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H Fowler

Publications and source records attributed to H Fowler.

17 recordsLinked to original sources

A cross-sectional study to investigate long-term cognitive function in people with treated pituitary Cushing's disease.

INTRODUCTION: It has been proposed that exposure to high levels of endogenous steroids in untreated pituitary Cushing's disease damages hippocampal structures leading to impairment in learning and memory processes. We hypothesised that patients with treated pituitary Cushing's disease would perform significantly worse on tests of cognitive ability than those with nonfunctioning pituitary adenomas. DESIGN: Sixteen adults with pituitary Cushing's disease (PCD) and 16 adults with non-functioning pituitary adenomas (NFA) undertook the following comprehensive neuropsychological assessments: National Adult Reading Test (NART: premorbid abilities), California Verbal Learning Test (CVLT 2 UK: learning and recall), Stroop (executive functioning), Trail-Making Test (TMT: executive functioning and attention), Adult Memory and Information Processing Battery (AMIPB: Information Processing Speed and Story Recall subtests). RESULTS: There was no significant difference in premorbid IQ scores (NFA mean=101 SD=13; PCD mean=102, SD=13), in verbal learning nor any significant difference in the percentage of verbal material retained in story recall (AMIPB). Performance on higher executive tasks Stroop and TMT and on measures of information processing was similar. However, there were significant decrements between some mean scores for both groups and published normative data with a clear association between higher HADS depression scores and impaired objective memory and attention which was not specific to PCD. CONCLUSIONS: We found no difference in cognitive function between patients with PCD and NFA. The results suggest a discrepancy between patients' subjective perception of functional cognitive impairments and objective findings on psychometric testing and point to the influence of affective symptoms on cognitive performance, particularly in Cushing's disease.

Adult↗

Cocaine-induced oscillation is conditionable.

We have recently shown that under some circumstances, sensitization produced by a stimulant such as cocaine (COC) can give way, with successive drug administrations, to alternating attenuations and reinstatements of the effect, an outcome that we have termed oscillation. Because sensitization to COC can be conditioned, we inquired whether COC-induced oscillation also was conditionable. The end point used was shock-induced hypoalgesia (paw withdrawal from a hot plate), as we have previously shown that oscillation follows initial sensitization of this measure with one to five pretreatments of 12 mg/kg (IP) of COC spaced at 1-week intervals, with the last COC injection occurring 30 min prior to the footshock. Experiment 1 indicated that a conditioned stimulus (CS)--a distinctive environment--which repeatedly had been paired with COC, would substitute for the last COC injection in sustaining the oscillatory effect. Experiment 2 showed that a previously established CS successfully substituted for all COC injections in first inducing sensitization that was then followed by oscillation. These findings strongly suggest that COC-induced oscillation shares with COC-induced sensitization, the property that both can be conditioned.

Anesthetics, Local↗

Oscillatory effects of repeated morphine on shock-induced hypoalgesia and beta-endorphin.

Recent research indicates that the sensitization that results from repeated drug or non-drug stress exposure may develop into a pattern of alternating increases and decreases (i.e., oscillation) in response to each subsequent stressor exposure. Oscillation, with or without prior sensitization, has been observed for a number of drug and non-drug stressors, and for various neurochemical and endocrine endpoints. The present studies investigated whether oscillation also occurs in the behavioral and endocrine effects of repeated morphine treatment and if a drug that normalizes the mood swings of bipolar disorder in humans will also attenuate drug oscillation in this animal model. In the first experiment, rats were given 1-5 pretreatments with morphine (15 mg/kg, i.p.), separated by 1-week intervals with the last injection occurring 1 hour prior to being tested for stressor-induced (i.e., 5 seconds, 2-mA electric footshock) hypoalgesia, as measured by latency to paw-lift or jump from a hot-plate. Plasma beta-endorphin also was measured. The second experiment replicated the behavioral findings of the first study and, in addition, assessed the effect of continuous lithium chloride, in the drinking water, on morphine-induced oscillation. Caffeine was used as a partial control for the lithium. The results were that one injection of morphine enhanced stress-induced hypoalgesia and subsequent morphine administrations resulted in oscillation. Beta-endorphin exhibited sensitization but not oscillation, suggesting that it did not mediate oscillation of the behavioral response. In addition, lithium, but not caffeine, eliminated oscillations of the behavioral response without affecting its initial enhancement.

Analysis of Variance↗

The effects of lithium on a potential cycling model of bipolar disorder.

