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Michael Davis

Publications and source records attributed to Michael Davis.

At least 73 records · Page 4Linked to original sources

The role of glutamate and gamma-aminobutyric acid in fear extinction: clinical implications for exposure therapy.

Although much is now known about the neural basis of fear acquisition, the mechanisms of fear inhibition or suppression remain largely obscure. Fear inhibition is studied in the laboratory through the use of an extinction procedure, in which an animal (typically a rat) is exposed to nonreinforced presentations of a conditioned stimulus (CS; e.g., a light or tone) that had previously been paired with a fear-inducing unconditioned stimulus (US; e.g., a mild footshock). Over the course of such training, the conditioned fear response exhibited by the rat in the presence of the CS is reduced in amplitude and frequency. This procedure is analogous to those employed in the treatment of fear dysregulation in humans, which typically involve exposure to the feared object in the absence of any overt danger. Recent work on the neural basis of extinction indicates that the neurotransmitters gamma-aminobutyric acid (GABA) and glutamate are critically involved. Gamma-aminobutyric acid may act to inhibit brain areas involved in fear learning (e.g., the amygdala), and glutamate, acting at N-methyl-D-aspartate receptors, may play a role in the neural plasticity that permits this GABA-mediated inhibition to be exerted appropriately. These insights have significant implications for the conduct of extinction-based clinical interventions for fear disorders.

Amygdala↗

Behavioral and neural analysis of extinction.

The neural mechanisms by which fear is inhibited are poorly understood at the present time. Behaviorally, a conditioned fear response may be reduced in intensity through a number of means. Among the simplest of these is extinction, a form of learning characterized by a decrease in the amplitude and frequency of a conditioned response when the conditioned stimulus that elicits it is repeatedly nonreinforced. Because clinical interventions for patients suffering from fear dysregulation seek to inhibit abnormal, presumably learned fear responses, an understanding of fear extinction is likely to inform and increase the efficacy of these forms of treatment. This review considers the behavioral, cellular, and molecular literatures on extinction and presents the most recent advances in our understanding while identifying issues that require considerable further research.

Animals↗

Systems-level reconsolidation: reengagement of the hippocampus with memory reactivation.

Certain types of memories are dependent on the hippocampus for a short period of time following training, after which they are no longer susceptible to hippocampal manipulations. Having completed this initial consolidation process, a memory may once again engage the hippocampus (undergo reconsolidation) when recalled. Two studies in the current issue of Neuron make important advances in our understanding of reconsolidation but reach different conclusions about the modifiability of old memories.

Aging↗

Regulation of synaptic plasticity genes during consolidation of fear conditioning.

In mammals, long-term memory induced by Pavlovian fear conditioning has been shown to be dependent on the amygdala during a protein and mRNA synthesis-dependent phase of memory consolidation. We have used genes identified in a kainic acid model of synaptic plasticity as in situ hybridization probes during the consolidation period after fear conditioning. We found that these genes were transcriptionally regulated in several brain areas only when stimuli were presented in a manner that supported behavioral learning and not after unpaired presentations or footshocks alone. Immediate early genes and neurofilament mRNA peaked approximately 30 min after conditioning, as expected. Interestingly, nurr-1, alpha-actinin, and 16c8 increased approximately 2-4 hr later, whereas neurogranin and gephyrin decreased during that time. Our results suggest that fear memory consolidation occurs within a broad neural circuit that includes, but is not limited to, the amygdala. Together, a broad array of transcriptionally regulated genes, encoding transcription factors, cytoskeletal proteins, adhesion molecules, and receptor stabilization molecules, appear to mediate the neural plasticity underlying specific forms of long-term memory in mammals.

Animals↗

Quantifying fear potentiated startle using absolute versus proportional increase scoring methods: implications for the neurocircuitry of fear and anxiety.

RATIONALE: The fear-potentiated startle paradigm [increased startle in the presence of a conditioned fear stimulus (CS)] has become increasingly popular as a tool for evaluating the potential efficacy of putative anxiolytic compounds. However, when the tested compounds also influence baseline startle, it is unclear how comparisons with control groups can best be made. OBJECTIVE: To evaluate the validity of absolute difference (startle amplitude on CS minus non-CS test trials) vs. proportional increase (the absolute difference score divided by startle amplitude on non-CS test trials) scoring methods. METHODS: The effect on proportional increase and absolute difference scores of baseline shifts that occur with or without concomitant increases in fear was evaluated in rats. A reliable measure should yield similar scores across shifting baselines, provided that fear levels remain constant. RESULTS: Preexisting baseline differences, and those brought about by different startle-eliciting noise burst intensities, by strychnine injections, or by CRH infusions, each increased absolute difference scores without markedly influencing proportional change scores. These baseline differences were not associated with different fear levels. Increases in baseline startle brought about by unsignaled footshocks or by a second CS - increases which are associated with increased fear - partially occluded additional CS-induced increases using either measure. CONCLUSIONS: Across different baselines, CS-elicited fear is most accurately reflected in proportional change scores. Under certain conditions saturation effects may interfere with an accurate assessment using either measure. However, these same saturation effects may provide opportunities to explore the neural circuitry of fear and anxiety in novel ways.

