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C R Almli

Publications and source records attributed to C R Almli.

52 records · Page 3Linked to original sources

Evidence for independent osmosensitivity of lateral preoptic and lateral hypothalamic neurons.

The purpose of the present study was to determine if a functional or modulatory relationship exists between osmosensitive neurons of the lateral preoptic (LPO) and lateral hypothalamic (LHA) areas. Unit activity was recorded from one neural area (LPO or LHA) following bilateral destruction of the opposite area, i.e., LPO recording site with LHA lesion site, and vice-versa. Bilateral destruction of the LPO or LHA did not eliminate the osmosensitivity characteristics of LPO or LHA units, demonstrating that units of either area do not require input from the opposite area for osmosensitivity.

Action Potentials↗

Infant rats: hypothalamic unit activity.

Single-unit recordings were made from lateral hypothalamic area (LHA) neurons of infant (8 through 21 days of age) male and female albino rats. Basal (or spontaneous) firing rates of LHA neurons were recorded for 20 min from rats 8 through 21 days of age, and mean basal firing rates did not differ across ages. Basal firing rates of LHA neurons in infant rats ranged from less than 1 spike/sec up to 27 spikes/sec, with 56% of the basal rates less than 1 spike/sec. Infant rats also received hypertonic saline injections (and control injections) to determine osmosensitivity characteristics of LHA neurons. Across ages, 56%--88% of LHA neurons were osmosensitive, with the highest percentages of osmosensitive units found in rats 14--21 days of age. Infant rats showed LHA unit electrophysiological characteristics that were quite similar to those obtained from LHA neurons in adult rats with respect to basal firing rates and osmosensitivity, however, LHA neuron activity in infants was not modulated by sensory stimuli as is frequently reported for adults. The results are discussed in terms of functional development of the LHA.

Action Potentials↗

Ontogeny of drinking behavior of preweanling rats with lateral preoptic damage.

Male (N = 9) and female (N = 7) infant albino rats sustained bilateral lateral preoptic area (LPO) destruction on the tenth day of life. During development and as adults, these brain-damaged rats were subjected to repeated testing of drinking behaviors in response to cellular and extracellular dehydration. Immediately following LPO destruction the pups ceased suckling and most rats required tube-feeding to maintain life; however, all pups were maintaining body weight through voluntary suckling and/or feeding-drinking by 20-21 days of age. Daily water intakes were elevated from 30-42 days of age, following which intakes decreased to control vonse to water deprivation, polyethylene glycol injection and food deprivation treatments. These results are consistent with the suggestion that the LPO contains osmoreceptors for drinking behavior, and the present results suggest that such osmoreceptors, may be functional by the tenth day of life for rats.

Animals↗

Infant rats: sensorimotor ontogeny and effects of substantia nigra destruction.

The ontogeny of sensorimotor behaviors of albino rats were evaluated from birth through adulthood (Experiment 1). Sensorimotor behaviors (e.g., visual and tactile orientation, forelimb and hindlimb hopping, righting reflexes) achieved mature (adultlike) characteristics at various ages during ontogeny and a rostral-caudal developmental pattern was revealed. In Experiment 2, the substantia nigra was bilaterally or unilaterally destroyed in rats at 10 or 25 days of age and the ontogeny of sensorimotor and regulatory (feeding, drinking, body weight regulation) behaviors were evaluated. Bilateral destruction of the substantia nigra, zona compacta, at 10 and 25 days of age resulted in transient cessation of suckling and/or feeding and drinking followed by recovery. Male brain-damaged rats had reduced body weight through 150-170 days of age. Specific feeding and drinking tests revealed the presence of residual regulatory deficits which seemed permanent. Sensorimotor testing revealed transient dysfunction for a variety of sensorimotor behaviors, with eventual recovery of normal sensorimotor capacity. The results are related to sensorimotor ontogeny and recovery from infant brain damage.

