Analyze Diet

Topic:Vision

Vision in horses involves the study of the anatomical and physiological aspects of the equine visual system, including how horses perceive their environment. The equine eye is adapted for a wide field of view, important for detecting predators. Horses have dichromatic vision, meaning they see a limited color spectrum compared to humans. Their vision is adapted for low-light conditions, which is beneficial for dawn and dusk activity. Research in this area explores various aspects such as visual acuity, depth perception, and the impact of eye diseases on equine vision. This page compiles peer-reviewed research studies and scholarly articles that investigate the structure, function, and clinical implications of vision in horses.
Design of a multifaceted referral equine hospital.
The Veterinary clinics of North America. Equine practice    December 1, 2009   Volume 25, Issue 3 475-488 doi: 10.1016/j.cveq.2009.08.002
Bousum PC.There is no simple recipe for designing a multifaceted practice. However, keys to any design are the devotion of the people involved and proper positioning of such people in the organization. Anyone designing such a practice also must pay keen attention to details and a keep a finger constantly on the pulse of the business to ensure that it maintains a sound financial footing and a consistent vision. Little money is made from savings or pushing financials. Profits come mainly through building additional sales, maintaining a clear vision, and making shrewd investments. Like for every small busi...
Stimulus discrimination by horses under scotopic conditions.
Behavioural processes    April 21, 2009   Volume 82, Issue 1 45-50 doi: 10.1016/j.beproc.2009.04.009
Hanggi EB, Ingersoll JF.Scotopic vision in horses (Equus caballus) was investigated using behavioral measurements for the first time. Four horses were tested for the ability to make simple visual discriminations of geometric figures (circles and triangles) under various brightness levels within an enclosed building. Measurements of brightness ranging from 10.37 to 24.12 magnitudes per square arcsecond (mag/arcsec(2); in candelas per square meter-7.70 to 2.43E-05cd/m(2)) were taken using a Sky Quality Meter. These values approximated outdoor conditions ranging from twilight in open country to a dark moonless night in ...
Position of the head is not associated with changes in horse vision.
Equine veterinary journal    November 26, 2008   Volume 40, Issue 6 599-601 doi: 10.2746/042516408x332417
Bartos L, Bartosová J, Starostová L.It has become accepted that the horse cannot see directly in front when the nose is lowered and must therefore rely on the rider. We tested the hypothesis that this conclusion would be correct only if the horse did not adjust the eyeball horizontal axis to changes of the head position. The results of the present study suggest that it is unlikely that horses have limited vision in relation to their head position when driven by the rider, and that the horse maintains the optimal horizontal eyeball position regardless of head position relative to the ground.
Hind limb stepping over obstacles in the horse guided by place-object memory.
Behavioural brain research    November 24, 2008   Volume 198, Issue 2 372-379 doi: 10.1016/j.bbr.2008.11.023
Whishaw IQ, Sacrey LA, Gorny B.An animal that has stepped over an obstacle with its forelimbs uses a memory of the obstacle to guide the hind limbs so that they also clear the obstacle, even in situations in which long pauses are introduced between forelimb and hind limb stepping. To further clarify the features of hind limb obstacle clearance memory, the present study examined hind limb obstacle clearance in the horse. A rider guided horses over obstacles and paused the horse over obstacles in tests that examined the relationship between forelimb and hind limb stepping, with the following results. First, the horses display...
The absolute threshold of colour vision in the horse.
PloS one    November 12, 2008   Volume 3, Issue 11 e3711 doi: 10.1371/journal.pone.0003711
Roth LS, Balkenius A, Kelber A.Arrhythmic mammals are active both during day and night if they are allowed. The arrhythmic horses are in possession of one of the largest terrestrial animal eyes and the purpose of this study is to reveal whether their eye is sensitive enough to see colours at night. During the day horses are known to have dichromatic colour vision. To disclose whether they can discriminate colours in dim light a behavioural dual choice experiment was performed. We started the training and testing at daylight intensities and the horses continued to choose correctly at a high frequency down to light intensitie...
An investigation of colour discrimination with horses (Equus caballus).
