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Suckling.

Suckling is the only behavior that is common among mammals. In newborn albino rats it is originally elicited by amniotic fluid deposited by the mother during parturition. Subsequent suckling is stimulated by saliva deposited on the nipples by the infant rats. Internal controls over the volume of milk suckled do not appear until infant rats are about 2 weeks of age at which time gastric distension, milk, systemic dehydration, and intestinal hormone cholecystokinin suppress milk intake derived through suckling. The development of controls over suckling appetite appears to parallel that of consummatory control. Until about 2 weeks of age infant rats choose to suckle a nonlactating nipple with the same frequency as a lactating nipple. Thereafter, the lactating nipple is unanimously chosen. These studies suggest differences and commonalities in the suckling behavior of laboratory rats and other mammals.

Animal Population Groups↗

Sexual activity increases dopamine transmission in the nucleus accumbens and striatum of female rats.

In vivo microdialysis was used to monitor extracellular concentrations of dopamine (DA), and its metabolites dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA) in the nucleus accumbens and dorsal striatum of sexually active female rats during tests of locomotor activity, exposure to a novel chamber, exposure to sex odors, the presentation of a sexually active male rat, and copulation. DA increased slightly but significantly in the nucleus accumbens when a sexually active male was placed behind a wire-mesh screen, and further during copulation. DA also increased significantly in the dorsal striatum during copulation; however, the magnitude of this effect was significantly lower than that observed in the nucleus accumbens. The metabolites DOPAC and HVA generally followed DA with a delay, and increased significantly during copulation in both regions. In contrast, forced locomotion on a rotating drum, exposure to a novel testing chamber, and exposure to sex odors did not increase DA significantly in either region, although forced locomotion increased DOPAC significantly in both regions, and HVA significantly in the nucleus accumbens. The magnitude of DA release in the nucleus accumbens was significantly greater during copulation than running, whereas no significant difference was detected for striatal DA release between these two behavioral conditions. These results indicate that novelty or locomotor activity alone do not account for the increase in DA observed in the nucleus accumbens of female rats during copulation, and suggest that DA transmission in the nucleus accumbens is associated with anticipatory and consummatory aspects of sexual activity, as it is in male rats. In the dorsal striatum, however, DA release during copulation may reflect an increase in locomotor activity associated with active pacing of the male.

3,4-Dihydroxyphenylacetic Acid↗

Short-term synaptic enhancement modulates ingestion motor programs of aplysia.

Activity-dependent synaptic plasticity regulates the flow of information in neuronal networks and has important implications for the expression of behavior. We find a functional role for short-term synaptic enhancement (STE) such as facilitation, augmentation, and post-tetanic potentiation at central synapses in the sea slug Aplysia californica. Consummatory feeding in Aplysia such as rhythmic biting is controlled by command-like cerebral-buccal interneurons (CBIs) that drive rhythmic motor output in the buccal ganglia. CBI interneuron-2 (CBI-2) makes monosynaptic connections onto buccal neurons, including premotor neurons B31/32 and B34 and motor neurons B61/62. Stimulating CBI-2 at a physiological firing frequency of 10 Hz for 30 sec causes these synapses to increase their EPSP amplitude by approximately 200%. This STE persists for nearly 2 min, during which time there is an increased cycle frequency of rhythmic ingestion buccal motor programs (iBMPs) elicited by CBI-2. This increase does not occur if the contralateral CBI-2 is trained and the test is performed with the ipsilateral CBI-2; therefore, the effect on motor programs only occurs in CBI-2 pathways in which STE is elicited. Furthermore, we find that STE elicited at CBI-2 buccal synapses permits iBMPs to be initiated at lower firing frequencies. Thus, STE of CBI-2 synapses appears to contribute to the initiation or modulation, or both, of buccal motor programs for rhythmic ingestion in Aplysia.

Action Potentials↗

Morphological correlates of neural regeneration in the feeding system of Aplysia californica after central nervous system lesions.

Morphological techniques were used to study regeneration of central neural pathways involved in feeding behavior following bilateral crushes of the cerebral-buccal connectives (CBCs). Electron microscopic analysis revealed that CBC crushes completely transect axons within the nerve core while leaving a remnant of the nerve sheath intact. Changes in the ultrastructure of the CBCs at the crush site were determined for 1, 7, 14, 21, and 50 days postlesion. At 1 day postlesion, the crush site was no longer compressed, and the nerve core had assumed a circular shape. In addition, several small axon profiles were evident, and large areas of tissue debris and prominent microglial cells were observed. Membranous debris and hemocytes were also present in sinuses that appeared in the sheath adjacent to the crush site. From 7 to 50 days postlesion, the core of the nerve at the crush site increased in size due to the addition of small diameter axons. Initially, the sheath surrounding the crush site exhibited hyperplasia and contained a few small bundles of processes, apparently due to newly sprouted axons that had strayed from the nerve core. By 50 days postlesion, the crush site appeared nearly normal; the nerve core was reacquiring the normal radial pattern of axon profiles with some medium-sized axon profiles covered with glial sheath and exhibiting invaginations typical of the intact CBC. However, there was still a distinct lack of large diameter axons. Cobalt backfills across the crush site revealed neurons in the cerebral ganglion by postlesion day 9. Positions of stained cell bodies were consistent with those observed in controls, although the numbers of stained neurons did not recover to control levels even by postlesion day 63. The changes in the crush site and return of cell body staining with time postlesion are correlated with the recovery of consummatory feeding.

