dr salmon links_
Dr Salmon home page
Dr Salmon's week
email Dr
Salmon
Proverbs list
vsii course links_
Syllabus
Course schedule
NSU Library
Journal of Vison
IOVS
OSA Standards
Aberrometer accuracy '98
COAS accuracy article
The
Indiana Eye
WaveFront
Sciences, Inc.
Surgical
Eyes
VISX
LADARVISION
Light Measurement Handbook
Recommended light
levels
IESNA
Illuminance levels
CRVL data sets
Retinal neurons site
van Gogh
art gallery
Vector Vision
Illusion Works
Joy of Visual
Perception
Motion
Perception
Power vector
spreadsheet
Zernike to Rx conversion
other vision
science
links_
IU Vision Science Group
Center for
Adaptive Optics
Dr
Austin
Roorda lab
Dr David Williams lab
Dr
Troje's bio motion demo
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lectures
Lecture
1 - Aberrometry 1 - Visual
optics review [Aberrometry chapter]
Lecture 2 - Aberrometry 2 -
Zernikes and RMS [Aberrometry slide
presentation]
Lecture 3 - Aberrometry 3
Lecture 4 - Approaches to vision
science, Visual fields [Lab 1 & 2
results]
Lecture 5 - Absolute sensitivity
of the eye
Lecture 6 - Photometry 1 - the V
lambda function
Lecture 7 - Photometry 2 -
Lambertian surfaces, retinal illuminance
Lecture 8 - Introduction to the
duplex retina, photochromic
interval, Purkinje shift
Lecture 9
- Dark adaptation 2
Lecture
10 - Light adaptation, Weber's
law, spatial summation
Lecture 11
- Spatial, temporal summation,
Stiles-Crawford effect
Lecture 12
- review for Exam 1
Lecture 13 - Discussion of Exam 1
Lecture 14 - Power vectors [Power Vector
spreadsheet; Zernike to Rx conversion]
Lecture 15 - Introduction to
spatial vision, Fourier analysis [Spatial
vision slides]
Lecture 16 - Fourier
transformation of images
Lecture 17 - Fourier optics and
the MTF
Lecture 18 - Spatial
filtering, contrast sensitivity [Spatial filtering slides]
Lecture 19
- Contrast sensitivity 2 [Spatial
vision slides]
Lecture
20 - Contrast sensitvity 3 [Starry
Nights] [Don
McClean song]
Lecture 21 - Visual acuity
Lecture 22
- Temporal vision, the temporal MTF
Lecture 23 - Temporal vision
phenomena
Lecture 24 - Review for Exam 2
Lecture 25 - Discussion of Exam 2
Lecture 26
- Motion perception [Motion gradient figure]
Lecture
27 - Color vision
introduction
Apple color information: Video: "An
Eye for Color"
Saturation,
Simultaneous
contrast
Wikipedia
color article
Lecture 28 - OAOP meeting in Tulsa
Lecture 29 - Normal color vision
Lecture 30 - Color opponent
theory
Lecture 31 - Anomalous color
vision
Lecture 32 - Acquired color
anomalies
Lecture 33 - Testing color vision
Lecture 34 - Anomaloscope
Lecture 35 - Gross electrical
potentials
Lecture 36 - Retinal
electrophysiology
Lecture 37 - Parvo and magno
parallel pathways
Lecture 38 - Frequency doubling
technology, Intro to phsychophysics
Lecture 39 - Psychophysical
thresholds
Lecture 40 - The theory of signal
detection
Lecture 41 - ROC curves
Lecture 42 - Review for Exam
3
labs
Lab 1 - Clinical aberrometry [Lab1 workbook.xls]
Lab 2 - Visual fields testing [Lab 2 results]
Lab 3
- Photometry,
V lambda, photostress [Explanation]
Lab 4 - Visual acuity [Lab 4 feedback]
Lab 5 - One- and
two-dimensional Fourier analysis
Lab 6 - Contrast sensitivity [Lab 6 results]
Lab 7 - Ferry-Porter law, Visual
illusions [Illusion
Works web site]
Lab 8 - The CIE Color Specification
System
Roorda lab
cone data
Lab 9 - Vision Science Symposium [Instructions] [Task
checklist]
Lab 10 - Testing color vision
Lab 11 - VER
Lab 12 - ERG
tests
2007 Final
2007
Exam 3
2007
Exam 2
2007
Exam 1
2006
Final
2006 Exam 3 [2006 Exam3b]
2006 Exam 2
2006 Exam 1
2005
Final
2005 Exam 3
2005 Exam 2
2005 Exam 1
2004
Final
2004 Exam 3
2004 Exam 2
2004 Exam 1
2003
Final
2003 Exam 3
2003 Exam 2
2003 Exam 1
2002
Final
2002 Exam 3
2002 Exam 2
2002 Exam 1
2001
Final
2001 Exam 3
2001 Exam 2
2001 Exam 1
2000
Final
2000 Exam 3
2000 Exam 2
2000 Exam 1
1999
Final
1999 Exam 3
1999 Exam 2
1999 Exam 1
1998
Final
1998 Final
1998 Exam 2
1998 Exam 1
1997
Final
1997 Exam 3
1997 Exam 2
1997 Exam 1
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