Behavioural processes    February 13, 2008   Volume 78, Issue 3 387-396 doi: 10.1016/j.beproc.2008.02.003
Blackmore TL, Foster TM, Sumpter CE, Temple W.The ability of four horses (Equus caballus) to discriminate coloured (three shades of blue, green, red, and yellow) from grey (neutral density) stimuli, produced by back projected lighting filters, was investigated in a two response forced-choice procedure. Pushes of the lever in front of a coloured screen were occasionally reinforced, pushes of the lever in front of a grey screen were never reinforced. Each colour shade was randomly paired with a grey that was brighter, one that was dimmer, and one that approximately matched the colour in terms of brightness. Each horse experienced the colour...
Colour perception in a dichromat.
The Journal of experimental biology    August 11, 2007   Volume 210, Issue Pt 16 2795-2800 doi: 10.1242/jeb.007377
Roth LS, Balkenius A, Kelber A.Most mammals have dichromatic colour vision based on two different types of cones: a short-wavelength-sensitive cone and a long-wavelength-sensitive cone. Comparing the signal from two cone types gives rise to a one-dimensional chromatic space when brightness is excluded. The so-called ;neutral point' refers to the wavelength that the animal cannot distinguish from achromatic light such as white or grey because it stimulates both cone types equally. The question is: how do dichromats perceive their chromatic space? Do they experience a continuous scale of colours or does the neutral point divi...
Color vision in horses (Equus caballus): deficiencies identified using a pseudoisochromatic plate test.
Journal of comparative psychology (Washington, D.C. : 1983)    February 28, 2007   Volume 121, Issue 1 65-72 doi: 10.1037/0735-7036.121.1.65
Hanggi EB, Ingersoll JF, Waggoner TL.In the past, equine color vision was tested with stimuli composed either of painted cards or photographic slides or through physiological testing using electroretinogram flicker photometry. Some studies produced similar results, but others did not, demonstrating that there was not yet a definitive answer regarding color vision in horses (Equus caballus). In this study, a pseudoisochromatic plate test--which is highly effective in testing color vision both in small children and in adult humans--was used for the first time on a nonhuman animal. Stimuli consisted of different colored dotted circl...
Congenital stationary night blindness in a Thoroughbred and a Paso Fino.
Veterinary ophthalmology    December 20, 2005   Volume 8, Issue 6 415-419 doi: 10.1111/j.1463-5224.2005.00416.x
Nunnery C, Pickett JP, Zimmerman KL.This report documents congenital stationary night blindness (CSNB) in two non-Appaloosa horse breeds (Thoroughbred and Paso Fino). History of vision impairment since birth, normal ocular structures on ophthalmic examination, and electroretinographic findings were consistent with CSNB. In one horse (Thoroughbred), a 9-year follow-up was carried out. In the Paso Fino, severe vision impairment from birth to approximately 1 year of age in both dim and bright light situations led to humane euthanasia and histopathologic confirmation of the disorder.
The use of semiconductor diode laser for deflation and coagulation of anterior uveal cysts in dogs, cats and horses: a report of 20 cases.
Veterinary ophthalmology    August 18, 2004   Volume 7, Issue 5 360-368 doi: 10.1111/j.1463-5224.2004.04004.x
Gemensky-Metzler AJ, Wilkie DA, Cook CS.To describe semiconductor diode laser use for anterior uveal cyst deflation and coagulation in dogs, horses and cats. Methods: The presenting clinical signs, surgical technique and postoperative results for four dogs, nine horses and seven cats with anterior uveal cysts treated with diode laser are described. Treated cysts were of sufficient size and/or number to potentially impair vision, damage the corneal endothelium, or increase intraocular pressure (IOP). One dog with free-floating cysts exhibited 'fly biting' behavior. Cysts were suspected of causing shying on the affected side and/or he...
The lens and cataracts.
The Veterinary clinics of North America. Equine practice    July 24, 2004   Volume 20, Issue 2 393-vii doi: 10.1016/j.cveq.2004.04.009
Matthews AG.It is conservatively estimated that some form of lens opacity is present in 5% to 7% of horses with otherwise clinically normal eyes.These opacities can range from small epicapsular remnants of the fetal vasculature to dense and extensive cataract. A cataract is defined technically as any opacity or alteration in the optical homogeneity of the lens involving one or more of the following: anterior epithelium, capsule, cortex, or nucleus. In the horse, cataracts rarely involve the entire lens structure (ie, complete cataracts) and are more usually localized to one anatomic landmark or sector of ...
