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Biomedical subjects

M D Suboski

Publications and source records attributed to M D Suboski.

At least 19 recordsLinked to original sources

Visual and olfactory stimuli in learned release of alarm reactions by zebra danio fish (Brachydanio rerio).

Alarm reactions, innately organized antipredator defensive behavior, are precipitated in zebra danio fish (Brachydanio rerio) by a pheromone, alarm substance, passively exuded from injured skin of conspecific fish. Control over inducement of alarm reactions from fish can be transferred to other stimuli that do not initially provoke alarm. This was first found when an olfactory stimulus (morpholine) presented to fish together with alarm substance elicited alarm behavior from the fish and transformed morpholine into a learned elicitor of alarm from the fish. We observed similar behavior here where fish learned to react to an initially neutral visual stimulus (red light). We also confirmed earlier findings of social transmission of predator recognition by zebra danios. Fish trained to alarm react to light and morpholine were mixed with completely naive fish and tested with light and morpholine alone. All fish in the combined group displayed alarm. The naive fish, separated out and retested with light and morpholine, also exhibited alarm. Thus, the naive fish, never exposed to alarm pheromone, nevertheless learned to recognize predator cues that were socially transmitted by conspecific behavior.

Animals

Environmental variables and releasing-valence transfer in stimulus-directed pecking of chicks.

Releasing valence transfer occurs when the power or valence to release responses is transferred from a primary releasing stimulus to a second, initially neutral, stimulus. In the exemplar, pecking responses by neonatal chicks are released and directed by a pointed object operated to make pecking movements. Stimuli attached to or pecked by the arrow thereby acquire enhanced releasing valence. Chicks peck at matching stimuli in preference to comparable but unenhanced stimuli. Research reported here shows that primary and transferred releasing valences are differentially affected by environmental variables. Specific findings were Pecking by chicks occurs only within a narrow range of ambient temperature. Outside of this range, pecking is low in frequency and insensitive to valence-enhanced release. Pecking by chicks appears to be finely tuned to arrow peck rates between 120 and 180 pecks per minute. Within this range, frequency of pecks by chicks is low whereas the percentage of pecks to the valence-enhanced stimulus is maximal. The maternal food call was a weak releaser of pecking by chicks with no valence-enhancing properties.

Animals

Effects of age of chick on social transmission of pecking preferences from hen to chicks.

A "pecking" arrow releases and directs pecking by neonatal chicks. Distinctive stimuli placed on or near the tip of the moving arrow lead to pecking that is selectively directed to matching stimuli. A total of 3 min of exposure to such modeling conditions results in remarkable persistence of imitative behavior. Matching stimuli are preferentially pecked 3 days later after three intervening tests without modeling. In contrast to the sensitive period for filial imprinting within the first 3 days posthatch, age of chick at training has no permanent effect on the development of pecking preferences. If anything, filial imprinting interferes with released-directed pecking, suggesting that separate processes are involved.

Age Factors