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Acoustic startle reflexes in the rat during consummatory behavior.

Auditory startle reflexes were elicited in thirsty rats when they were drinking water or were between drinking boutsmthe reaction was greater during drinking, this enhancement developing over the first few seconds after drinking onset. The startle reaction was lowest immediately after the termination of drinking. Reflex enhancement was reduced when thirsty rats drank milk rather than the more preferred water. The reflex was smaller with increased water deprivation, but enhancement produced by drinking was apparent at all levels of deprivation studied, satiety to 4-days deprivation. The inhibitory effect of a preliminary stimulus was not affected by consummatory behavior. Attention is drawn to suggestive parallels between these behavioral effects and other consequences of consummatory activity, primarily having to do with electrophysiological events and arousal processes

Acoustic Stimulation

Consummatory behavior and urine production after cerebroventricular injection of vasopressin and vasopressin antiserum.

Vasopressin, or vasopressin antiserum, was injected into a lateral cerebral ventricle of conscious rats. These rats were normally hydrated, cellular dehydrated (NaCl loading) or hypovolemic (polyethylene glycol model). Elevation or reduction of vasopressin in cerebrospinal fluid produced no consistent change in consummatory behavior, urine volume or sodium and potassium excretion. These results show vasopressin in cerebrospinal fluid not to be an absolute requirement for maintenance of hydration or for response to acute volume and osmotic stimuli.

Animals

Comparison of the effects of intracranial injections of 6-OHDA and guanethidine on consummatory behavior and monoamine depletion.

6-Hydroxydopamine (6-OHDA) has been used extensively to study the effects of catecholamine depletion on feeding and drinking behavior. The results from these experiments are variable and do not clarify the involvement of catecholamines in these behaviors. Guanethidine, which has been used in studies of the peripheral autonomic nervous system, provides an alternative method of catecholamine depletion. In the experiments reviewed here the effects of injections of 6-OHDA and guanethidine into the rat brain on consummatory behavior and temperature regulation have been compared and related to changes in monoamine levels as shown by fluorescence histochemistry. Injections of 6-OHDA into anterior hypothalamic areas have lethal effects on food deprived animals. This effect may be explained in terms of loss of ability to regulate temperature. Animals whose catecholamines were depleted by guanethidine injections into anterior lateral hypothalamus showed a consistent reduction in food and water intake and an elevation of body temperature. Reconciliation of these findings appears difficult. However, a comparative study of the intracranial diffusion patterns of guanethidine and 6-OHDA has revealed marked differences in the extent of diffusion as seen with the fluorescence histochemical method when injected acutely or chronically into the lateral hypothalamus, the substantia nigra or the amygdala of the rat brain. Cannulation damage extended up to 1 mm in diameter. Generalized damage was far greater for 6-OHDA (2 mm) than for guanethidine (0.3 mm). At the doses used guanethidine, but not 6-OHDA caused specific damage to catecholamine-containing neurons up to a distance of at least 3 mm from the cannula tip. Guanethidine was less selective for dopaminergic compared to noradrenergic neurons. These differences between the effects of the two drugs are explained in terms of their unique pharmacological properties and their estimated decay in CNS tissue. An attempt has been made to account for the differences in behavioral data and in particular the variability of the 6-OHDA data in terms of the differences in the type of damage produced by the two drugs and the extent of their diffusion. It is also argued that the different patterns of damage would not easily be distinguished by biochemical analysis, and further, that changes in injection volume and concentration may lead to different damage patterns.

Amygdala

Consummatory behaviors and weight regulation in pregnant, lactating, and pregnant-lactating mice.

Pregnant Rockland-Swiss (R-S) albino mice consumed significantly more food and water and gained significantly more weight between gestation days 8-17 compared to virgin R-S females maintained in isolation for a comparable period. Postpartum (days 1-10) patterns of ingestion and weight change among thelectomized (nipple-deprived) mouse dams provided with young did not differ significantly from those of virgin animals without young. Sham- and nonoperated dams received suckling stimulation from young and consumed about 100% more food than thelectomized or virgin females (Experiment 1). Pregnancy concurrent with lactation does not increase further the hyperphagic response of female mice. Nipple presence is the principle regulator of postpartum hyperphagia in lactating and simultaneously pregnant-lactating mouse dams (Experiment 2).

Animals

Consummatory behavior in meadow voles (Microtus pennsylvanicus) and mongolian gerbils (Meriones unguiculatus).