Photopigment basis for dichromatic color vision in the horse.
Journal of vision    April 8, 2003   Volume 1, Issue 2 80-87 doi: 10.1167/1.2.2
Carroll J, Murphy CJ, Neitz M, Hoeve JN, Neitz J.Horses, like other ungulates, are active in the day, at dusk, dawn, and night; and, they have eyes designed to have both high sensitivity for vision in dim light and good visual acuity under higher light levels (Walls, 1942). Typically, daytime activity is associated with the presence of multiple cone classes and color-vision capacity (Jacobs, 1993). Previous studies in other ungulates, such as pigs, goats, cows, sheep and deer, have shown that they have two spectrally different cone types, and hence, at least the photopigment basis for dichromatic color vision (Neitz & Jacobs, 1989; Jacob...
Use of an intravitreal sustained-release cyclosporine delivery device for treatment of equine recurrent uveitis.
American journal of veterinary research    January 5, 2002   Volume 62, Issue 12 1892-1896 doi: 10.2460/ajvr.2001.62.1892
Gilger BC, Wilkie DA, Davidson MG, Allen JB.To evaluate the use of an intravitreal sustained-release cyclosporine (CsA) delivery device for treatment of horses with naturally occurring recurrent uveitis. Methods: 16 horses with recurrent uveitis. Methods: Horses with frequent recurrent episodes of uveitis or with disease that was progressing despite appropriate medication were selected for this study. Additional inclusion criteria included adequate retinal function as determined by use of electroretinography, lack of severe cataract formation, and no vision-threatening ocular complications (eg, retinal detachment, severe retinal degener...
Neuro-ophthalmological sequelae of horse-related accidents.
Clinical & experimental ophthalmology    September 8, 2001   Volume 29, Issue 4 208-212 doi: 10.1046/j.1442-9071.2001.00430.x
Fleming PR, Crompton JL, Simpson DA.The aim of this study was to highlight the neuro-ophthalmological dangers associated with horse riding, and working around horses, and the importance of wearing adequate headgear to protect the rider from neuro-ophthalmic injuries. It raises the questions of whether the current laws regarding helmet use are satisfactory, and whether helmets currently used are of an adequate standard. Methods: The records over a 20-year period of one neuro-ophthalmologist in Adelaide were reviewed producing 22 patients with neuro-ophthalmological sequelae of head injuries as a result of horse-related accidents....
Cataract phacofragmentation in horses.
Veterinary ophthalmology    June 9, 2001   Volume 3, Issue 2-3 157-164 doi: 10.1046/j.1463-5224.2000.00139.x
Millichamp NJ, Dziezyc J.Cataract surgeries were carried out in fifty-one eyes of 36 horses over a 15-year period. Cataracts were removed using phacofragmentation and aspiration. Useful vision was restored after surgery in 30 horses. One year after surgery 16 of the 19 horses for which follow up information was available were still visual with several still being used as working horses. At 5-6 years after surgery three horses were still visual. The most frequent intraoperative complication was tearing of the posterior lens capsule. The most frequent postoperative problem was superficial corneal ulceration. Four eyes i...
Vision and hearing in horses.
Journal of the American Veterinary Medical Association    June 8, 2001   Volume 218, Issue 10 1567-1574 doi: 10.2460/javma.2001.218.1567
Timney B, Macuda T.No abstract available
The molecular genetics of red and green color vision in mammals.
Genetics    October 8, 1999   Volume 153, Issue 2 919-932 doi: 10.1093/genetics/153.2.919
Yokoyama S, Radlwimmer FB.To elucidate the molecular mechanisms of red-green color vision in mammals, we have cloned and sequenced the red and green opsin cDNAs of cat (Felis catus), horse (Equus caballus), gray squirrel (Sciurus carolinensis), white-tailed deer (Odocoileus virginianus), and guinea pig (Cavia porcellus). These opsins were expressed in COS1 cells and reconstituted with 11-cis-retinal. The purified visual pigments of the cat, horse, squirrel, deer, and guinea pig have lambdamax values at 553, 545, 532, 531, and 516 nm, respectively, which are precise to within +/-1 nm. We also regenerated the "true" red ...