Acoustic Stimulation↗

Acoustic startle, prepulse inhibition, and fear-potentiated startle measured in rhesus monkeys.

BACKGROUND: Modulation of the acoustic startle response is a simple and objective indicator of emotionality and attention in rodents and humans. This finding has proven extremely valuable for analysis of neural systems associated with fear and anxiety. Until recently, there have been few efforts to develop acoustic startle measurement in nonhuman primates. We report here development of a whole-body acoustic startle protocol in rhesus monkeys. METHODS: Eight juvenile rhesus monkeys were tested in a new whole-body (somatic) acoustic startle protocol. Startle responses were assessed in three paradigms: 1) stimulus intensity-response amplitude, 2) prepulse inhibition (PPI), and 3) fear-potentiated startle. RESULTS: Initial studies revealed that the amplitude of whole-body startle in monkeys, as in rodents and humans, is directly proportional to acoustic stimulus intensity and gradually habituates with repeated exposures. Presentation of a weak acoustic stimulus 45-2020 msec before a startle stimulus reduces startle amplitude by 40%-50%, depending on interstimulus interval length (PPI). We have also measured significant potentiated startle amplitude in the presence of a visual stimulus after pairing it with an inescapable pulse of pressurized air (fear-potentiated startle). CONCLUSIONS: Our data demonstrate that acoustic startle in nonhuman primates successfully bridges rodent and human research in two broad areas: stimulus-response relationships and behavioral plasticity represented by habituation, PPI, and fear potentiation. The opportunity now emerges to link concepts developed in rodents to the more complex neuroanatomical and cognitive processes common to monkeys and humans.

Acoustic Stimulation↗

Facilitation of conditioned fear extinction by systemic administration or intra-amygdala infusions of D-cycloserine as assessed with fear-potentiated startle in rats.

NMDA receptor antagonists block conditioned fear extinction when injected systemically and also when infused directly into the amygdala. Here we evaluate the ability of D-cycloserine (DCS), a partial agonist at the strychnine-insensitive glycine-recognition site on the NMDA receptor complex, to facilitate conditioned fear extinction after systemic administration or intra-amygdala infusions. Rats received 10 pairings of a 3.7 sec light and a 0.4 mA footshock (fear conditioning). Fear-potentiated startle (increased startle in the presence vs the absence of the light) was subsequently measured before and after 30, 60, or 90 presentations of the light without shock (extinction training). Thirty non-reinforced light presentations produced modest extinction, and 60 or 90 presentations produced nearly complete extinction (experiment 1). DCS injections (3.25, 15, or 30 mg/kg) before 30 non-reinforced light exposures dose-dependently enhanced extinction (experiment 2) but did not influence fear-potentiated startle in rats that did not receive extinction training (experiment 3). These effects were blocked by HA-966, an antagonist at the glycine-recognition site (experiment 4). Neither DCS nor HA-966 altered fear-potentiated startle when injected before testing (experiment 5). The effect of systemic administration was mimicked by intra-amygdala DCS (10 microg/side) infusions (experiment 6). These results indicate that treatments that promote NMDA receptor activity after either systemic or intra-amygdala administration promote the extinction of conditioned fear.

Acoustic Stimulation↗

Entacapone-induced hepatotoxicity and hepatic dysfunction.

We describe 2 patients with Parkinson's disease who developed hepatotoxicity associated with the use of entacapone, a novel, mainly peripheral acting inhibitor of catechol-D-methyltransferase. Hepatotoxicity resolved rapidly with discontinuation of the drug. Analysis of causality in a further case initially linked to entacapone exposure was confounded by conflicting serial adverse reaction reports.

Aged↗

Citalopram-induced severe hyponatraemia with coma and seizure. Case report with literature and spontaneous reports review.