Animals↗

Effects of septal damage and ovariectomy on feeding, drinking and body weight.

Septal destruction and ovariectomy each influenced food intake and body weight differentially. Animals sustaining septal damage ingested significantly more food than the other groups, and septal hyperphagia persisted for as long as 109 days. Ovarian hyperphagia did not occur under conditions of constant illumination. Septal destruction exerted essentially no effect on body weight, while ovariectomy substantially increased body weight. Sequential surgical manipulations provided further evidence that the ovaries and the septum influence food intake and body weight via independent mechanisms. Results indicated that the septal and ovarian effects on water intake are not mediated via independent mechanisms. Septal and ovarian hyperdipsia were found to be very robust effects occurring regardless of the lighting regimen. It was further demonstrated that ovarian hyperdipsia is not secondary to food intake but rather is primary hyperdipsia.

Animals↗

Ontogeny of lateral preoptic unit activity in rats.

Extracellular single unit recordings were made from units within the lateral preoptic area (LPO) of infant rats from 1 day of age through 31 days of age (postweaning). The rats were anesthetized with dial-urethane and basal (spontaneous) spike rates were recorded for 10--20 min. The rats also received pain-arousal stimulation (tail-pinch and sc injection of formalin solution), and osmotic stimulation (sc or ip injection of hyperosmotic NaCl or sucrose solutions). LPO units were spontaneously active in neonatal rats; however, basal spike rates increased during development. Also increasing during development was the percentage of LPO units which displayed alteration of spike rate in response to hyperosmotic injections (osmosensitive). However, LPO units were found that were responsive to severe pain-arousal stimulation at all ages tested. The developmental changes in LPO unit activity characteristics paralleled the morphological development of LPO neurons and the development of osmotically induced drinking behaviors.

Aging↗

Effects of intragastric water infusion and gastric distension on hypothalamic neuronal activity.

The effects of gastric water infusion and distension were examined in neurons from various parts of the rat brain. Neurons in the lateral preoptic-lateral hypothalamic-medial forebrain bundle (LPA-LH-MFB) neuropil were sensitive to gastric water infusion and distension. Cells randomly selected and examined in other brain areas were less sensitive to the same stimulation which indicated that the effects were relatively specific. The results, in terms of changes in neuronal discharge frequency from an established baseline, indicate that many cells in the lateral preoptic-lateral hypothalamic-medical forebrain bundle area are affected by intragastric water infusion and gastric distension within a time period during which changes in drinking would normally occur. These neurons were also affected differentially by acute water deprivation. LPA-LH-MFB neurons in 24 hr water deprived animals were significantly more sensitive to water infusions and less sensitive to stomach distension when compared to cells recorded in animals maintained on ad lib eating and drinking. Some of these same neurons were also sensitive to changes in the extracellular concentrations of sodium and glucose. The results are discussed in terms of the involvement of the lateral preoptic-lateral hypothalamic-medial forebrain bundle neuropil in ingestive behavior.

Animals↗

Septal destruction in infant rats and the ontogeny of drinking behaviors.

Male and female albino rat pups sustained septal destruction at 10 days of age and body weight and water intakes were measured daily throughout development until 200 days of age. During development the septal and control rats received a battery of drinking tests (e.g., cellular dehydration, hypovolemia, renin). Septal rats (males and females) were hyperdipsic for daily water intakes as early as 31 days of age and the daily hyperdipsia persisted through 200 days of age. On the battery of drinking tests, septal rats consumed water at control volumes on all tests except water deprivation (following which females were hyperdipsic) and food deprivation (during which both males and females were hyperdipsic). Urine output-water intake relationships were determined, and a series of food deprivation tests were conducted during development to determine the etiology of the developmental septal hyperdipsia. All results suggest that hyperdipsia associated with septal destruction during the preweaning period is a primary condition and not secondary to altered output mechanisms, abnormal feeding-drinking patterns, or displacement behavior.

Animals↗