Animals↗

Modulation of behavioral and insulin responses by contextual stimuli paired with food.

A context-like conditioned stimulus (CS) previously paired with a food unconditioned stimulus (US) enhanced both food-related activity and insulin secretion in rats. Experiment 1 documented the effectiveness of an appetitive conditioning procedure in which a 10 sec visual CS ("x") was followed by food when embedded within one 35 sec auditory CS ("A"), but not another ("B"). Approach to a food magazine during x was enhanced (facilitated) when x was within A, as compared to within B or alone. Experiment 2 documented the adequacy of blood sampling and insulin assay procedures that could be accommodated to the conditioning procedure. Plasma insulin was observably different after unconditioned deliveries of glucose solutions of different intensities. In Experiment 3, training as in Experiment 1 was followed by testing for food magazine approach and changes in insulin levels following x alone or in the presence of A or B. It was demonstrated that the A cue enhanced both responses. The results support the view [e.g., (18,19)] that insulin secretion is in part under the control of environmental cues, and findings (22) that show that conditioned context-like cues can modulate consummatory responding to punctate CSs.

Animals↗

The effect of neonatal capsaicin treatment on gustatory behavior in the albino rat.

Small-diameter fibers present in gustatory peripheral nerves have historically been suspected of relaying information about the bitter quality of a taste stimulus. Neonatally injected capsaicin irreversibly destroys a proportion of unmyelinated C- and some A delta-fibers. Consummatory responses to increasing concentrations of quinine and other chemical solutions following neonatal capsaicin injection were compared to those of untreated and vehicle-injected control Sabra albino rats. Capsaicin-treated rats significantly increased their withdrawal thresholds to noxious, CO2 laser-generated heat pulses verifying treatment effectiveness. Furthermore, neonatal capsaicin treatment diminished sensitivity to pungent capsaicin solutions in mature rats. However, there were no group differences in quinine intake, suggesting that the full array of unmyelinated fibers associated with taste buds is not essential for the transmission of bitter taste. Capsaicin-treated animals showed a significant reduction in intake of normally highly preferred sodium chloride and sucrose concentrations. These results were probably not due to loss of peripheral unmyelinated afferent fibers per se, but rather to secondary central changes.

Animals↗

Gustation and ingestive behavior in the rat.

Gustatory deafferentation was produced by combined bilateral section of the chorda tympani and glossopharyngeal nerves and the pharyngeal branch of the vagus nerve. The procedure did not affect the condition of the mouth, impair orientation to sensory stimuli, or severely disrupt the consummatory sequence. Nevertheless, deafferented subjects showed reduced responsiveness to food and water, elevated QHCl aversion thresholds, and impaired feeding efficiency. Food and water intake and body weight remained below control levels for at least 40-50 days postoperatively. Food intake deficits were not observed when the rats were offered ad lib pablum, a result suggesting that increased palatability could compensate for decreased gustatory input. The order of recovery of food intake through different diet types suggests a heightened responsiveness to taste stimuli. The effects of gustatory deafferentation are compared with those seen after section of trigeminal orosensory nerves (Jacquin & Zeigler, 1983), and the differential contributions of oral "taste" and oral "touch" are discussed.

Animals↗

Food aversions: taste reactivity responses elicited by lithium-paired food.

The taste reactivity (TR) test was employed to measure the orofacial, somatic and consummatory CRs elicited by a lithium-paired food. Hungry rats were presented chocolate chips followed immediately by an injection of lithium chloride (CS+ group) or saline (CSc group). During the TR test, the rats' behavioral responses to the chocolate chips were videorecorded. The results demonstrated that rats in the CS+ group did not consume the lithium-paired food, but demonstrated the aversive TR response pattern of chain rubbing, paw treading, and gaping.

Animals↗

A social episode model of human sexual behavior.