Horse vision and an explanation for the visual behaviour originally explained by the ‘ramp retina’.
Equine veterinary journal    October 3, 1999   Volume 31, Issue 5 384-390 doi: 10.1111/j.2042-3306.1999.tb03837.x
Harman AM, Moore S, Hoskins R, Keller P.Here we provide confirmation that the 'ramp retina' of the horse, once thought to result in head rotating visual behaviour, does not exist. We found a 9% variation in axial length of the eye between the streak region and the dorsal periphery. However, the difference was in the opposite direction to that proposed for the 'ramp retina'. Furthermore, acuity in the narrow, intense visual streak in the inferior retina is 16.5 cycles per degree compared with 2.7 cycles per degree in the periphery. Therefore, it is improbable that the horse rotates its head to focus onto the peripheral retina. Rather...
Luminance and chromatic discrimination in the horse (Equus caballus).
Behavioural processes    March 1, 1999   Volume 44, Issue 3 301-307 doi: 10.1016/s0376-6357(98)00039-4
Macuda T, Timney B.Equine colour vision was measured under conditions that minimised the possibility of animals using brightness cues to make chromatic discriminations. In a two-stage study, we first obtained luminance discrimination functions for achromatic targets then tested for chromatic discrimination over a range of target luminances. Horses were trained on a two-choice discrimination task. The positive stimulus was varied in luminance and/or colour using neutral density and broad band colour filters. The negative stimulus appeared as a uniform grey. In the brightness discrimination task, the horses perfor...
Neodymium:yttrium-aluminum-garnet laser treatment of cystic granula iridica in horses: eight cases (1988-1996).
Journal of the American Veterinary Medical Association    August 1, 1997   Volume 211, Issue 3 341-343 
Gilger BC, Davidson MG, Nadelstein B, Nasisse M.To determine clinical features of cystic granula iridica in horses and outcome of horses treated with an ophthalmic neodymium:yttrium-aluminum-garnet (Nd:YAG) laser. Methods: Retrospective study. Methods: 8 horses. Methods: An ophthalmic Nd:YAG laser was used to deflate cysts in all horses. Results: Horses were examined because of visual impairment (n = 5), decreased jumping performance (2), or head shaking (1). Clinical signs associated with cysts resolved in all horses after treatment. Short- and long-term complications did not develop, and cysts did not recur. Conclusions: Cystic granula ir...
Penetrating keratoplasty for treatment of recurrent squamous cell carcinoma of the cornea in a horse.
Journal of the American Veterinary Medical Association    May 15, 1996   Volume 208, Issue 10 1692-1694 
van der Woerdt A, Gilger BC, Wilkie DA.Squamous cell carcinoma involving the cornea and conjunctiva of the left eye in a 14-year-old horse was treated by superficial keratectomy in combination with beta-radiation and radiofrequency hyperthermia. The tumor recurred 4 months later in the central cornea at the edge of the previous keratectomy site. Penetrating keratoplasty was performed in an effort to remove the tumor and retain a visual eye. The eye was visual 13 months after surgery. Mild fibrosis and vascularization were observed in the area of the penetrating keratoplasty.
Equine vision and optics.
The Veterinary clinics of North America. Equine practice    December 1, 1992   Volume 8, Issue 3 451-457 doi: 10.1016/s0749-0739(17)30435-2
Roberts SM.Vision is a marvelous sense, critical to the well-being and functional use of horses. Anatomic, optical, and visual acuity generalities are presented. The constituents of unsoundness due to equine ocular disease are discussed, and recommendations are made.
Visual acuity in the horse.
Vision research    December 1, 1992   Volume 32, Issue 12 2289-2293 doi: 10.1016/0042-6989(92)90092-w
Timney B, Keil K.We assessed the ease with which horses could learn visual discriminations and measured their resolution acuity. We trained three horses to press their noses against one of two large wooden panels to receive a small food reward. Following training on a series of two-choice discrimination tasks, resolution acuity was measured. Although there was some variability between animals, the best acuity obtained was 23.3 c deg-1. Within the margin of error imposed by limited anatomical data, the obtained values are consistent with predictions based on retinal ganglion cell density estimates and posterior...
Medical evaluation of the eye relevant to purchase.
