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A psychophysiological study of determinants for detection of deception.

Three studies were conducted to obtain available data on the determinants for detection of deception rates. (a) Psychophysiological measures were evaluated for effectiveness in detecting deception. A relevant-irrelevant method was used with two conditions; neutral stimulus and personal stimulus. Of the physiological variables, skin potential response, skin resistance response, finger pulse volume, and skin blood flow were significant indicators of deception. (b) Three experiments were conducted to study the psychophysiological effects of false and true feedback of skin potential response on the detection rates. It was concluded that the subjects receiving information that they were detectable were easier to detect than the subjects who believed that they were not detected and the subjects who received feedback of actual responses. (c) With the use of skin potential response channel, significant detection rates were obtained for all experiments under the condition that subjects verbally lied by means of "No" responses. On the other hand, the subjects who were motivated to deceive produced differentially augmented responses in the absence of any verbal response and also when the subjects told the truth to critical items and lied to irrelevant ones.

Adolescent↗

ATP serves as a negative feedback inhibitor of voltage-gated Ca2+ channel currents in cultured bovine adrenal chromaffin cells.

Modulation of voltage-gated Ca(2+) channel current (I(Ca)) regulates secretion of catecholamines from adrenal chromaffin cells. Previous work demonstrated that I(Ca) can be augmented by phosphorylation to increase secretion or that inhibition of I(Ca) results in diminished catecholamine secretion. In the current manuscript, we show that stimulation of chromaffin cells results in the release of an "endogenous inhibitor" that suppresses I(Ca). The inhibition is due to the secretion of ATP, which is stored at high concentrations in secretory granules and is coreleased with catecholamines upon stimulation. The ATP exerts its actions through P(2 gamma) purinoceptors and inhibits both N- and P/Q-type Ca (2+) channels in a voltage-dependent manner but with different efficacies. Overall, we have identified and characterized a negative feedback pathway that may serve as an important regulatory mechanism for catecholamine secretion in chromaffin cells.

Adenosine Triphosphate↗

Some affective consequences of social comparison and reflection processes: the pain and pleasure of being close.

A self-evaluation maintenance (SEM) model of social behavior was described. According to the comparison process, when another outperforms the self on a task high in relevance to the self, the closer the other the greater the threat to self-evaluation. According to the reflection process, when another outperforms the self on a task low in relevance to the self, the closer the other the greater the promise of augmentation to self-evaluation. Affect was assumed to reflect threats and promises to self-evaluation. In three studies, subjects were given feedback about own performance and the performance of a close (friend) and distant (stranger) other on tasks that were either low in self-relevance (Study 2) or that varied in self-relevance (Studies 1 and 3). In Study 1 (N = 31), subjects' performance on simple and complex tasks after each feedback trial served as a measure of arousal. Being outperformed by a close other resulted in greater arousal than being outperformed by a distant other. In Study 2 (N = 30), evaluative ratings of words unrelated to task performance served as an indirect measure of affect. Results indicated that when relevance is low, more positive affect is associated with a friend's outperforming the self than either a friend's performing at a level equal to the self or being outperformed by a stranger. In Study 3 (N = 31), subjects received feedback while their facial expressions were monitored. Pleasantness of expression was an interactive function of relevance of task, relative performance, and closeness of comparison other. The results of all three studies were interpreted as being generally consistent with the SEM model.

Adult↗

Corticotropin secretory dynamics in humans under low glucocorticoid feedback.

