Holcombe: Difference between revisions

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[[Image:HolcombeLabLogoOct2008.png]] [[Holcombe:Location|Lab and Office Location]]
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We're curious about temporal aspects of human visual processing - how quickly do different cortical modules and stages process information, and how are they coordinated in time? We use behavioral experiments, illustrated by the animations below, to compare speed limits for different features and the dynamics of how these features are bound into a coherent percept. One coordination problem occurs because when an object moves across the visual field, it stimulates different populations of neurons in early visual cortex, so we're testing how the signals from different areas are combined by later stages of the brain. Overall, fast processes somehow work together with others that are very sluggish in order to yield conscious perception. Recently, we've begun experiments to see how temporal limits constrain our interactions with moving objects.
We're curious about temporal aspects of human visual processing - how quickly do different cortical modules and stages process information, and how are they coordinated in time? We use behavioral experiments to compare speed limits for different features and the dynamics of how these features are bound into a coherent percept. One coordination problem occurs because when an object moves across the visual field, it stimulates different populations of neurons in early visual cortex, so we're testing how the signals from different areas are combined by later stages of the brain. Overall, fast processes somehow work together with others that are very sluggish in order to yield conscious perception. Recently we've begun investigating related issues in tactile perception.
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Collaborators:
Patrick Byrne, [[User:Alex_L._White|Alex White]],Christina J. Howard, Jay Edelman,Patrick Cavanagh,Sara Mednick,
[http://www.h.kyoto-u.ac.jp/staff/131_saiki_j_0_e.html Jun Saiki],
Gene Stoner, Eli Brenner, Sasha Klistorner,
[[User:Tatjana Seizova-Cajic|Tatjana Seizova-Cajic]],[http://www.med.unsw.edu.au/medweb.nsf/page/resinterestsshowperson?OpenDocument&staffid=3048331 Evelyn Smith-Bergelund], [http://www.physiol.usyd.edu.au/span/ University Perception Group]
Eric Altschuler,[http://dlinares.org/ Daniel Linares], Maryam Vaziri-Pashkam...
==Recent updates to the lab wiki==
==Recent updates to the lab wiki==
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Revision as of 21:45, 4 February 2013

Lab and Office Location

Recent members

Alex Holcombe
• Ryo Nakayama



Technical

Skills Checklist
Python Programming
Psychopy/VisionEgg Installation Notes
R analysis,plot,stats
Statistics
Buttonbox
Buttonbox with photocell
Programming Cheat Sheets


We're curious about temporal aspects of human visual processing - how quickly do different cortical modules and stages process information, and how are they coordinated in time? We use behavioral experiments to compare speed limits for different features and the dynamics of how these features are bound into a coherent percept. One coordination problem occurs because when an object moves across the visual field, it stimulates different populations of neurons in early visual cortex, so we're testing how the signals from different areas are combined by later stages of the brain. Overall, fast processes somehow work together with others that are very sluggish in order to yield conscious perception. Recently we've begun investigating related issues in tactile perception.

<xfeeds [titlecolour="#B0C4DE"] [contentcolour="#eeeeee"] [feedlimit="4"] [totallimit="4"]> http://holcombelab.tumblr.com/rss </xfeeds>

Collaborators: Patrick Byrne, Alex White,Christina J. Howard, Jay Edelman,Patrick Cavanagh,Sara Mednick, Jun Saiki, Gene Stoner, Eli Brenner, Sasha Klistorner, Tatjana Seizova-Cajic,Evelyn Smith-Bergelund, University Perception Group Eric Altschuler,Daniel Linares, Maryam Vaziri-Pashkam...

Recent updates to the lab wiki

List of abbreviations:
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17 April 2024

     15:34  BioMicroCenter:Element Sequencing‎‎ 3 changes history +295 [Challee‎ (3×)]
     
15:34 (cur | prev) +195 Challee talk contribs
     
14:22 (cur | prev) +100 Challee talk contribs
     
14:07 (cur | prev) 0 Challee talk contribs
     13:10  BioMicroCenter:SingleCell diffhist +30 Noelani Kamelamela talk contribs (→‎10X CHROMIUM X)
     12:43  BioMicroCenter diffhist −15 Noelani Kamelamela talk contribs

16 April 2024

N    19:59  Nanoimprint Lithography (NIL) - Carter Paul‎‎ 10 changes history +7,205 [CarterPaul‎ (10×)]
     
19:59 (cur | prev) +769 CarterPaul talk contribs (→‎Thermal NIL Process)
     
19:53 (cur | prev) 0 CarterPaul talk contribs (→‎Thermal NIL Process)
     