The Veterinary clinics of North America. Equine practice    August 1, 1992   Volume 8, Issue 2 365-375 doi: 10.1016/s0749-0739(17)30457-1
Lavach D.Performance and pleasure horses depend upon their ability to see and assess the environment. Thus, the veterinarian must be able to examine the eyes and recognize abnormalities so that the owner or purchaser can be informed about the visual status and prognosis for the horse's vision. If the veterinarian encounters suspicious or abnormal findings during the examination, a more detailed examination and/or referral to a veterinary ophthalmologist can be recommended to the owner or purchaser.
[Clinical case report: unilateral malformation of the eye of a thoroughbred foal].
Berliner und Munchener tierarztliche Wochenschrift    August 1, 1991   Volume 104, Issue 8 268-269 
Röcken H, Wenz C.A unilateral malformation of the eye of a thoroughbred foal is described. The specific form of the tiny lens we named, "lenticulus". It is correlated with a maximal unchangeable mydriasis. The bulb shows physiological size. A brown-black pigmented mass inhibited (internal) inspection and examination of the middle and rear part of the eye. Special emphasis is laid on the insecure behaviour of the foal. A connection with an iridocyclochoroiditis, which was treated in the mare about a year ago, and the pathological changes in the eye of the foal is not evident.
The equine fundus. II: Normal anatomical variants and colobomata.
Equine veterinary journal. Supplement    September 1, 1990   Issue 10 50-54 doi: 10.1111/j.2042-3306.1990.tb04712.x
Matthews AG, Crispin SM, Parker J.A wide range of fundic variants are encountered during routine ophthalmoscopic examination of visually normal horses, often causing the examiner difficulty in assessing their clinical significance. Many of these are anatomical variants having no significant effect on visual function, and lie within the limits of normality in the horse. This paper illustrates this range of variants and discusses their anatomical basis and physiological consequences. Colobomata are non-progressive discontinuities in the structure of the anatomic fundus, occasionally noted as incidental findings during ophthalmos...
Follow-up report of a case of surgical aphakia with an analysis of equine visual function.
Equine veterinary journal. Supplement    September 1, 1990   Issue 10 91-93 doi: 10.1111/j.2042-3306.1990.tb04721.x
Farrall H, Handscombe MC.More work is necessary to establish corneal dimensions and retinal structure and neural organisation in the equine eye. This paper reports a case of surgical management of bilateral cataracts in a pony and the results of a survey of refractive error in normal horses. Aspects of accommodation are discussed. It is suggested that a difference in retinal receptor organisation between horse and human eyes could explain the good visual performance of the aphakic pony; and that the degree of blurring of vision in the aphakic situation is less, both in absolute terms and in proportion to presumed norm...
Congenital nuclear cataracts in the Morgan horse.
Journal of the American Veterinary Medical Association    June 1, 1984   Volume 184, Issue 11 1363-1365 
Beech J, Aguirre G, Gross S.Nuclear cataracts were found in 2 groups of related Morgan horses. The cataracts were finely reticulated central spherical translucencies that sometimes extended to the region of the posterior "Y" suture. The cataracts were not associated with other ocular defects and did not impair vision. In 1 group of 8 horses, 5 were affected; in the other group, 6 of 8 were affected. Although a pattern of inheritance could not be determined, the familial distribution of the cataracts supported the conclusion that the defect was a heritable disorder.
[Horse-riding in the psychological rehabilitation and recreation of ophthalmologically disabled persons (author’s transl)].
Klinika oczna    May 1, 1979   Volume 81, Issue 5-6 329 
Czabańska E.No abstract available
Physical optics of the equine eye.
American journal of veterinary research    June 1, 1977   Volume 38, Issue 6 735-737 
Knill LM, Eagleton RD, Harver E.The equine eye was treated as a general lens system and calculations were done to determine image position in relation to the retina for objects at a distance of infinity, 100 m, and 1 m. The retina is 19.1 mm behind the posterior surface of the lens; therefore, the image appears 14.6 mm posterior to the retina at infinity and at 100 m, and 16.3 mm at 1-m distance on a horizontal axis. The animals studied were hyperopic. It is evident that the horse must move its head or eye, or both, for optimal visual acuity. At the same time, some objects in the total field of vision are imperceptible or in...