A social episode model of sexual behavior is proposed with emphasis placed on arousal as a crucial variable. This model argues against a disease or deficiency concept of homosexuality. However, the authors also hold that it may be coercive to push clients to accept their homosexuality, and that a therapist should adequately respond to a valid sexual orientation request. The social-sexual episode is divided into two relatively independent stages, preparatory and consummatory. A mathematical analysis is included, and the model is related to Freeman and Meyer (1975) wherein changes in sexual preferences were successfully made. Other validation sources for the model are presented.

Arousal↗

Bait shyness: avoidance of the taste without escape from the illness in rats.

Thirsty rats habituated to drinking .12 M sodium chloride accepted .12 M lithium chloride for 5 min on the first trial but stopped short of their sodium baseline. With repeated trials they reduced consumption of the toxin by either (a) detecting subtle oral (conditioned stimulus, CS) differences, thus avoiding toxicosis (unconditioned stimulus, US) or (b) detecting earlier signs of malaise (US), thus escaping further distress. When both solutions were masked with saccharin, the discrimination was more difficult but still possible. When both solutions were mixed in a solution masking all four taste qualities, the discrimination was severely disrupted. When oral sensors were bypassed with nasopharyngeal tubes, intragastric pumping rats were unable to use postingestional cues to escape, even though such cues were proximal to the ultimate malaise. Oral cues at the distal end of the consummatory chain were extremely effective.

Administration, Oral↗

Gamma-aminobutyric acid induces feeding behaviour in the marine mollusc, Clione limacina.

The effects of gamma-aminobutyric acid (GABA) on the behaviour of the marine pteropod mollusc Clione limacina were studied. In intact molluscs, injection of GABA evoked the consummatory stage of feeding behaviour, i.e. protracting the tentacles, opening the mouth, catching and swallowing prey, as well as some acceleration of locomotion. In the isolated CNS, GABA (10(-5)-10(-4) M) strongly activated the feeding rhythm generator, excited the cerebral motoneurons innervating tentacle muscles (TenMNs), and accelerated locomotor rhythm. A direct excitatory action of GABA (10(-8) M) upon TenMNs was demonstrated on isolated cells extracted from cerebral ganglia. It is concluded that GABA plays an important role in activation of various neuronal networks (organization of 'functional synergy') responsible for the consummatory stage of feeding behaviour.

Animals↗

Baclofen suppresses motivation to consume alcohol in rats.

RATIONALE: Recent studies demonstrated that treatment with the gamma-aminobutyric acid (GABA)(B) receptor agonist baclofen reduced alcohol intake in selectively bred Sardinian alcohol-preferring (sP) rats tested under the home-cage, two-bottle choice regimen. OBJECTIVES: The present study investigated the effect of baclofen on the appetitive, rather than consummatory, aspects of alcohol ingestion in sP rats. METHODS: Rats were trained to lever-press for oral alcohol (10%, v/v) or sucrose (3%, w/v) under a fixed-ratio schedule of 4. Once self-administration behavior was established, alcohol intake averaged approximately 0.7 g/kg over the 30-min session. Subsequently, the effect of the acute administration of baclofen (0, 1, 2 and 3 mg/kg, i.p.) on the extinction responding for alcohol and sucrose (defined as the maximal number of lever responses reached in the absence of reinforcement and used as index of motivation to consume alcohol and sucrose) was evaluated. RESULTS. All doses of baclofen produced a marked suppression of extinction responding for alcohol. Conversely, only the 3-mg/kg baclofen dose significantly affected extinction responding for sucrose. A separate open-field test indicated that baclofen (0, 1, 2 and 3 mg/kg, i.p.) did not affect spontaneous motor activity in sP rats. CONCLUSIONS: These results suggest that baclofen may specifically reduce the motivational properties of alcohol; further, these results are in agreement with the recently reported anti-craving potential of baclofen in alcoholics.

Alcohol Drinking↗

Evidence for a female-specific effect of a chromosome 4 locus on anxiety-related behaviors and ethanol drinking in rats.

Previous studies using the inbred rat strains Lewis (LEW) and spontaneously hypertensive rats (SHR) led to the mapping of two quantitative trait loci, named Ofil1 (on chromosome 4 of the rat) and Ofil2 (on chromosome 7), for open-field inner locomotion, a behavioral index of anxiety. Studies using other strains showed that the region next to Ofil1 influences measures of not only anxiety but also ethanol consumption. In view of the high prevalence of psychiatric disorders such as anxiety and alcoholism, as well as the comorbidity between them, the present study was designed to better characterize the contribution of these two loci to complex emotional and consummatory responses. Rats deriving from an F2 intercross between the LEW and the SHR strains were selected according to their genotype at markers flanking the loci Ofil1 and Ofil2 and bred to obtain lines of rats homozygous LEW/LEW or SHR/SHR for each of the two loci, thus generating four genotypic combinations. These selected animals as well as purebred LEW and SHR rats of both sexes were submitted to a battery of tests including measures of locomotor activity, anxiety, sweet and bitter taste reinforcement and ethanol intake. Lewis rats displayed more anxiety-like behavior and less ethanol intake than SHR rats. Ofil1 (on chromosome 4) affected both the activity in the center of the open field and ethanol drinking in females only. These results suggest that Ofil1 contains either linked genes with independent influences on anxiety-related responses and ethanol drinking or a pleiotropic gene with simultaneous effects on both traits.