To explore the mechanisms of homeostatic adaptation of the hypothalamo-pituitary-adrenal axis to an experimental low-feedback condition, we quantitated pulsatile (ultradian), entropic (pattern-sensitive), and 24-h rhythmic (circadian) ACTH secretion during high-dose metyrapone blockade (2 g orally every 2 h for 12 h, and then 1 g every 2 h for 12 h). Plasma ACTH and cortisol concentrations were sampled concurrently every 10 min for 24 h in nine adults. The metyrapone regimen reduced the amplitude of nyctohemeral cortisol rhythm by 45% (P = 0.0013) and delayed the time of the cortisol maximum (acrophase) by 7.1 h (P = 0.0002). Attenuated cortisol negative feedback stimulated a 7-fold increase in the mean (24-h) plasma ACTH concentration, which rose from 24 +/- 1.6 to 169 +/- 31 pg/ml (ng/liter) (P < 0.0001). Augmented ACTH output was driven by a 12-fold amplification of ACTH secretory burst mass (integral of the underlying secretory pulse) (21 +/- 3.1 to 255 +/- 64 pg/ml; P < 0.0001), yielding a higher percentage of ACTH secreted in pulses (53 +/- 3.5 vs. 92 +/- 1.3%; P < 0.0001). There were minimal elevations in basal (nonpulsatile) ACTH secretion (by 50%; P = 0.0049) and ACTH secretory burst frequency (by 36%; P = 0.031). The estimated half-life of ACTH (median, 22 min) and the calculated ACTH secretory burst half-duration (pulse event duration at half-maximal amplitude) (median, 23 min) did not change. Hypocortisolemia evoked remarkably more orderly subordinate patterns of serial ACTH release, as quantitated by the approximate entropy statistic (P = 0.003). This finding was explained by enhanced regularity of successive ACTH secretory pulse mass values (P = 0.032). In contrast, there was no alteration in serial ACTH interpulse-interval (waiting-time) regularity. At the level of 24-h ACTH rhythmicity, cortisol withdrawal enhanced the daily rhythm in ACTH secretory burst mass by 29-fold, elevated the mesor by 16-fold, and delayed the acrophase by 3.4 h from 0831 h to 1154 h (each P < 10(-3)). In summary, short-term glucocorticoid feedback deprivation primarily (>97% of effect) amplifies pulsatile ACTH secretory burst mass, while minimally elevating basal/nonpulsatile ACTH secretion and ACTH pulse frequency. Reduced cortisol feedback paradoxically elicits more orderly (less entropic) patterns of ACTH release due to emergence of more regular ACTH pulse mass sequences. Cortisol withdrawal concurrently heightens the amplitude and mesor of 24-h rhythmic ACTH release and delays the timing of the ACTH acrophase. In contrast, the duration of underlying ACTH secretory episodes is not affected, which indicates that normal pulse termination may be programmed centrally rather than imposed by rapid negative feedback. Accordingly, we hypothesize that adrenal glucocorticoid negative feedback controls hypothalamo-pituitary-adrenal axis dynamics via the 3-fold distinct mechanisms of repressing the mass of ACTH secretory bursts, reducing the orderliness of the corticotrope release process, and modulating the intrinsic diurnal rhythmicity of the hypothalamo-corticotrope unit.

Adrenocorticotropic Hormone↗

Peptide-YY, a new partner in the negative feedback control of pancreatic secretion.

Peptide YY (PYY), a newly discovered ileocolonic peptide, is released by nutrients in the proximal and distal intestine and inhibits pancreatic secretion. However, it is not clear whether PYY can be released in the absence of nutrients in the intestine or whether a physiological role exists for endogenous PYY in negative feedback regulation of pancreatic secretion by pancreatic proteases. In the present study we measured plasma PYY concentrations and determined the effects of anti-PYY serum during stimulation of pancreatic secretion by pancreatic juice diversion (PJD). The effect of SMS 201-995 (SMS; an analog of somatostatin), another inhibitor of pancreatic secretion, on regulation of PYY release induced by PJD was also investigated. Male Wistar rats equipped with pancreatic, biliary, duodenal, and jugular venous cannulas were studied 4-6 days postoperatively. After 90 min of basal collection, pancreatic juice was diverted for 4 h with or without infusion of SMS (2 micrograms/kg.h), given either iv or intraduodenally (ID). Plasma PYY concentrations were significantly increased from a basal level of 177 +/- 15 pg/ml to a peak level of 328 +/- 43 pg/ml 2 h after PJD. These increases in PYY concentration paralleled those in pancreatic protein and fluid outputs. Both iv and ID infusion of SMS during the first 2 h of PJD markedly decreased the plasma PYY concentration to 134 +/- 27 pg/ml and 156 +/- 19 pg/ml, respectively; the total incremental PYY release during 4 h of PJD was inhibited by 100% and 84% by iv and ID SMS, respectively. One milliliter of anti-PYY serum given iv significantly augmented the increment in protein and fluid output during PJD. These results suggest that endogenous PYY released by PJD may play a physiological role in negative feedback regulation of pancreatic secretion in rats.

