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Author |
Rutberg, A.T.; Keiper, R.R. |
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Title |
Proximate causes of natal dispersal in feral ponies: some sex differences |
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Journal Article |
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Year |
1993 |
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Animal Behaviour. |
Abbreviated Journal |
Anim. Behav. |
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46 |
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5 |
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969-975 |
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Abstract. Fifteen years of data on natal dispersal age and the context of dispersal for the feral ponies of Assateague Island, Maryland are presented. Ninety-seven per cent of males and 81% of females dispersed from their natal groups by 5 years of age. For animals that left their natal group, average age of dispersal was 20[middle dot]8 months for males and 24[middle dot]6 months for females. Male dispersal age was strongly and significantly correlated with number of peers in the natal group, and males dispersing with peers were significantly older than males dispersing without peers, suggesting that males delayed dispersal when peers were available for interaction. Female dispersal age was not influenced by number of peers, but was correlated with age of first reproduction. Factors not influencing dispersal age in either sex were presence of a younger sibling, maternal band transfers, and maternal age and dominance rank. The relatively high frequency of females failing to disperse from their natal groups is puzzling in light of data showing diminished fecundity in non-dispersing pony mares. |
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518 |
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Author |
Russon AE; Galdikas BMF |
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Title |
Imitation in free-ranging rehabilitant orangutans (Pongo pygmaeus) |
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Journal Article |
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Year |
1993 |
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J. Comp. Psychol. |
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107 |
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147 |
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Equine Behaviour @ team @ |
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3036 |
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Author |
Roper, K.L.; Zentall, T.R. |
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Title |
Directed forgetting in animals |
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Journal Article |
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Year |
1993 |
Publication |
Psychological bulletin |
Abbreviated Journal |
Psychol Bull |
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Volume |
113 |
Issue |
3 |
Pages |
513-532 |
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Animals; Behavior, Animal; *Cognition; Columbidae; Conditioning (Psychology); Discrimination Learning; Female; Humans; Male; Memory Disorders/*psychology; Reinforcement (Psychology); Task Performance and Analysis |
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Directed-forgetting research with animals suggests that animals show disrupted test performance only under certain conditions. Important variables are (a) whether during training, the cue to forget (F cue) signals nonreward (i.e., that the trial is over) versus reward (i.e., that reinforcement can be obtained) and (b) given that reinforcement can be obtained on F-cue trials, whether the post-F-cue response pattern is compatible with the baseline memory task. It is proposed that some findings of directed forgetting can be attributed to trained response biases, whereas others may be attributable perhaps to frustration-produced interference. It is suggested that directed forgetting in animals should be studied using procedures similar to those used to study directed forgetting in humans. This can be accomplished by presenting, within a trial, both to-be-remembered and to-be-forgotten material. |
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Department of Psychology, University of Kentucky, Lexington 40506 |
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0033-2909 |
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PMID:8316612 |
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refbase @ user @ |
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259 |
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Ratzlaff, M.H.; Wilson, P.D.; Hyde, M.L.; Balch, O.K.; Grant, B.D. |
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Title |
Relationship between locomotor forces, hoof position and joint motion during the support phase of the stride of galloping horses |
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Journal Article |
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1993 |
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Acta Anatomica |
Abbreviated Journal |
Acta Anat (Basel) |
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146 |
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2-3 |
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200-204 |
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Animals; Equipment Design; Hoof and Claw/*physiology; Horses/*physiology; Joints/*physiology; *Locomotion; Motor Activity/*physiology; Physiology/instrumentation; *Posture; Shoes; Transducers |
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Three methods were used simultaneously to determine the relationships between the vertical forces exerted on the hooves and the positions of the limbs and hooves at the times of peak vertical forces from 2 horses galloping on a track straightaway. Vertical forces were recorded from an instrumented shoe, fetlock joint motion was measured with an electrogoniometer and the angles of the carpus, fetlock and hoof were determined from slow-motion films. At hoof contact, the mean angles of the carpus and fetlock were 181-182 degrees and 199-206 degrees, respectively. Peak vertical forces on the heel occurred at or near maximum extension of the carpal and fetlock joints. Peak forces on the toe occurred during flexion of the fetlock joint and at mean hoof angles of 28-31 degrees from the horizontal. The mean angles of the hoof from the horizontal at the time of heel contact were 6-7 degrees. Hoof lift occurred at mean carpal angles of 173-174 degrees and mean fetlock angles of 199-200 degrees. |
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Department of Veterinary and Comparative Anatomy, Pharmacology and Physiology, College of Veterinary Medicine, Washington State University, Pullman 99164-6520 |
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0001-5180 |
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PMID:8470468 |
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refbase @ user @ |
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1945 |
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Povinelli DJ; Rulf AB; Landau KR; Bierschwale DT |
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Self-recognition in chimpanzees (Pan troglodytes): distribution, ontogeny, and patterns of emergence |
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1993 |
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J. Comp. Psychol. |
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107 |