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19:50 (cur | prev) +202 CarterPaul talk contribs (→‎Thermal NIL Process)
     
19:17 (cur | prev) −20 CarterPaul talk contribs (→‎References)
     
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19:11 (cur | prev) +4,278 CarterPaul talk contribs
     
18:53 (cur | prev) +1,891 CarterPaul talk contribs
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18:42 (cur | prev) +85 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} =Motivation= =Introduction to NIL= =Thermal NIL Process=")
     19:40 Upload log CarterPaul talk contribs uploaded File:NIL1.png
N    18:40  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, Adam Lyons and Jacob Belden diffhist +24,060 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} ==Introduction== While most microfluidic devices incorporate a 2D cell culture design, in which a single layer of cells is grown on the bottom of a device, these systems suffer from poor <i>in vivo</i> mimicry, as, in the human body, most cells grow in all directions.<sup>https://doi.org/10.5114/aoms.2016.63743 1</sup> To address this limitation, 3D cell culture devices have been developed - in w...")
     18:38  CHEM-ENG590E:Wiki Textbook‎‎ 2 changes history +63 [CarterPaul‎ (2×)]
     
18:38 (cur | prev) +50 CarterPaul talk contribs (→‎Chapter 1 - Microfabrication)
     
18:37 (cur | prev) +13 CarterPaul talk contribs
     18:36  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, and Adam Lyons diffhist +5,343 CarterPaul talk contribs (Added a Technique and applications section)
     10:20  Yarn Microfluidics - Roger Dirth‎‎ 12 changes history +442 [Rcostello‎ (12×)]
     
10:20 (cur | prev) +41 Rcostello talk contribs (→‎Applications)
     
10:19 (cur | prev) +36 Rcostello talk contribs (→‎Applications)
     
10:18 (cur | prev) +36 Rcostello talk contribs (→‎Introduction)
     
10:17 (cur | prev) +38 Rcostello talk contribs (→‎Fabrication)
     
10:17 (cur | prev) +38 Rcostello talk contribs (→‎Washburn Equation)
     
10:16 (cur | prev) +38 Rcostello talk contribs (→‎Wicking Rate)
     
10:16 (cur | prev) +37 Rcostello talk contribs (→‎Introduction)
     
10:15 (cur | prev) +36 Rcostello talk contribs (→‎Wicking Rate)
     
10:14 (cur | prev) +36 Rcostello talk contribs (→‎Fabrication)
     
10:14 (cur | prev) +34 Rcostello talk contribs (→‎Applications)
     
10:14 (cur | prev) +36 Rcostello talk contribs (→‎Introduction)
     
10:13 (cur | prev) +36 Rcostello talk contribs (→‎Introduction)
     08:18  3D Printed Microfluidic Robots - Helen Hua‎‎ 2 changes history +6 [Michele Caggioni‎ (2×)]
     
08:18 (cur | prev) +22 Michele Caggioni talk contribs (→‎Actuation)
     
08:18 (cur | prev) −16 Michele Caggioni talk contribs (→‎Actuation)
     08:11  3D Printing Overview diffhist +422 Michele Caggioni talk contribs

15 April 2024

     23:43  User:Yanbin Huang‎‎ 2 changes history +170 [Yanbin Huang‎ (2×)]
     
23:43 (cur | prev) 0 Yanbin Huang talk contribs (→‎Granted Patents)
     
23:43 (cur | prev) +170 Yanbin Huang talk contribs (→‎Granted Patents)
     22:11  The paper that launched microfluidics - Xi Ning‎‎ 11 changes history +4,793 [Xning098‎ (11×)]
     
22:11 (cur | prev) −6 Xning098 talk contribs (→‎Summary)
     
22:07 (cur | prev) −12 Xning098 talk contribs (→‎Synthesis)
     
22:06 (cur | prev) 0 Xning098 talk contribs
     
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22:03 (cur | prev) +630 Xning098 talk contribs
     
22:01 (cur | prev) +3,189 Xning098 talk contribs
     
21:44 (cur | prev) +688 Xning098 talk contribs (→‎Separation and quantification)
     
21:33 (cur | prev) +306 Xning098 talk contribs
     
21:29 (cur | prev) −2 Xning098 talk contribs (→‎Electrokinetic effect)
     
21:28 (cur | prev) −1 Xning098 talk contribs (→‎Separation and quantification)
     21:45  (Upload log) [Xning098‎ (2×)]
     
21:45 Xning098 talk contribs uploaded File:Figure 4 Tdesign.png
     
21:30 Xning098 talk contribs uploaded File:Figure 3 Set-up3.png