Animals↗

Protein kinase C inhibitors potentiate angiotensin II-induced phosphoinositide hydrolysis and intracellular Ca2+ mobilization in renal mesangial cells.

Stimulation of mesangial cells with angiotensin II leads to rapid phosphoinositide hydrolysis and subsequent mobilization of intracellular Ca2+. Previous studies indicated that activation of protein kinase C (PKC) triggers a negative-feedback signal, which limits phosphoinositide turnover. By comparing the relative susceptibility of PKC isoenzymes to phorbol ester-induced down-regulation with the down-regulation of the functional cell response, i.e. feedback inhibition of inositol trisphosphate production, we inferred that PKC-alpha and PKC-delta are candidates for regulating phosphoinositide hydrolysis in mesangial cells. To test this hypothesis further, we examined the effects of inhibitors of PKC, that are reportedly not active on PKC-delta, on angiotensin II-stimulated phosphoinositide degradation and Ca2+ mobilization. Pretreatment of mesangial cells with the PKC inhibitors staurosporine and K252a potently augmented inositol trisphosphate and 1,2-diacylglycerol formation as well as Ca2+ mobilization in response to angiotensin II. These results suggest that PKC-alpha, but not PKC-delta, is the most likely candidate mediating feedback inhibition of angiotensin II-stimulated phosphoinositide turnover in mesangial cells.

Alkaloids↗

Heart rate variability in patients with the first and recurrent myocardial infarction.

Impairment of heart rate variability (HRV) has been reported in patients after myocardial infarction (MI). However, it is currently unknown whether the similar alterations of autonomic profile that accompany the first MI will evolve after a recurrent MI. Forty male outpatients with a previous first MI (group I) and 20 age-matched male patients with a recurrent MI (group II) were studied and measures of HRV were estimated from 24-hour electrocardiograms. In comparison with group I, group II had significantly higher values of ratio of low- to high-frequency power (6.9 +/- 5.7 vs 3.7 +/- 1.8, respectively, p < 0.05), and a tendency to lower values of all other measures of HRV. We conclude our study indicates that in comparison to group I, group II demonstrated augmented sympathetic drive as assessed by the indices of HRV. The shift toward adrenergic predominance detected after recurrent MI may result from altered afferent feedback from abnormally contracting left ventricular segments to the autonomic modulation of sinus node, or accompany subclinical state of heart failure not readily accessible with hemodynamic measurements.

Electrocardiography↗

Effects of continuous LHRH infusion on plasma levels of LH and FSH in males, before and after oestrogen or anti-oestrogen treatment.

In order to study the role of oestrogens on gonadotrophin release in the human male, LHRH was administered as an infusion at a constant rate of 0.5 micrograms/minute for 4 hours to 7 normogonadotrophic oligozoospermic men, 6 eugonadal male-to-female transsexuals and 9 eugonadal male volunteers. In agreement with in vitro data a biphasic release pattern of both LH and FSH was observed in eugonadal transsexuals as well as in normogonadotrophic oligozoospermic men. In the latter the release of LH was greater than in eugonadal transsexual males and volunteers, which points to a different functioning of the hypothalamic-pituitary unit in normogonadotrophic oligozoospermic men. On the other hand the FSH response to LHRH stimulation was normal in these men. Three months' treatment with the oestrogen-receptor antagonist tamoxifen (TAM) (10 mg twice daily) in the normogonadotrophic oligozoospermic men stimulated basal LH, FSH and testosterone (T) levels. The fact that gonadotrophin levels rose in spite of increased T levels, suggests a role of endogenous oestrogens in the negative feedback regulation of gonadotrophin release in these men. Upon TAM treatment the first phase, the plateau and the second phase of LH release were augmented, whereas only the plateau and the second phase of FSH release were increased. Six weeks' administration of the oestrogen ethinyloestradiol (EE) (10 micrograms three times a day) in the eugonadal transsexual males suppressed basal T and oestradiol (E2) levels without affecting basal gonadotrophin levels significantly. In EE-treated males the first phase of LH release tended to be lower, whereas the plateau of LH had decreased significantly. The second phase of LH was unaffected.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Could nonsteroidal antiinflammatory drugs (NSAIDs) enhance the progression of bacterial infections to toxic shock syndrome?

