King penguin vision: the science and the numbers
Aptenodytes patagonicus · order Sphenisciformes · Birds: all the numbers
Its sharpest vision resolves 20.4 cycles per degree, against 63.75 for people in this dataset.[5] Both eyes see the same 29° in front of it.[8]
- 20.4cycles per degree (sharpness)Measured
- 29°seen by both eyesMeasured
The king penguin (Aptenodytes patagonicus) is a bird in the order Sphenisciformes. Its eyes belong to the vision type Penguin (underwater-tuned bird): cones shifted towards blue, no ultraviolet cone and a flat cornea for focusing under water. Measured in this species: sharpness, field of view and night vision. Measured colour or sharpness: a measured receptor set or acuity in this species; other dials come from relatives or group defaults.
This is a simulation built from published eye measurements, not what the animal experiences.
What the king penguin sees: colour receptors
What stands out
- Its sharpest vision resolves 20.4 cycles per degree: the finest stripe pattern it can tell apart from grey.
- Both eyes see the same 29° in front of it (binocular overlap), where depth is judged best.
- Activity pattern: diurnal.
The six dials
Evidence levels: how the tiers work. "Measured" means a value measured in this species; "Estimated" values come from a close relative or an eye-size formula. The last column gives the values for people from the same catalogue.
| Dial | Value | Evidence | Sources | People |
|---|---|---|---|---|
| Colour | Colour receptors 3 receptor classes: 403 nm (VS/SWS (violet)), 450 nm (SWS (blue)), 543 nm (LWS (long)) receptor set of nearest measured relative Spheniscus humboldti (same family Spheniscidae) | Estimated | [1] | Colour receptors: 3 receptor classes: 421.5 nm (VS/SWS (violet)), 532 nm (MWS (green)), 558.4 nm (LWS (long)) Measured (not re-verified)[1][2][3][4] |
| Sharpness | Acuity 20.4 cycles per degree median of 1 anatomical-ganglion rows (method priority rule) | Measured | [5] | Acuity: 63.75 cycles per degree Measured[6][7] |
| Field of view | Binocular overlap 29° measured in this species (extension 2026-10, fov-verified.csv) | Measured | [8] | Binocular overlap: 122.5° Measured[9][10] Total field of view: 200° Measured (not re-verified)[11] Blind area behind the head: 160° Derived[11] Eye placement: frontal Derived[9][10] |
| Total field of view 282° median species-v1 total field of family Spheniscidae: Spheniscus humboldti | Estimated | [12] | ||
| Binocular overlap (published value) 29° (approximate); approximately horizontal plane; eyes in relaxed (resting) position; head in typical posture for the species; alert live birds | Measured | [8] | ||
| Binocular field, vertical extent 180° (approximate); approximately horizontal plane; eyes in relaxed (resting) position; head in typical posture for the species; alert live birds | Measured | [8] | ||
| Field of one eye 180° (approximate); approximately horizontal plane; eyes in relaxed (resting) position; head in typical posture for the species; alert live birds | Measured | [8] | ||
| Binocular field, widest at any elevation 29°; maximum binocular overlap (widest frontal binocular sector at any elevation); maximum binocular overlap (compiled) | Measured | [13] | ||
| Field of one eye 127°; medium (air / water) as stated; horizontal plane in the plane of the optic axes; in water; fundus reflex | Measured | [14] | ||
| Blind area behind the head (published value) 70°; medium (air / water) as stated; horizontal plane in the plane of the optic axes; in water; fundus reflex | Measured | [14] | ||
| Blind area in front 36°; medium (air / water) as stated; horizontal plane in the plane of the optic axes; in water; binocular printed −36 (footnote: a 36 deg blind area to the front) | Measured | [14] | ||
| Blind area behind the head (published value) 14°; medium (air / water) as stated; horizontal plane in the plane of the optic axes; in air; fundus reflex | Measured | [14] | ||
| Field of one eye 183°; medium (air / water) as stated; horizontal plane in the plane of the optic axes; in air; fundus reflex | Measured | [14] | ||
| Sharp zones (foveas) | Number of foveas 1 median of 48 relatives in class Aves: Branta canadensis, Cardinalis cardinalis, Passerina cyanea, Zenaida macroura, Cyanocitta cristata, Junco hyemalis | Group default | [15][16][17] | Number of foveas: 1 Measured[18] Fovea type: fovea Measured[18] |
| Fovea type single central fovea (displaced dorso-temporally from retinal centre) | Group default | [15][16][17] | ||
| Night vision | Activity pattern diurnal mode of 3 rows (of 3 rows): diurnal; not_nocturnal; photopic | Measured (not re-verified) | [19][20][21] | Activity pattern: diurnal Measured (not re-verified)[22][23][24][1][25][26][20][21] Pupil shape: vertical Group default[27][28] Reflective layer (tapetum): no Measured[29] Rods vs cones: cone-dominated Derived[22][23][24][1][25][26][20][21] Night sensitivity (optical, against people): S = 0.93 µm² sr, 1 times people (log10 ratio 0) Derived[30] |
| Rods vs cones cone-dominated nocturnal -> rod-dominated; crepuscular / cathemeral / mixed -> mixed; diurnal -> cone-dominated | Derived | [19][20][21] | ||
| Motion (flicker fusion) | Flicker fusion frequency 88.5 Hz median of 17 relatives in class Aves: Bubo virginianus, Melopsittacus undulatus, Passer domesticus, Taeniopygia guttata, Columba livia, Calypte anna | Group default | [31][32][33][34][35] | Flicker fusion frequency: 60 Hz Measured[33][34] |
All birds side by side: Birds: every measurement. Method: how we know what animals see.
Sources
- Longcore 2023
- Kirwan
- Müller et al. 2009
- Thermal Activation and Photoactivation of Visual… 2004
- Caves et al. 2018
- Kirk et al. 2004
- Veilleux et al. 2014
- Martin et al. 1999
- Heesy 2004
- Heffner et al. 1992
- Campbell & Green 1965
- Hadden & Zhang 2023
- Troscianko et al. 2012
- Hadden et al. 2023
- Moore et al. 2017
- Potier et al. 2017
- Rodrigues et al. 2026
- Kopania et al. 2025
- Wilman et al. 2014
- Schmitz et al. 2011
- Moura et al. 2024
- Anderson et al. 2017
- Borges et al. 2018
- Wilman et al. 2014
- Maor et al. 2017
- Jones et al. 2009
- Banks et al. 2015
- Cervino et al. 2021
- Guareschi et al. 2025
- Brauburger et al. 2026
- Boström et al. 2016
- Haarlem et al. 2026
- Healy et al. 2013
- Inger et al. 2014
- Lafitte et al. 2022
Every value cites its sources (all sources). Values were extracted from these works and converted (units, medians, derived values); changes are ours, and the listed sources do not endorse this site. Data: catalogue-v1, built 2026-09-29. Accuracy notes: how accurate is this? Method: how we know.