Intel | 32 nm | 512 mm² |
zEC12 | 2,750,000,000 | 2012 | IBM | 32 nm | 597 mm² |
Poulson | 3,100,000,000 (3e9) | 2012 | Intel | 32 nm | 544 mm² |
15-Core Xeon Ivy Bridge-EX | 4,310,000,000 (4e9) | 2014 | Intel | 22 nm | |
62-Core Xeon Phi | 5,000,000,000 | 2012 | Intel | 22 nm | |
Xbox One Main SoC | 5,000,000,000 (5e9) | 2013 | Microsoft/AMD | 28 nm | 363 mm² |
STARShiP | Molecular Methods | Quantum Dots | AMPAR | Brownian Motion |
Malinow | Molecular Methods | Quantum Dots | Choquet | AMPAR |