Holcombe:TemporalLimitsReview

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{{Template:Holcombe}}
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Notes for the project described in <cite>Holcombe2009TICS</cite> as well as forthcoming _Subjective Time_ MIT Press volumes
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old notes for Dani JoV paper: [[Holcombe:TemporalNoise|Temporal Noise]]
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[[Holcombe:ModellingUncertainty|ModellingUncertainty]]
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also see [[Holcombe:MultipleDrafts|multiple drafts of consciousness vs. postdiction]]
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== integration interval ==
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<cite>Melcher-etal-2004</cite> found attention / central viewing dramatically increased motion integration interval, with max integration interval 10 sec as found by Burr and Santoro
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== effect of distance on temporal binding (in cases where low-level motion was avoided) ==
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*Motoyoshi found x for
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*For temporal freezing paper, we don't know precision
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*Martini & Nakayama found X
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*Long-range alignment judgment we found little effect in <cite>HolcombeLinaresWhite09</cite>
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*Binocular rivalry waves can be slow, e.g.
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*Migraine aura glacial
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*On the other hand,
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**Don't forget Yan's relative motion result
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**Some apparently-spreading processes seem instantaneous (spokes illusion)
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More discussion at my Google Doc on the topic, in reviews folder
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== modeling ==
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Werkhoven, Snippe, & Toet.
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First-order, second-order, etc. low-pass filter: http://en.wikipedia.org/wiki/Low-pass_filter
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* acceleration and direction alternation
* acceleration and direction alternation
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<gallery perrow="2">
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{| border="0" cellspacing="0" cellpadding="5" align="center"
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[[Image:WerkhovenLowPassFilter33ms.png|500px]]
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! [[Image:WerkhovenLowPassFilter33ms.png|500px]]
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[[Image:WerkhovenLowPassFilterImpulseResponse.png|500px]]
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! [[Image:WerkhovenLowPassFilterImpulseResponse.png|500px]]
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</gallery>
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|}
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If temporally low-pass the Reichhardt outputs, all speeds represented in speed-modulated stimulus but not in unmodulated stimulus.
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If temporally low-pass the pre-filtering stage,wouldn't be able to perceive motion at high frequencies
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If delay stage is temporally low-pass,
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==refs==
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<biblio>
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#HolcombeLinaresWhite09 pmid=20055542
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#Melcher-etal-2004 pmid=15066396
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#Holcombe2009TICS pmid=19386535
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</biblio>

Current revision

Members

Alex Holcombe
Sarah McIntyre
Fahed Jbarah
• Shih-Yu Lo
• Patrick Goodbourn
Lizzy Nguyen
Alumni


Technical

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


Notes for the project described in [1] as well as forthcoming _Subjective Time_ MIT Press volumes

old notes for Dani JoV paper: Temporal Noise

ModellingUncertainty

also see multiple drafts of consciousness vs. postdiction

integration interval

[2] found attention / central viewing dramatically increased motion integration interval, with max integration interval 10 sec as found by Burr and Santoro

effect of distance on temporal binding (in cases where low-level motion was avoided)

  • Motoyoshi found x for
  • For temporal freezing paper, we don't know precision
  • Martini & Nakayama found X
  • Long-range alignment judgment we found little effect in [3]
  • Binocular rivalry waves can be slow, e.g.
  • Migraine aura glacial
  • On the other hand,
    • Don't forget Yan's relative motion result
    • Some apparently-spreading processes seem instantaneous (spokes illusion)

More discussion at my Google Doc on the topic, in reviews folder

modeling

Werkhoven, Snippe, & Toet. First-order, second-order, etc. low-pass filter: http://en.wikipedia.org/wiki/Low-pass_filter

  • acceleration and direction alternation

If temporally low-pass the Reichhardt outputs, all speeds represented in speed-modulated stimulus but not in unmodulated stimulus. If temporally low-pass the pre-filtering stage,wouldn't be able to perceive motion at high frequencies If delay stage is temporally low-pass,


refs

  1. Holcombe AO. . pmid:19386535. PubMed HubMed [Holcombe2009TICS]
  2. Melcher D, Crespi S, Bruno A, and Morrone MC. . pmid:15066396. PubMed HubMed [Melcher-etal-2004]
  3. Linares D, Holcombe AO, and White AL. . pmid:20055542. PubMed HubMed [HolcombeLinaresWhite09]
All Medline abstracts: PubMed HubMed
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