visual structure & blind spot. question 1 what do these devices have in common?

Post on 31-Dec-2015

215 Views

Category:

Documents

0 Downloads

Preview:

Click to see full reader

TRANSCRIPT

Visual structure & Blind spot

Question 1• What do these devices have in common?

These devices make use of electromagnetic waves

Capture electromagnetic waves and transform them into various forms.

What does the eye do?

Transducing light energy into electrical energy

Transduction

Light enters the eye A photon hits the receptor changes the shape of pigment molecules in the receptor triggers massive chemical reactions generate electrical signals in the receptor

Reflection of light• What we see is a reflection of light.

• Different objects reflect different wavelengths, different objects show different colors

• Photo receptors in the eye are geared to capture different wavelengths

Eye

• Photo receptors• Two types of photo

receptors – rod & cone

• Photo receptors are facing away from the light source.• The optic nerve carries neural information to this spot. • What happens?

– No receptors, no vision blind spot

The distribution of cones and rods on the retina

• Cones are concentrated mainly on the fovea.

• There are no rods on the fovea.

• We move eyes to capture images on the fovea.

Question

• We don’t see an unseen gap.

• What we see is a continuous scene.

• How come?

Main Point by Durgin et al.

• The blind spot filling-in phenomenon is functionally similar to the perception of amodally occluded areas. (p. 137)

Zero-crossing• Surface segmentation

• Mapping the 2D retinal data to the 3D environment.

241 99 209 86 167 124 173 20121 215 142 56 79 237 113 36 69 24 197 11 127 65 231

149 178 201 235 62 3 233 25187 25 83 49 223 199 155 229203 144 74 124 29 12 37 2245 106 68 213 43 20 198 36109 41 131 94 52 76 105 6183 202 168 115 177 80 167 6124 16 53 25 48 243 151 16129 100 133 129 98 190 241 79246 181 145 155 203 208 26 251146 21 7 226 241 148 117 89107 53 250 201 37 7 153 104232 68 152 200 129 63 101 126181 144 14 206 155 186 2 14087 76 202 196 39 225 15 38110 215 221 252 220 102 52 24364 100 88 158 244 242 108 41253 233 5 225 213 146 169 164229 133 7 206 126 230 253 135125 61 12 115 65 113 236 232101 204 80 131 189 187 11 230141 158 11 66 133 228 29 46211 35 127 225 51 60 180 80

1308 x 952. (0, 255)

Gaussian filtering Zero-crossing edge detection

top related