Search PubMedSearch

SEARCH · Search PubMed

Results for “Behavior Control”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 181 records · Page 10Linked to original sources

Short-term effects of paraoxon and atropine on schedule-controlled behavior in rats.

The effects of lethal (2.0 mg/kg) and high sublethal (1.3 mg/kg) dosages of the organophosphate acetylcholinesterase (AChE) inhibitor paraoxon on FR10 performance rate was determined 1 and 2 days after intoxication. The lethal doses were antidoted with either centrally acting atropine sulfate (AS), or atropine methyl bromide (AMB) or atropine methyl nitrate (AMN), both quaternary salts and not expected to act centrally. AChE inhibition in the brain was about 35-60% on the second day after treatment. AS yielded a small transient depression in performance, while AMB and AMN yielded severe deficits, with incomplete recovery. Performance was depressed by 1.3 mg/kg paraoxon by 52% and 34% on days 1 and 2, respectively, while performance was more greatly depressed by the lethal dose, especially with the noncentrally acting antidotes: AS, 67 and 48%; AMB, 81 and 55%; AMN, 91 and 78%. However, a low dose of AS with 2 mg/kg paraoxon resulted in very severe, nonrecovering deficits. A lethal dose of the nonpersistent anti-AChE eserine sulfate, antidoted with a low dose of AS, yielded no deficits. Thus, a high level, acute intoxication with paraoxon yields behavioral deficits which are attenuated by high levels of a centrally acting muscarinic receptor antagonist. The paraoxon-induced performance deficits or their recovery do not correlate directly with AChE inhibition.

Acetylcholinesterase

Transections of stria medullaris or stria terminalis in the rat: effects on aversively controlled behavior.

Surgical transection of the stria medullaris (SM) reliably interfered with the acquisition of a one-way avoidance response but had no effect on two-way shuttle box avoidance, passive avoidance, intake of palatable fluids, or locomotor activity. Transection of the stria terminalis (ST) selectively interfered with the animals' reactions to punishment in a passive avoidance situation but had no effect on one-way or two-way active avoidance or on locomotor activity. This pattern of effects complements the results of earlier investigations from our laboratory that showed that two-way avoidance learning (but not one-way avoidance or passive aboidance behavior) was impaired after fornicotomy and after transection of the ventral connections of the septum with the lower brain stem. The latter cut, but not fornicotomy or transection of ST or SM, reproduced the effects of septal lesions on water intake, body weight, and preferential intake of palatable solutions. The results of this investigation provide support for the hypothesis that the septum exercises a number of separate functions that are mediated by different pathways.

Animals

Microanalytical methodology relating to the identification of insect sex pheromones and related behavior-control chemicals.

Methods currently in use in the extraction, isolation, and identification of insect sex attractants, which are needed for use in pest control, are described briefly. Because amounts of these materials in insects are generally minute, specialized microanalytical methods and techniques have been developed to aid in the determination of their chemical structures.

Animals

Behavioral control of visual field screening using a microcomputer.

A computer algorithm is described which automatically controls the presentation of visual field targets and analyzes the subject's responses. Data relating to the procedure's reliability and validity are reported along with experience using it with normal subjects on an IBM PC compatible. Suggestions are made for the further development of the microcomputer approach to visual field investigations.

Algorithms

Ionic mechanisms controlling behavioral responses of paramecium to mechanical stimulation.

A mechanical stimulus applied to the anterior part of Paramecium causes a transient increase in membrane permeability to calcium. This permits a calcium current to flow into the cell, causing the membrane potential to approach the equilibrium level for calcium. The transient depolarization which results elicits a reversal in the direction of ciliary beat. When the organisms are free-swimming this is seen as the reversed locomotion of Jennings' "avoiding reaction." In contrast, a mechanical stimulus applied to the posterior part results in increased permeability to potassium ions, and hence an outward potassium current. The hyperpolarization which results causes an increase in the frequency of ciliary beat in the normal direction. In free-swimming specimens this is seen as an increase in the velocity of forward locomotion.

Animals

Dynamics in the fine structure of schedule-controlled behavior.

The variability in the behavioral equilibrium established by six basic schedules was characterized. The measures were the pause preceding the first response in each interreinforcement interval; the mean rate of responding in each interreinforcement interval; and the relative frequency of each interresponse time. The temporal windows ranged across the 780-session exposure, across a session, and across the interreinforcement interval. A display of individual interresponse times as a function of time in the interreinforcement interval indicated clear recurrent responding at somewhat less than 3 Hz in every bird, even after extended exposure to a schedule and regardless of the contingency. No strong sequential dependencies in the interresponse-time distributions were identified. A simulator, based on a simple recurrent pulser, was presented that produced output similar to the obtained data. An archival data base of the behavior chronically maintained by the simple schedules was also generated.

Animals