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347 |
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Equine Behaviour @ team @ |
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3033 |
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Author |
Povinelli DJ |
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Title |
Reconstructing the evolution of mind |
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Journal Article |
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1993 |
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Am. Psychol. |
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48(5) |
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493 |
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Equine Behaviour @ team @ |
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3027 |
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Poletaeva, I.I.; Popova, N.V.; Romanova, L.G. |
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Genetic aspects of animal reasoning |
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1993 |
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Behavior Genetics |
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23 |
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5 |
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467-475 |
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This paper reviews the investigations of Prof. L. V. Krushinsky and his colleagues into the genetics of complex behaviors in mammals. The ability of animals to extrapolate the direction of a food stimulus movement was investigated in wild and domesticated foxes (including different fur-color mutants), wild brown rats, and laboratory rats and mice. Wild animals (raised in the laboratory) were shown to be superior to their respective domesticated forms on performance of the extrapolation task, especially in their scores for the first presentation, in which no previous experience could be used. Laboratory rats and mice demonstrated a low level of extrapolation performance. This means that only a few laboratory animals were capable of solving the task, i.e., the percentage of correct solutions was equivalent to chance. The brain weight selection program resulted in two mice strains with a 20% (90-mg) difference in brain weight. Ability to solve the extrapolation task was present in low-brain weight mice in generations 7-11 but declined with further selection. Investigation of extrapolation ability in mice with different chromosomal anomalies demonstrated that animals with Robertsonian translocations Rb(8,17) 1lem and Rb(8,17) 6Sic were capable of solving this task in a statistically significant majority of cases, while mice with fusion of other chromosomes, as well as CBA normal karyotype mice, performed no better than expected by chance. Mice with two types of partial trisomies and animals homo- and heterozygous for translocations were also tested. Although mice with T6 trisomy performed no better than expected by chance, animals with trisomy for a chromosome 17 fragment solved the task successfully. Thus, a genetic component underlying the ability to solve the extrapolation task was demonstrated in three animal species. The extrapolation task in animals is considered to reveal a general capacity for elementary reasoning. The genetic basis of this capacity is very complex. |
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Equine Behaviour @ team @ |
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3089 |
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Pickerel, T.M.; Crowell-Davis, S.L.; Caudle, A.B.; Estep, D.Q. |
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Title |
Sexual preference of mares (Equus caballus) for individual stallions |
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Journal Article |
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1993 |
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Applied Animal Behaviour Science |
Abbreviated Journal |
Appl. Anim. Behav. Sci. |
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38 |
Issue |
1 |
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1-13 |
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Horse; Sexual behavior; Sexual preference; Vocalization |
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Eight mares were tested to determine if they remained near one of two stallions longer than would be expected if association was random. Six stallions were paired in 30 combinations and each mare was tested 30 times. The mares (Equus caballus) demonstrated a definite preference for individual stallions throughout the breeding season. This preference was influenced by the estrous state of the mare. During estrus, mares' preferences for stallions were positively correlated with the rate at which a given stallion vocalized. During diestrus, mares spent significantly less time in the proximity of stallions and did not exhibit any preference for individual stallions. |
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Equine Behaviour @ team @ |
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2270 |
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Petherick, J.C.; Seawright, E.; Waddington, D. |
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Influence of motivational state on choice of food or a dustbathing/foraging substrate by domestic hens |
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1993 |
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Behavioural Processes |
Abbreviated Journal |
Behav. Process. |
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28 |
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3 |
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209-220 |
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Food; Learning; Litter; Motivation; Poultry; Preference |
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Domestic hens were trained to run a Y-maze and make an association between differently coloured doorways and access to food pellets or sand. The hens were tested for their choice of doorway when the goals were not visible from the choice point and when they were food or sand deprived. Hens made the choice appropriate to their deprivation state (correct choice) significantly more often for food than sand and were faster at choosing and entering the goal box when food deprived. In a follow up experiment, the goals were visible from the choice point. Again the hens chose correctly significantly more often when food than sand deprived and made the choice and entered the goal box faster when food deprived. Thus, failure to choose sand in the first experiment was not due to an inability to learn the association, but appears to result from a strong motivation to feed in the Y-maze, even when not food deprived, and a weak motivation to dustbathe or forage, even when sand deprived. |
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Equine Behaviour @ team @ |
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3608 |
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Author |
Parelli, P. |
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Book Whole |
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1993 |
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Natural Horsemanship |
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Cited By (since 1996): 5; Export Date: 21 October 2008 |
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Equine Behaviour @ team @ |
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4538 |
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