1. Although bipolar disorder constitutes a major public health problem, with a high risk of suicide and an economic cost exceeding that of unipolar depression, it has received comparatively little attention, particularly at the basic science level. Perhaps as a result of this neglect, there is currently no animal model able to simulate the cyclicity which is its defining characteristic. 2. Consequently, drug development in this area is meager and has proceeded serendipitously rather than empirically. 3. The authors have recently reported that repeated exposure to cocaine and other stressors can induce an oscillation or cycling in a host of neurochemical and physiological systems. 4. In order to test whether such cycling might be of potential relevance to bipolar disorder, the authors examined whether cocaine-induced cyclicity of amphetamine-evoked efflux of dopamine from slices of rat nucleus accumbens and striatum and/or cocaine induced oscillation of a behavior, stress-induced hypoalgesia, could be prevented by lithium, the agent of choice in treating this disease. 5. The authors report that prophylactic treatment with lithium, completely and specifically prevented oscillations in each instance. This may represent an important initial step toward the development of the first cycling model of bipolar disorder.

Amphetamine↗

Oscillatory-sensitization model of repeated drug exposure: cocaine's effects on shock-induced hypoalgesia.

1. The authors have recently proposed that the sensitization produced by repeated exposure to drugs or stress may give way to an alternating pattern of increases and decreases in the response to each subsequent exposure (i.e., oscillate), as the limits of the physiological system are approached. 2. Evidence for oscillation has been obtained for 6 drug/non-drug stressors and 9 neurochemical or endocrine endpoints. This paper extends the model to a behavioral outcome. 3. In the first experiment, rats were given 0, 1, 2 or 3 pretreatments with cocaine hydrochloride (COC; 12 mg/kg i.p.), separated by 1-week intervals, and then were tested for footshock-induced hypoalgesia (5-sec, 2-mA), as measured by withdrawal latencies from a hot-plate. 4. The second experiment replicated the first and extended the pretreatment sequence to 5 COC injections. 5. In both experiments, shock significantly increased latencies over the no-shock controls. COC enhanced shock-induced hypoalgesia and this sensitization reached its maximum after 2 COC pretreatments. Thereafter, oscillation developed such that the sensitization was attenuated by 3 as compared to 2 COC injections, enhanced by 4 injections, and reattenuated after 5 COC pretreatments. 6. These data complement other findings by demonstrating that the oscillation model extends to a stress-induced behavioral outcome.

Animals↗

Pavlovian conditioning of shock-induced suppression of lymphocyte reactivity: acquisition, extinction, and preexposure effects.

Recent research has indicated that physical stressors, such as electric shock, can suppress immune function in rats. The present study investigated whether a nonaversive stimulus that had been associated with electric shock would also impair immune function. Presentation of that conditioned stimulus (CS) by itself produced a pronounced suppression of lymphocyte proliferation in response to the nonspecific mitogens, Concanavalin-A (ConA) and Phytohemagglutinin (PHA). In further evidence of a conditioning effect, the suppression was attenuated by extinction and preexposure manipulations that degraded the associative value of the CS. These results indicate that a psychological or learned stressor can suppress immune reactivity independently of the direct effect of physically aversive stimulation or of ancillary changes in dietary and health-related habits.

Animals↗

Changes in pain reactivity induced by unconditioned and conditioned excitatory and inhibitory stimuli.

In three experiments we investigated the effects of aversive-conditioning components on the reactivity of rats to pain. After training in Experiment 1 with a discrete conditioned stimulus (CS) for a shock unconditioned stimulus (US), different groups were exposed to the CS, US, CS/Us compound, just the training context, or none of those immediately prior to a hot-plate test assessing the latency of a paw-lick response. Relative to no exposure and context alone, the CS produced a shorter latency--that is, an apparent sensitization effect--whereas the US produced a longer latency--that is, a hypoalgesic effect--that was actually augmented by the CS/US compound. Furthermore, whereas the US-induced hypoalgesia was unaffected by the opiate antagonist, naloxone, hypoalgesia produced by the CS/US compound was appreciably decremented by the drug. Experiment 2 showed the same effects with parameters more typical of conditioning research. Experiment 3 compared signals for the presence (CS+) and absence (CS-) of the US. The CS- did not itself affect pain reactivity, but in inhibited the effects of the CS+, US, and CS+/US compound. Collectively, the results suggest that a CS+sensitizes the animal to imminent events and also potentiates an opioid reaction that supplants the less effective nonopioid hypoalgesia induced by the US. In contrast, a CS- functions as a general moderator of excitation, inhibiting both sensitization and hypoalgesic effects, whether opioid or nonopioid.

Animals↗

Shock-induced modulation of lymphocyte reactivity: suppression, habituation, and recovery.