Anecdotal reports suggest an association between the use of nonsteroidal antiinflammatory drugs (NSAIDs) and the progression of invasive group A streptococcal infections to shock and multiorgan failure. There is a biochemical rationale that could support this theory. Though NSAIDs are frequently used to relieve pain or reduce fever, they also attenuate granulocyte functions such as chemotaxis, phagocytosis, and bacterial killing. In addition, findings in recent studies involving human volunteers injected with endotoxin suggest that pretreatment with NSAIDs enhances production of tumor necrosis factor, which leads to higher blood levels of this cytokine, probably by preventing feedback inhibition by prostaglandin E2. Thus, NSAIDs may contribute to the sudden onset of shock, organ failure, and aggressive infection by inhibiting neutrophil function, augmenting cytokine production, and attenuating the cardinal manifestations of inflammation.

Animals↗

Collaboration of a dentist and speech-language pathologist in the rehabilitation of a stroke patient with dysarthria: a case study.

OBJECTIVE: To elucidate the effectiveness of the collaboration of a dentist and speech-language pathologist (SLP) in the rehabilitation of a stroke patient with dysarthria. DESIGN: A clinical case report treated in the rehabilitation hospital and dental surgery. SUBJECT: A 71-year-old Japanese man who was admitted to the rehabilitation hospital for speech rehabilitation 2 years and 5 months after a stroke. METHODS: Provision of prosthesis (palatal lift prosthesis + palatal augmentation prosthesis) for improving velopharyngeal incompetence (VPI) and articulation by dentist, and speech behavioural management by SLP including self-monitoring and bio-feedback training using the See-Scape. RESULTS: Speech behavioural management proved useful for promoting improvement in speech intelligibility to a functionally sufficient level after improving VPI by prosthesis. CONCLUSION: The collaborative efforts of the dentist and SLP in the rehabilitation of post-stroke patients with velopharyngeal incompetence should be encouraged.

Aged↗

Influence of pulmonary inflations on discharge patterns of phrenic motoneurons.

The purpose of this study was to assess the influence of pulmonary inflations on activities of single phrenic motoneurons. Studies were performed in decerebrate and paralyzed cats; activities of phrenic nerve and single phrenic motoneurons were recorded. Animals were ventilated with a servo-respirator which produced alterations in tracheal pressure in parallel with changes in integrated activity of the phrenic nerve. At end-tidal fractional concentrations of CO2 of 0.05, phrenic motoneurons were distributed into "early" and "late" populations, depending on time of onset of activity. During the late stages of neural inspiration, differences in levels of integrated activity of the phrenic nerve became evident between cycles with and without lung inflations. At a time approximating 90% of the inspiratory duration during inflations, integrated phrenic activity was higher for cycles with inflation. Concomitantly, with lung inflations, the discharge frequencies of early phrenic motoneurons were lower, and late motoneurons began to discharge sooner than when inflations were withheld. Similar results were obtained in hypercapnia. We conclude that reflexes activated by pulmonary inflations may produce augmentation, as well as inhibition of phrenic motoneuronal activities. Factors responsible for eliciting these reflex augmentations and inhibitions are discussed.

Animals↗

Role of nitric oxide in the vasopressin-induced corticosterone secretion in rats.

The presence of nitric oxide synthase (NOS) in hypothalamic structures which control the activity of the hypothalamic-pituitary-adrenal (HPA) axis suggests a role for NO in regulation of ACTH and corticosterone secretion. We investigated the involvement of NO in the corticosterone secretion induced by vasopressin (AVP), a potent coregulator of the HPA activity. AVP injected i.p. was, on a molar basis, considerably more potent than administered intracerebroventricularly in inducing corticosterone secretion. This finding suggests a preferential action of AVP on pituitary corticotrop receptors, but not on central structures involved in stimulation of the HPA axis. Dexamethasone given before AVP totally abolished the AVP-elicited corticosterone response by a feedback mechanism and/or inhibition of the phospholipase A2 activity and prostaglandin synthesis. Pretreatment with the NOS inhibitors L-NAME and L-NNA augmented significantly and to a similar extent the corticosterone response to AVP administered both systemically and centrally and L-NNA was found to be more potent in this respect. Pretreatment with L-arginine markedly reduced the AVP-induced corticosterone response. These results suggest that endogenous nitric oxide is significantly involved in the AVP-elicited corticosterone secretion and NO-induced alterations in the prostaglandin synthesis may participate in this action.