Alcohol Drinking↗

Anxiolytic-like effect of ejaculation upon frustration.

In three experiments, we studied the consequences of ejaculation upon the frustrative or contrast response of male rats exposed to reward downshift situations (i.e., surprising changes from 32% to 4% sucrose solutions). Similar to what has been found after treatment with anxiolytic agents, consummatory suppression was partially reversed by previous ejaculations in a second postshift trial (Experiments 2 and 3), such a result not having been obtained in a first postshift trial (Experiment 1). Moreover, the effect of ejaculations upon males' behavior during a second postshift trial was transitory, disappearing when assessed during the third and fourth postshift trials (Experiment 3). These results are in accordance with both Amsel's (1958, 1992) frustration theory and Flaherty's (1996) multistage hypothesis of successive negative contrast; the diverse factors that are known to modulate contrast effects are considered, including an interpretation of the present data in terms of the anxiolytic-like effect of the ejaculation.

Animals↗

Evidence that agents increasing water consumption do not necessarily generate "false positives" in conflict procedures using water as a reinforcer.

Isoproterenol 7.5 and 15 microgram/kg prolonged the time spent in drinking of water-deprived rats whereas 30 microgram had no significant effect. No dose of isoproterenol affected punished responses in a conflict procedure which uses water as reinforcer. Punished responses were increased by 2.5, 5 and 10 mg/kg of diazepam but only the first two doses of diazepam increased drinking in normal deprived rats. The data show that the effects on punished responses and drinking can be dissociated and suggest that procedures using conditioned punishing of consummatory responses may be more appropriate than those using naive animals for revealing "true" antipunishment activity.

Animals↗

An assessment of factors contributing to instrumental performance for sexual reward in the rat.

Male and female rats were gonadectomized, implanted in adulthood with capsules containing either testosterone propionate (TP) or cholesterol, and were trained to lever press for access to an oestrous female. When lever press performance was tested in extinction, only the male rats implanted with TP displayed significantly higher levels of responding than controls, demonstrating that lever pressing for oestrous females as a reward is sexually dimorphic. Ejaculation patterns from a separate assessment of these rats' copulatory ability were significantly correlated with their instrumental performance. In a second experiment, "masculinized" females exposed to TP postnatally and given TP implants responded in extinction at mean levels equivalent to those exhibited by adult males that were either intact or castrated with androgen replacement. These data suggest that organizational steroid exposure perinatally affects the actual reward value assigned to oestrous females in adulthood, in combination with consummatory sexual experience.

Animals↗

Combining sensory reinforcement and texture fading procedures to overcome chronic food refusal.

Previous research has demonstrated behavioral programs to be effective in treating children with selective food preferences. However, there are few examples of interventions for the child displaying almost total food refusal. The present program combined sensory reinforcement and texture fading procedures to treat a 4-year-old deaf, visually impaired child who only consumed milk and, occasionally, pureed baby food. Sensory reinforcement consisted of the contingent presentation of light and rocking motion following consummatory responses. Texture fading entailed gradually increasing food composition. Results indicated that treatment was associated with substantial increases in the consumption of solid foods. Effects were maintained following the withdrawal of sensory reinforcement and with meals presented outside of the original treatment settings. Various features of the program are highlighted and discussed.

Anorexia↗

Emergence of deprivation-induced drinking: implications for hypothalamically elicited behavior.

The possibility that 23-hr water deprived rats must learn to drink in response to thirst states was examined in subjects presented with consecutive days (CD), alternate days (AD), or no days (ND) of deprivation experience CD animals displayed a gradual rise in water intake; however, motivational factors seemed critical in producing this effect because CD rats drank more and weighed less than the AD animals. In addition, AD subjects always drank more than ND animals; thus, the gradual rise in drinking could not be attributed to an ad lib body water surplus that prevented subjects from being thirsty during the initial drinking session. All subjects were allowed to recover from the first phase of deprivation, and then each group was presented with the consecutive-day deprivation procedure. In this second phase, the groups did not differ in the amount of water drunk; so, learning factors once again were contraindicated because more "practiced" subjects did not ingest more. Habituation processes also were implicated in the gradual increase in drinking. These data contrast with those indicating that rats must "learn" to display consummatory responding during electrical stimulation of the lateral hypothalamus, and they strongly support the possibility that learning-like effects during water deprivation reflect the operation of motivational processes.

Animals↗