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S Conant

Publications and source records attributed to S Conant.

7 recordsLinked to original sources

Language intervention: a pragmatic approach.

The approach to language intervention described in this paper provides a means of teaching pragmatically appropriate and effective uses of language in conversational contexts while simultaneously teaching the production and comprehension of specific linguistic forms. The approach, developed in work with seriously language-disabled young children, consists of a series of communication games. These games, which focus and intensify certain characteristics of conversational situations, teach vocabulary, syntax, and articulation as devices for serving the same pragmatic functions these devices serve in ordinary conversation. The games integrate the advantages of the traditional language lessons and those of incidental teaching. Spontaneous speech data collected before and after a 4-month interval from trained and contrast-group children suggest the positive impact of the intervention on the language performance of children with no or moderate cognitive delays, but the results do not suggest a similar impact on children with severe cognitive delays. The results suggest that the intervention merits further application and evaluation, with particular attention to the control of cognitive level.

Child↗

Electrical responses of rat islets maintained in culture with varying levels of glucose.

The electrical responses of rat islet cells maintained in culture with varying levels of glucose were determined. After culture with 2.8 or 4.2 mM glucose, the beta-cells did not respond electrically to 27.8 mM glucose. However, after culture in 5.6 mM glucose, the cells responded to 27.8 mM glucose in short term experiments with depolarization and an increase in the incidence of spike activity. Islet cells maintained in 8.4 or 14.0 mM glucose had increasingly greater (negative) membrane potentials. The incidence of glucose-induced spike activity was the greatest for cells which had been cultured in 14.0 mM glucose. Raising glucose in the culture medium from 2.8 to 14.0 mM for the last 2 days of culture restored the ability of the islets to respond electrically to glucose in short term experiments. These observations show that the electrical phenomena of the beta cell membrane are affected by alterations in the level of glucose in the culture medium and serve as reliable indicators of functional glucose sensitivity of the islet cells.

Animals↗

Electrophysiological evidence for the autoregulation of beta-cell secretion by insulin.

Electrophysiological studies of cultured rat pancreatic beta-cells using intracellular microelectrodes show that exogenous insulin over the range of 0.1 -- 10.0 microng/ml inhibits the electrical activity due to 27.8 mM glucose in a dose-related manner. This inhibitory effect is manifested by a mean increase of the membrane potential from about --20 to --30 mV and inhibition of the number of cells impaled showing spike activity from 60 to less than 10%. The inhibitory influence of insulin is rapid occurring within 5 min for the highest level used. The results provide evidence for a negative feedback role of insulin in regulating its own release.

Animals↗

Somatostatin inhibition of glucose-induced electrical activity in cultured rat islet cells.

Electrophysiological studies of rat islet cells in monolayer culture were undertaken to determine the role of transmembranous ionic fluxes in the inhibitory action of somatostatin on insulin release. In the presence of somatotropin release inhibiting factor (SRIF) (2.5 nM), hyperpolarization occured with or without glucose (16.6 mM) in the medium. SRIF also inhibited the incidence of glucose-induced spike activity. The inhibitory action of SRIF occurred within 5 min and was readily reversible. An increase in extracellular K+ (5-13 mM) or Ca2+ (2.3-4.6 mM) prevented SRIF inhibition of glucose-induced electrical activity. The secretory response of cultured islets to glucose (16.6 mM) was completely inhibited by SRIF (2.5 nM). The presence of high [Ca2+]o or [k+]o enhanced insulin release in the presence of SRIF and glucose. Although phentolamine (5.0 microgram/ml) did not block the inhibition of glucose-induced electrical responses by SRIF, it prevented the inhibitory action of epinephrine (0.2 microgram/ml). It is concluded that the primary action of SRIF is to alter transmembranous cationic fluxes, as manifested by hyperpolarization and a decrease in the incidence of spike activity, which may prevent glucose from eliciting a normal secretory response.

Action Potentials↗

Long-term perfusion of isolated rats islets in vitro.

A perfusion system is described for long-term maintenance of isolated rat islets in vitro. This system permits the monitoring of the pattern, rate, and amount of insulin secretion following repeated, acute stimulations with glucose during the period of culture. Fibroblastic proliferation did not occur, thus making is possible to reclaim the islets for biochemical and morphologic studies at the conclusion of the experiments. Maintenance of the islets with a low concentration of glucose (1.0 mg./ml.) resulted in a marked decline in insulin secretion following acute stimulations with glucose (5.0 mg./ml.) during an eight-day interval. Stimulation with 10 mM theophylline and 5.0 mg./ml. glucose on day 9 resulted in enhanced insulin release. The decline in glucose sensitivity occurred even more rapidly when the islets were maintained in the presence of a lower concentration of glucose (0.5 mg./ml.). The pattern of insulin release was altered with an absence of a first phase of secretion. Adenylate cyclase activity of islets maintained with 0.5 mg./ml. glucose for four days was significantly decreased in comparison with islets from fed rats and islets maintained with 2.5 mg./ml. glucose. A means of maintaining the same biphasic pattern and amount of glucose-induced insulin release was achieved by using alternating levels of glucose (1.5 and 2.5 mg./ml) for maintenance of the islets during a 36-day interval.

Adenylyl Cyclases↗