The present study was designed to evaluate the suppressive effect of different frequencies of signaled-shock presentations on mitogenic reactivity of lymphocytes in Lewis rats, and to assess the recovery of that reactivity at varying times after the shocks. The results showed that the magnitude of decreased reactivity in both the spleen and whole-blood lymphocytes, as determined by mitogenic reactivity to Concanavalin A (Con A), was directly related to the number of shock presentations within a daily session. However, the suppressed reactivity for the spleen cells diminished with repeated sessions of frequent shocks, in contrast to the whole-blood lymphocytes which did not show any habituation. Furthermore, the imposition of different periods of recovery following a single session of frequent shocks showed that the decreased reactivity for the whole-blood lymphocytes extended beyond the immediate period of the shock experience, and took 48 to 96 hours to recover completely. In contrast, the spleen lymphocytes showed complete recovery within 24 hours following the administration of shock. These results establish that the rate of habituation to and recovery from a shock-induced decrease in mitogen reactivity is more rapid for the spleen than whole-blood lymphocytes.

Animals↗

Effects of contingency violations on the extinction of a conditioned fear inhibitor and a conditioned fear excitor.

Rats were used in a conditioned-suppression paradigm to assess the effects of contingency variations on responding to a conditioned inhibitor (CS-) and a conditioned excitor (CS+). In Experiment 1, various unconditioned stimulus (US) frequencies were equated across the presence and absence of a CS- in the context of either background cues (continuous-trial procedure) or an explicit neutral event (discrete-trial procedure). With both procedures, a CS-alone treatment enhanced inhibition, whereas treatments involving 50% or 100% reinforcement for the CS- eliminated inhibition without conditioning excitation to that CS. The latter outcome also occurred in Experiment 2, with discrete-trial training equating considerably reduced US frequencies for the presence and absence of the CS-. In further evidence that inhibition was eliminated without conditioning excitation to the CS-, Experiment 3 showed that a novel CS did not acquire excitation when 25%, 50%, or 100% reinforcement was equated across the presence and absence of that CS in the context of a discrete-trial event. Using the procedures of Experiment 1, Experiment 4 showed that a CS+ was extinguished by a CS-alone treatment but was substantially maintained by treatments involving 50% or 100% uncorrelated reinforcement. These effects for a CS+ and a CS- implicate CS-US contiguity, rather than contingency, as the factor determining the extinction of a CS.

Animals↗

Inhibition as a "slave" process: deactivation of conditioned inhibition through extinction of conditioned excitation.

Rats were used in a conditioned-suppression paradigm to investigate why a conditioned inhibition (CS-) does not extinguish when presented alone. Experiment 1 assessed the role of blocking by excitatory contextual cues and/or an evoked representation of the conditioned excitor (CS+), which had been nonreinforced in compound with the CS-. When the CS+ and context were extinguished prior to presentations of the CS- alone, the CS- showed a retardation effect, evidently reflecting latent inhibition, because no inhibition was detected in controls for which presentations of the CS- alone had been omitted. Experiment 2 showed that the loss of conditioned inhibition (CI) was due to excitatory extinction and not to time since conditioning. Furthermore, when excitation was reconditioned to the extinguished CS+ (Experiment 1), or to a novel CS in the same context (Experiment 2), CI was restored. Two other experiments evaluated whether the maintenance of CI depended upon excitation that was generic in form or associatively tied to the training context. They showed no loss of CI when groups received CS+ extinction in that context, along with concomitant presentations in a different context of the US by itself, for a novel CS, or correlated either positively or negatively with the original CS+. Collectively, the findings argue that CI is a "slave" to excitation, for when excitation is extinguished, CI is deactivated; and yet when excitation is reconditioned to the original or a new CS+ in the same or a different context, CI is restored.

Animals↗

Electro-oculographic findings in Machado-Joseph disease.

Electro-oculographic recordings (EOG) were made on 26 patients with Machado-Joseph disease or at genetic risk for that disease. All patients with clinically apparent disease (ataxia, dysarthria, spasticity, or ophthalmoparesis) had abnormal eye movements. Defects in caloric response, sinusoidal tracking, opticokinetic nystagmus (OKN), refixation saccades, and presence of gaze paretic nystagmus were detected in that order of frequency. Fourteen subjects were clinically at risk but had normal neurologic examinations or minor equivocal signs. Nine of the fourteen had abnormal EOG, with sinusoidal tracking, calories, refixation saccades, OKN, and gaze paretic nystagmus being abnormal in that order. EOG may be useful in early case detection and may contribute to genetic counseling.

Adolescent↗