Consumption of water and adulterated fluids was measured under choice and no choice situation in voles and gerbils. Voles consumed more water throughout, and were clearly less able to tolerate challenges presented by adulteration of available solutions in the no choice situation. Intake of both species under choice conditions was more affected (although differentially) by fluid adulteration that it had been when no choice was available. Male and female differences were noted but typically these differences were in magnitude rather than direction of the consummatory response. The data were taken to illustrate the need for comparative studies and careful specification of stimulus conditions surrounding testing so that general principles of physiological and behavioral regulation can be separated from species specific differences.

Animals

Alterations in consummatory behavior of mice produced by dietary exposure to inorganic lead.

Mice suckled by mothers given tap water and by mothers given a 5 mg/ml lead acetate solution during lactation were given a choice between tap water and a lead acetate solution after lactation. All offspring demonstrated an immediate aversion to the lead acetate solution. The offspring from the mothers receiving lead acetate during lactation demonstrated a greater aversion to the lead acetate solution than did the offspring from mothers receiving tap water. In addition, the lead acetate offspring drank more total fluid (tap water plus lead acetate solution) after weaning than the control offspring. The results indicate both learned and unlearned changes in motivation for fluid following ingestion of lead via the mother's milk in infancy.

Animals

Consummatory behavior as a function of ambient temperature in septal-lesioned and control rats.

Septal lesions or control operations were produced in male and female rats. Measurements of water and food consumption were carried out while the rats were housed under warm vivarium temperatures (24 degrees C) and when maintained in a cold room (6 degrees C). Examination of the data from the entire week spent in the cold revealed that rats with septal lesions deviated from precold water-comsumption levels less than comparable control rats. Further, whereas rats with septal lesions suppressed intake for the first 24 hr following either shift in environmental temperatures, control animals inhibited drinking only when returned to the warm environment. Both surgical groups elevated food consumption in the cold. The relative amount of food and water consumed during the day (vs night) increased for all groups when maintained in the cold. Differences in degree of reactivity to the manipulations were observed in male and female rats. These findings were interpreted as adding further support to our contention that septal lesions alter the behavioral (rather than direct metabolic) adaptations an animal makes to its environment.

Animals

Effects of lateral hypothalamic lesions on consummatory behavior in developing rats.

Bilateral lesions aimed at the lateral hypothalami of preweanling rats result in decreased weight gain and eventual death within 5 days after the operation. Ten-day-old rats with unilateral damage to the lateral hypothalamus show retarded growth, food and water intake regulatory deficits, and altered sensitivity to quinine adulteration of the water for up to 60 days of age. These results suggest that at least one neural mechanism that regulates food and water intake matures early in the postnatal life of the rat.

Age Factors

Aftereffects of lithium-conditioned stimuli on consummatory behavior.

Exposure to taste or spatial cues previously paired with lithium administration resulted in more drinking during a test session started 15 min. later than did exposure to stimuli previously presented in the absence of drug treatment (Experiments 1, 2, 4, and 5). This outcome reflected an elevation of intake above baseline levels (Experiment 1) and required the presence of the lithium-paired cues rather than merely a history of lithium injections (Experiments 1, 2, 4, and 5). The increased drinking was evident in tests with novel (Experiments 1, 4, and 5) as well as familiar (Experiment 2) palatable solutions and was not attributable to a greater degree of thirst in subjects exposed to the lithium-predictive cues (Experiments 4 and 5). The phenomenon was attenuated by extinction of the lithium-conditioned stimuli (Experiment 3). However, the increased drinking aftereffect probably was not a result of the conditioned aversiveness of lithium-predictive cues, since shock-conditioned stimuli did not elicit enhanced consumption (Experiment 5). Various explanations of the effect are discussed.

Animals

High-frequency network oscillation in the hippocampus.

Pyramidal cells in the CA1 hippocampal region displayed transient network oscillations (200 hertz) during behavioral immobility, consummatory behaviors, and slow-wave sleep. Simultaneous, multisite recordings revealed temporal and spatial coherence of neuronal activity during population oscillations. Participating pyramidal cells discharged at a rate lower than the frequency of the population oscillation, and their action potentials were phase locked to the negative phase of the simultaneously recorded oscillatory field potentials. In contrast, interneurons discharged at population frequency during the field oscillations. Thus, synchronous output of cooperating CA1 pyramidal cells may serve to induce synaptic enhancement in target structures of the hippocampus.

Action Potentials

Biological bases for the integration of appetitive and consummatory grooming behaviors in the cat: a review.

