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How does the wolf spider (Lycosa beihaiensis) see?

The wolf spider (Lycosa beihaiensis) is a spider in the order Araneae. Its eyes belong to the vision type Jumping spider.

Measured in this species: motion (flicker fusion). One measured dial: a value other than colour or sharpness is measured in this species; colour and sharpness are not measured here. Every value below carries its evidence level and sources; nothing is typed by hand.

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What stands out

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.

Vision values for the wolf spider (Lycosa beihaiensis) (Lycosa beihaiensis), catalogue-v1
DialValueEvidenceSources
ColourColour receptors
4 receptor classes: 360 nm (UVS), 490 nm (MWS (green)), 534 nm (MWS (green)), 580 nm (LWS (long))
receptor set of nearest measured relative Menemerus fulvus (same order Araneae)
Group default[1]
Ultraviolet
yes: at least one receptor peaks in the ultraviolet
Group default
SharpnessAcuity
12 cycles per degree
group default: median of tier-A values in vision type V26 within phylum Arthropoda (1 species: Portia fimbriata)
Group default[2]
Field of viewNo value in the catalogue.
Sharp zones (foveas)Number of foveas
1
mode of species-v1 relatives in order Araneae: Portia fimbriata
Group default[2]
Fovea type
principal eyes: tiered retina (layer 1 = fovea-like)
Group default[2]
Night visionActivity pattern
diurnal
group default: mode of tier-A values in vision type V26 within phylum Arthropoda (6 species: Cupiennius salei, Argiope amoena, Argiope bruennichi, Menemerus fulvus, Phidippus regius, Plexippus validus)
Group default[1]
Rods vs cones
no rods (invertebrate photoreceptors)
Group default[1]
Motion (flicker fusion)Flicker fusion frequency
10 Hz
median of 1 rows (no bright-light flag) (behavioural/whole-eye ERG rows; all rows: [10.0])
Measured[3]

Related animals

More spiders: all spiders with measured vision data.

Sources

  1. Longcore T. 2023. A compendium of photopigment peak sensitivities and visual spectral response curves of terrestrial wildlife to guide design of outdoor nighttime lighting. Basic Appl Ecol 73:40-50. doi:10.1016/j.baae.2023.09.002. doi.org/10.5281/zenodo.8432720
  2. species_v1:Williams & McIntyre 1980
  3. Haarlem CS, Hynes C, Jackson AL, Mitchell KJ, O'Connell RG, Healy K. 2026. Pace of ecology drives the tempo of visual perception across the animal kingdom. Nature Ecology & Evolution (doi:10.1038/s41559-026-02994-7). Figshare dataset 10.6084/m9.figshare.30556475. doi.org/10.6084/m9.figshare.30556475
  4. Healy K, McNally L, Ruxton GD, Cooper N, Jackson AL. 2013. Metabolic rate and body size are linked with perception of temporal information. Animal Behaviour 86:685-696. Table 1. doi.org/10.1016/j.anbehav.2013.06.018
  5. Inger R, Bennie J, Davies TW, Gaston KJ. 2014. Potential biological and ecological effects of flickering artificial light. PLoS ONE 9(5): e98631. Table 3. doi.org/10.1371/journal.pone.0098631

Every value cites its sources (all sources). Data: catalogue-v1, built 2026-09-29. Accuracy notes: how accurate is this?