Animals↗

Morphological feedback effect on neurons of the nucl. arcuatus (sive infundibularis) and nucl. subventricularis hypothalami due to gonadal atrophy.

We have correlated the light-microscopic features in the unmyelinated hypothalamus with gonadal atrophy in 15 women of 30-111 years of age and in 7 men between 29 and 82 years. In the postmenstrual cases there is a distinct concordance of gonadal atrophy and the manifestation of nucleolar changes (augmentation, multiplication and vacuolization) in many nerve cells of the arcuate and subventricular nuclei. In younger, still fertile women this nucleolar finding was seen only rarely and sporadically, was limited to the arcuate nucleus and was absent in the subventricular nucleus. We interpret this nucleolar finding as a feedback effect. In man, too, this coincidence is obvious with age and in gonadal atrophy, with fewer nucleolar changes in old age than are seen in women. This difference is probably caused by a more rapid drop of the estradiol than of the testosterone level. - The hypertrophy of the subventricular nucleus (Sheehan and Kovacs) was also observed in our postmenstrual cases.

Adult↗

The pharmacology of putative early-onset antidepressant strategies.

Depression is a serious and burdensome illness. Although selective serotonin reuptake inhibitors (SSRIs) have improved safety and tolerability of antidepressant treatment efficacy, the delay in the onset of action have not been improved. There is evidence to suggest that the delay in onset of therapeutic activity is a function of the drugs, rather than the disease. This suggests that research into the biological characteristics of depression and its treatments may yield faster-acting antidepressants. Emerging evidence from clinical studies with mirtazapine, venlafaxine and SSRI augmentation with pindolol suggests that these treatments may relieve antidepressant symptoms more rapidly than SSRIs. The putative mechanism of action of faster-acting antidepressant strategies presented here purports that conventional antidepressants acutely increase the availability of serotonin (5-hydroxytryptamine, 5-HT) or noradrenaline (NA), preferentially at their cell body level, which triggers negative feedback mechanisms. After continued stimulation, these feedback mechanisms become desensitised and the enhanced 5-HT availability is able to enhance 5-HT and/or NA neurotransmission. Putative fast-onset antidepressants, on the other hand, may uncouple such feedback control mechanisms and enhance 5-HT and/or NA neurotransmission more rapidly. Further studies are required to characterise in detail the interactions between NA and 5-HT systems and to definitively establish the early onset of candidate antidepressants such as mirtazapine, venlafaxine and pindolol augmentation.

Animals↗

Negative feedback regulation of activated macrophages via Fas-mediated apoptosis.

Apoptosis is a critical event for eliminating activated macrophages. Here we show that Fas-mediated apoptosis may participate in the mechanism of negative feedback regulation of activated macrophages. Cytokine-activated macrophages released high levels of nitric oxide (NO) that induced apoptosis in macrophages themselves. This NO-induced macrophage apoptosis was inhibited by a Fas-Fc chimeric molecule that binds to Fas ligand (FasL) and prevents its interaction with endogenous cell surface Fas. High levels of NO stimulated the release of the soluble form of FasL that was inhibited by a matrix metalloproteinase inhibitor KB-8301. High levels of NO also upregulated the expression of Fas mRNA in macrophages. In addition, macrophages isolated from Fas-lacking mice were resistant to NO-induced apoptosis. Finally, inhibition of apoptosis by a caspase inhibitor augmented peroxide production from activated macrophages. These findings suggest that high levels of NO released from activated macrophages may promote the Fas-mediated macrophage apoptosis that may be a negative feedback mechanism for elimination and the downregulation of activated macrophages in the vessel wall.

Animals↗

Intercellular calcium signaling and nitric oxide feedback during constriction of rabbit renal afferent arterioles.