Cats with pontile lesions, frontal neocortical lesions, and thyroidectomized cats display a dissociation of the appetitive and consummatory components of grooming behavior following tactile stimulation of the body surface, an abnormal behavior which waxes and wanes with the seasons of the year. Tryptophan hydroxylase activity and serotonin levels were significantly decreased in the superior colliculi (but not other brain regions) in cats with pontile lesions or frontal neocortical lesions, but not in thyroidectomized cats. Systemic administration of 5-hydroxytryptophan or monoamine oxidase inhibition plus tryptophan administration abolishes the abnormal grooming behavior in each group of cats, and microinjections of 5-hydroxytryptophan or serotonin into the superior colliculi has the same effect, indicating that the change in a serotonergic system is a critical aspect of the abnormal behavior in cats with lesions and that a serotonergic system may also be involved in the genesis of the abnormal grooming behavior in thyroidectomized cats. Functional inactivation of the serotonergic system by p-chlorophenylalanine, LSD, or serotonin receptor blockade does not induce the abnormal grooming behavior in normal cats, indicating that other factors are involved. Cats with lesions and thyroidectomized cats display a rhythmic dysfunction in the excretion of glucocorticoids and glucocorticoid administration abolishes the abnormal grooming behavior, suggesting that glucocorticoids are the other critical factor. Adrenalectomized cats do not display the abnormal grooming behavior, but when adrenalectomized cats are treated with p-chlorophenylalanine, the abnormal behavior appears. Thus, a serotonergic system in the superior colliculi, operating at some level of glucocorticoid function, is involved in the integration of appetitive and consummatory grooming behaviors.

5-Hydroxytryptophan

Recovery of consummatory feeding behavior after bilateral lesions of the cerebral-buccal connectives in Aplysia californica.

In the sea hare, Aplysia californica, consummatory feeding behavior is selectively abolished by bilateral crushes of the cerebral-buccal connectives and recovers by postlesion day 13. Recovered biting responses are initially weak and increase in magnitude gradually with time. The lesions do not affect appetitive feeding behavior or unrelated reflexive behaviors. Thus, feeding in Aplysia can be used to examine the neural basis of behavioral recovery after CNS injury.

Animals

Neocortex and feeding behavior in the rat.

Consummatory behavior and weight-regulation capacity were measured in 12 normal rats and in 43 rats that survived complete (C), sequential unilateral (U), anterolateral (A), or posterior (P) neocortical ablations. Groups C and A displayed aphagia and adipsia followed by a sequence of recovery stages gualitatively identical to, but shorter than, recovery typically seen following lateral hypothalamic lesions. After recovery, Group C displayed long-term effects of finickiness and pradial drinking. These effects as well as a measure of recovery of body-weight-regulation capacity were significantly intercorrelated with lesion size, and body-weight set point remained significantly lower than normal. Group U was relatively unaffected by the first unilateral ablation and showed, relative the second ablation but displayed the long-term effects. Group P, though significantly affected by the lesion, did not display the pattern or intensity of effects described for the other bilaterally ablated groups.

Animals

The distribution of catecholamines and beta-endorphin in the brains of three behaviorally distinct breeds of dogs and their F1 hybrids.

This study examines neurochemical and behavioral differences among three types of domestic dogs and F1 hybrids derived from them. Purebred dogs included Border Collies, representing herding dogs, Shar Plaininetz, representing livestock protecting dogs, and Siberian Huskies, representing Northern dogs. Composite behavioral scores were derived from frequency measures of various components of predatory behavior observed when the dogs were tested with mice. Catecholamine levels, including norepinephrine (NE), dopamine (DA), and epineprine (EPI), were determined in various brain regions by high-performance liquid chromatography (HPLC) with electrochemical detection. beta-endorphin levels were determined in the same regions by RIA. Collies showed the highest levels of non-consummatory behaviors and Huskies the highest levels of consummatory behaviors. Shars were found to have lower levels of NE and DA than Collies and Huskies in several brain regions, including those comprising the nigrostriatal DA system. Positive correlations between neurochemical and behavioral characteristics could be made between Shars and Collies. Comparisons of F1 hybrids with their respective parental breeds revealed no clear pattern of inheritance for these characteristics but suggested that multiple factors, both independent and epistatic, are involved. Based on previous studies on nigrostriatal DA and behavior, the levels of DA in this system may be causally related to the levels of predatory behavior expressed by Collies and Shars.

Animals