Numerous case reports of hyponatraemia followed increasing use of selective serotonin re-uptake inhibitors (SSRIs) but this adverse effect was only rarely observed in relation to citalopram. We report a case of severe hyponatraemia associated with deep coma, seizure, atrial fibrillation and muscle damage in a 92-year-old woman after only two doses of citalopram, and review 14 cases previously published in the literature and 28 cases spontaneously reported to Australian Drug Reaction Advisory Committee (ADRAC). The data presented suggest that citalopram, as well as SSRIs may cause hyponatraemia secondary to syndrome of inappropriate secretion of antidiuretic hormone (SIADH). The majority of symptomatic cases occurred in elderly patients (79% were older than 70 years) and in women (74%). Polymedication and concomitant use of another psychotropic drug or thiazide diuretic may precipitate and/or augment the development of hyponatraemia/SIADH. In 84% of cases, the hyponatraemia associated with citalopram was detected during the first month of treatment. High level of suspicion, close and careful monitoring of serum sodium concentration particularly in elderly patients and especially in the first month of therapy with citalopram may reduce the incidence of this serious and likely not rare adverse effect.

Adult↗

The procedure of transrectal ultrasound guided biopsy of the prostate: a survey of patient preparation and biopsy technique.

PURPOSE: We surveyed urologists in community and academic practice regarding their standard approach to patient preparation and their technique of transrectal ultrasound guided prostate biopsy. MATERIALS AND METHODS: We mailed 110 surveys to community urologists in Florida and urological oncologists at academic centers across the United States. Responses were calculated per group. RESULTS: Of the 88 respondents 34% were at academic centers and 66% were community urologists. Overall 79% of respondents prescribe an enema in preparation for biopsy, 81% administer an oral fluoroquinolone before biopsy, 50% give some type of analgesia, usually an oral agent, 63% obtain 8 or more cores per biopsy session, 36% biopsy the lateral and midline locations, and 83% do not use prostate specific antigen density to plan the biopsy strategy. CONCLUSIONS: The majority of urologists who responded to our survey ask their patients to use an enema in preparation for a transrectal biopsy procedure, prescribe an oral antibiotic and administer some type of analgesia. Few urologists administer a periprostatic nerve block. The majority obtain at least 8 biopsies and only 17% perform sextant biopsy. Some of these practices are not consistent with the literature. This survey provides insight into the practice patterns of urologists in regard to one of the most commonly performed office procedures.

Anesthesia, Local↗

The role of amygdala glutamate receptors in fear learning, fear-potentiated startle, and extinction.

Using a paradigm known as fear-potentiated startle, we have examined the neurobiological substrates of Pavlovian fear conditioning. In these experiments, rats are trained to fear an initially neutral stimulus by pairing that stimulus with shock. The amount of fear elicited by the stimulus [i.e., now a conditioned stimulus (CS)] is later assessed by presenting startle-eliciting noise bursts both in the presence and also the absence of the CS. After training, startle responses are typically greater in the presence of the CS. Findings reviewed here suggest that amygdala N-methyl-D-aspartate (NMDA) receptors play a key role in triggering the neural changes that support fear learning and also the loss of fear that accompanies extinction training. Amygdala (+/-)-alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid (AMPA) receptors also participate in fear learning. However, unlike NMDA receptor antagonists, AMPA receptor antagonists also block fear-potentiated startle when infused prior to testing. Very recent data indicate that glutamate metabotropic Group II receptor agonists also block fear learning when infused into the amygdala prior to training, and block fear-potentiated startle when infused prior to testing. A fuller understanding of the role of amygdala glutamate systems in fear and fear learning may suggest novel pharmacological approaches to the treatment of clinical anxiety disorders.

Acoustic Stimulation↗

Acute delirium induced by metoprolol.

OBJECTIVE: To describe a case of delirium associated with use of metoprolol and to analyse 24 such cases including 22 cases reported to Australian Adverse Drug Reaction Advisory Committee and one case previously published (S. Ahmad, Am Fam Physician, 1991;44:1142, 1144). CASE SUMMARY: An 89 year old caucasian man with an acute coronary syndrome who had no psychiatric history and no infections, brain injury, stroke, metabolic nor neoplastic disease developed delirium after two small doses of metoprolol (25 mg). The delirium disappeared within 20 hours after metoprolol was ceased, despite continuing all other medications. THE COMBINED SERIES: Of 24 patients (12 women, mean age 71.8 years), 83% were older than 60 years. The duration of therapy before onset of delirium in 14 (58%) subjects was within one week; 23 of 24 patients were receiving therapeutic amounts of the drug (25-200 mg/day). Clinical features included confusion/disorientation in all subjects, agitation in 13, aggression in 6, visual hallucinations in 7, auditory hallucinations in 1, paranoid delusions in 3, vivid dreams in 2 and language disturbances in 3 persons. Bradycardia was reported in 4 cases, hypotension in 2, fatigue/tiredness in 3, Raynaud's phenomenon in 1 and skin rash in 1 patient. DISCUSSION: The mechanism of metoprolol-induced delirium is unclear. It could be due to impairment of hepatic metabolism (especially in the ageing liver) and complex neurotransmitter-related effects on brain beta-adrenoceptors and serotonin (5-HT) receptors. CONCLUSIONS: Physicians should be aware that metoprolol, a widely used beta-blocker, may rarely cause delirium, especially in the elderly population.

