Migratory locust vision: the science and the numbers
Locusta migratoria · order Orthoptera · Insects: all the numbers
The migratory locust has 3 colour receptor classes (360, 430 and 530 nm), one of them in the ultraviolet.[1][2] Its sharpest vision resolves 0.53 cycles per degree, against 63.75 for people in this dataset.[6] The migratory locust stops seeing flicker at 65 Hz, against 60 Hz for people.[24]
- 3colour receptor classesMeasured
- 0.53cycles per degree (sharpness)Measured
- 65hertz flicker fusion (motion)Measured
The migratory locust (Locusta migratoria) is an insect in the order Orthoptera. Its eyes belong to the vision type Bee, ant and locust UV trichromat: three receptor types (ultraviolet, blue and green, no red), a low-resolution compound eye and fast motion vision. Measured in this species: colour, sharpness, night vision and motion (flicker fusion). Measured core: measured values on at least 3 of the 6 dials.
This is a simulation built from published eye measurements, not what the animal experiences.
What the migratory locust sees: colour receptors
What stands out
- It has three colour receptor classes, like most people, but one of them sees ultraviolet.
- Its sharpest vision resolves 0.53 cycles per degree: the finest stripe pattern it can tell apart from grey.
- It stops seeing flicker at 65 Hz, against 60 Hz for people in this dataset, so fast motion looks about the same.[25][24]
- Activity pattern: cathemeral.
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: 360 nm (UVS), 430 nm (VS/SWS (violet)), 530 nm (MWS (green)) measured in this species | Measured | [1][2] | 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][3][4][5] |
| Ultraviolet yes: at least one receptor peaks in the ultraviolet | Measured | |||
| Sharpness | Acuity 0.53 cycles per degree median of 2 optical rows (method priority rule) | Measured | [6] | Acuity: 63.75 cycles per degree Measured[7][8] |
| Angle between facets 0.9° minimum (acute-zone) interommatidial angle over sources; within caves2018: minimum (round-1 rule: mean of horizontal and vertical when both exist) | Measured | [6] | ||
| Eye type compound eye | ||||
| Field of view | No value in the catalogue. | 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] | ||
| Sharp zones (foveas) | Number of foveas 0 median of 91 relatives in class Insecta: Empis prodromus, Rhamphomyia albidiventris, Rhamphomyia breviventris, Rhamphomyia maculipennis, Rhamphomyia marginata, Rhamphomyia murina | Group default | [12] | Number of foveas: 1 Measured[13] Fovea type: fovea Measured[13] |
| Fovea type none | Group default | [12] | ||
| Night vision | Activity pattern cathemeral mode of 1 rows (of 1 rows): cathemeral | Measured | [1] | Activity pattern: diurnal Measured (not re-verified)[14][15][16][1][17][18][19][20] Pupil shape: vertical Group default[21][22] Reflective layer (tapetum): no Measured[23] Rods vs cones: cone-dominated Derived[14][15][16][1][17][18][19][20] |
| Rods vs cones no rods (invertebrate photoreceptors) nocturnal -> rod-dominated; crepuscular / cathemeral / mixed -> mixed; diurnal -> cone-dominated | Derived | [1] | ||
| Motion (flicker fusion) | Flicker fusion frequency 65 Hz median of 1 bright-light rows (behavioural/whole-eye ERG rows; all rows: [65.0]); cff_hz: larval/juvenile rows (adult rows used) set aside (labelled alternative: 85.0) | Measured | [24] | Flicker fusion frequency: 60 Hz Measured[25][24] |
Other senses
- polarisation vision: optional overlay of degree/angle of linear polarisation (Group default)
All insects side by side: Insects: every measurement. Method: how we know what animals see.
Sources
- Longcore 2023
- van der Kooi CJ, Stavenga DG… 2021
- Kirwan
- Müller et al. 2009
- Thermal Activation and Photoactivation of Visual… 2004
- Caves et al. 2018
- Kirk et al. 2004
- Veilleux et al. 2014
- Heesy 2004
- Heffner et al. 1992
- Campbell & Green 1965
- Comparative data for dance fly eye…
- Kopania et al. 2025
- Anderson et al. 2017
- Borges et al. 2018
- Wilman et al. 2014
- Maor et al. 2017
- Jones et al. 2009
- Schmitz et al. 2011
- Moura et al. 2024
- Banks et al. 2015
- Cervino et al. 2021
- Guareschi et al. 2025
- Inger et al. 2014
- Healy et al. 2013
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.