Vasoconstriction and increase in the intracellular calcium concentration ([Ca(2+)](i)) of vascular smooth muscle cells may cause an increase of endothelial cell [Ca(2+)](i), which, in turn, augments nitric oxide (NO) production and inhibits smooth muscle cell contraction. This hypothesis was tested in microperfused rabbit renal afferent arterioles, using fluorescence imaging microscopy with the calcium-sensitive dye fura-2 and the NO-sensitive dye 4-amino-5-methylamino-2',7'-difluorescein. Both dyes were loaded into smooth muscle and endothelium. Depolarization with 100 mmol/l KCl led to a transient vasoconstriction which was converted into a sustained response by N-nitro-l-arginine methyl ester (l-NAME). Depolarization increased smooth muscle cell [Ca(2+)](i) from 162 +/- 15 nmol/l to a peak of 555 +/- 70 nmol/l (n = 7), and this response was inhibited by 80% by the l-type calcium channel blocker calciseptine. After a delay of 10 s, [Ca(2+)](i) increased in endothelial cells immediately adjacent to reactive smooth muscle cells, and this calcium wave spread in a nonregenerative fashion laterally into the endothelial cell layer with a velocity of 1.2 microm/s. Depolarization with 100 mmol/l KCl led to a significant increase in NO production ([NO](i)) which was inhibited by l-NAME (n = 5). Acetylcholine caused a rapid increase in endothelial [Ca(2+)](i), which did not transfer to the smooth muscle cells. l-NAME treatment did not affect changes in smooth muscle [Ca(2+)](i) after depolarization, but it did increase the calcium sensitivity of the contractile apparatus. We conclude that depolarization increases smooth muscle [Ca(2+)](i) which is transferred to the endothelial cells and stimulates NO production which curtails vasoconstriction by reducing the calcium sensitivity of the contractile apparatus.

Acetylcholine↗

Protein kinase C beta modulates thrombin-induced Ca2+ signaling and endothelial permeability increase.

We investigated the function of the Ca2+-dependent protein kinase C (PKC) beta1 in the regulation of endothelial barrier property. Human dermal microvascular endothelial cells (HMEC-1) were transduced with full-length PKCbeta1 antisense (AS) cDNA or control pLNCX vector to generate stable cell lines (HMEC-AS and HMEC-pLNCX, respectively). Analyses indicated that HMEC-AS expressed the antisense PKCbeta1 transcript with decreased PKCbeta protein level (without a change in PKCalpha or PKCepsilon). The baseline transendothelial 125I-albumin clearance rates of HMEC-1, HMEC-pLNCX, and HMEC-AS were 5.0+/-0.5 x 10(-2), 6.8+/-0.4 x 10(-2), and 6.9+/-0.6 x 10(-2) microl/min, respectively. Activation of HMEC-1 and HMEC-pLNCX with phorbol 12-myristate 13-acetate (PMA) increased the rates to the respective 14.5+/-1.7 x 10(-2) microl/min and 16.9+/-2.8 x 10(-2) microl/min (corresponding to 191% and 149% increases over baseline). However, in HMEC-AS, PMA increased the rate to 9.8+/-1.0 x 10(-2) microl/min (42%). When HMEC-1 and HMEC-pLNCX were activated with thrombin, the rates increased to 10.8+/-1.4 x 10(-2) and 14.0+/-1.9 x 10(-2) microl/min, respectively (116% and 106%). In contrast, thrombin stimulation of HMEC-AS more than doubled the increase to 27.2+/-3.5 x 10(-2) microl/min (294%). Furthermore, the thrombin-induced peak increase in the [Ca2+]i in HMEC-AS was greater than in control cells. Fluorescence-activated cell sorter analysis of thrombin receptor expression indicated that the augmented thrombin-induced responses were not attributable to altered receptor density in HMEC-AS. These results indicate that PKCbeta functions in a negative feedback manner to inactivate thrombin-generated signals and thereby modulates the endothelial permeability increase. Because decreased PKCbeta expression significantly reduced the PMA-induced permeability increase, PKCbeta may downregulate thrombin receptor function upstream of PKC activation (i.e., Ca2+).

Albumins↗