Acute Disease↗

Olfactory-mediated fear-potentiated startle.

Recently, R. Richardson, A. Vishney, and J. Lee (1999) reported that ambient odor cues that were previously paired with footshock potentiate the acoustic startle response in rats. The authors of the present study extend those findings by using a discrete 4-s amyl acetate odor paired with footshock to address several parametric issues that might be important for using odorants as conditioned stimuli (CSs) in this paradigm. Amyl acetate (5%) had no significant effect on startle in untrained rats but did potentiate startle in rats that received 1, 2, 5, or 10 odor-shock pairings. Fear-potentiated startle decreased but was still significant up to 40 days after conditioning and could be measured in test trials separated by as little as 30 s. The magnitude of potentiated startle decreased with decreasing concentrations of amyl acetate (5%-5 x 10-9%). The anxiolytic compound buspirone (10 mg/kg) significantly attenuated olfactory-mediated fear-potentiated startle.

Animals↗

Group II metabotropic glutamate receptors within the amygdala regulate fear as assessed with potentiated startle in rats.

The contribution to fear and fear learning of amygdala Group II metabotropic glutamate receptors was examined in rats. Pretest intra-amygdala infusions of the Group II receptor agonist LY354740 (0.3 or 1.0 microg/side) significantly disrupted fear-potentiated startle. The same rats were unimpaired when later tested without drug. The Group II receptor agonist (2R,4R)-4-aminopyrrolidine-2,4-dicarboxylate (3.0 microg/side) mimicked the effect of LY354740, and coadministration of the Group II receptor antagonist LY341495 (0.3 microg/side) prevented it. Pretraining LY354740 (0.3 microg/side) infusions also blocked learning. The effects on learning and performance were significantly less pronounced in rats with misplaced cannulas. Thus, Group II metabotropic receptors within or very near the amygdala regulate fear and fear learning and are a potential target for anxiolytic compounds.

Amygdala↗

Role of NMDA receptors and MAP kinase in the amygdala in extinction of fear: clinical implications for exposure therapy.

Infusions into the amygdala (a brain area essential for excitatory fear conditioning) of either NMDA receptor antagonists or inhibitors of the NMDA receptor-linked mitogen activated protein kinase cascade block extinction learning. Conversely, the NMDA receptor agonist D-cycloserine facilitates extinction after either systemic administration or intra-amygdala infusion. Because therapeutic interventions based on extinction procedures are commonly used to treat fear disorders, and because D-cycloserine is a widely available and safe compound, D-cycloserine or similar agents might be usefully combined with traditional extinction-based approaches in the treatment of clinical fear.

Amygdala↗

Relationship of enhanced norepinephrine activity during memory consolidation to enhanced long-term memory in humans.

OBJECTIVE: The purpose of this study was to investigate the effect of enhanced noradrenergic activity on memory consolidation in humans. METHOD: Thirty healthy subjects (21 men and nine women) viewed a series of 12 slides that depicted an emotionally arousing story. Five minutes after viewing the slides, subjects received either intravenous yohimbine or intravenous placebo in a double-blind randomized fashion. Multiple blood samples were drawn for determining plasma free 3-methoxy-4-hydroxyphenylglycol (MHPG). One week later subjects took a surprise memory test for the slides. RESULTS: There was no significant difference in memory score between yohimbine and placebo groups. Linear regression revealed a significant effect of MHPG on memory score for the group as a whole (subjects who had received yohimbine and those who had received placebo) and for the placebo group alone. CONCLUSIONS: These findings strengthen support for the hypothesis that enhanced memory for emotionally arousing events in humans depends critically on postlearning adrenergic modulation.

Adult↗

Daily struggles: living with long-term childhood technology dependence.

With advances in technology, children with chronic illnesses are surviving longer. This improved survival rate has resulted in a growing population of families caring for their children with complex needs at home. This grounded theory study explored how caring for a child who requires home ventilation affects family members. Families moved through a process of struggling daily as they cared for their child with complex needs. This ongoing struggle was characterized by three distinct dimensions: getting over the hump, starting to breathe, and having to deal with a subsequent event. Implications for practice and future directions for nursing research are discussed.

Adaptation, Psychological↗