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Biomedical subjects

W E Semple

Publications and source records attributed to W E Semple.

18 recordsLinked to original sources

The metabolic brain pattern of young subjects given scopolamine.

The effect of an intravenous dose of 0.5 mg of scopolamine on the functional brain activity of normal subjects performing auditory discrimination (CPT) was determined in two independent positron emission tomography studies with [18F] 2-fluoro-deoxyglucose. In the first preliminary study, the most significant effect found was a reduction in the functional activity of the thalamus. In the second "hypothesis-testing" study, an equally prominent effect on thalamic functional activity was seen. Because the second study was performed on a high-resolution scanner with improved methodology, we re-examined scopolamine's effects on those brain regions established as determinants of CPT. Of the regions affected, the reduction in cingulate and the increase in basal ganglia metabolic rates were the most notable. We concluded that scopolamine's effects on the functions of thalamic, cingulate and basal ganglia are the likely causes of scopolamine's well-described attention-altering properties. Alterations in these same brain structures could be responsible for scopolamine's effects on other cognitive functions, e.g., memory. Alternatively, scopolamine's effects on other brain structures such as the hippocampus and frontal cortex could underlie scopolamine's effects on these other cognitive functions. Studies of scopolamine's regional metabolic effects in subjects performing these other cognitive tasks at more than a single dose and at more than one post-drug time are needed to discriminate between these two possibilities.

Acoustic Stimulation

Positron-emission tomography and personality disorders.

This study used positron-emission tomography to examine cerebral metabolic rates of glucose (CMRG) in 17 patients with DSM III-R diagnoses of personality disorder. Within the group of 17 personality disorder patients, there was a significant inverse correlation between a life history of aggressive impulse difficulties and regional CMRG in the frontal cortex of the transaxial plane approximately 40 mm above the canthomeatal line (CML) (r = -.56, p = 0.17). Diagnostic groups included antisocial (n = 6), borderline (n = 6), dependent (n = 2), and narcissistic (n = 3). Regional CMRG in the six antisocial patients and in the six borderline patients was compared to a control group of 43 subjects using an analysis of covariance with age and sex as covariates. In the borderline personality disorder group, there was a significant decrease in frontal cortex metabolism in the transaxial plane approximately 81 mm above the CML and a significant increase in the transaxial plane approximately 53 mm above the CML (F[1,45] = 8.65, p = .005; and F[1,45] = 7.68, p = .008, respectively.

Adult

Effects of acute stimulant medication on cerebral metabolism in adults with hyperactivity.

Recent work in our laboratory has demonstrated both global and regional reductions in cerebral glucose metabolism in adult subjects with attention-deficit hyperactivity disorder (ADHD). The purpose of the present study was to examine the effects of an acute dose of stimulant medication on cerebral metabolism in adults with ADHD using positron emission tomography with fluorodeoxyglucose-18 as the tracer. Each subject underwent scanning twice, once off-drug and again after receiving a single oral dose of either dextroamphetamine (0.25 mg/kg) or methylphenidate (0.35 mg/kg). Subjects completed behavioral self-report measures before and after the scan and performed an auditory continuous performance task during the tracer uptake period. Neither drug changed global metabolism. Both drugs increased systolic blood pressure, and dextroamphetamine improved performance on the auditory attention task. Each stimulant produced a differential pattern of increases and decreases in regional metabolism throughout the regions of interest that were sampled. Rather than increasing glucose utilization in specific brain regions with lowered metabolic rates in adults with ADHD, stimulants may act by altering glucose use throughout the brain.

Adult

Noninvasive arterial monitor for quantitative oxygen-15-water blood flow studies.

A noninvasive monitor has been developed for monitoring arterial radioactivity in quantitative PET studies of blood flow. The significance of this probe is that quantitative blood flow studies can be performed without the use of arterial catheterization. The method employed is based on the flux of photons emanating from the superior lobe of the right lung following an intravenous bolus of H2(15)O. Calibration of the monitor is obtained by measuring the relationship between lung monitor counts and arterial radioactivity after arterial and venous radioactivity levels have equilibrated following inhalation of C15O. To determine the accuracy of the lung probe as a measure of arterial radioactivity, 44 brain blood flow determinations were made in 11 volunteers using arterial radioactivity measures based both on the lung probe and continuous sampling from a radial artery. Repeated measures analysis of variance found no differences between invasive and noninvasive estimates of blood flow. These results suggest that the lung monitor enables quantitation of cerebral blood flow yet avoids the trauma of an arterial puncture.

Adult

Preliminary data on the metabolic brain pattern of patients with winter seasonal affective disorder.

The brain metabolic pattern of patients with winter seasonal affective disorder with and without light treatment was determined by positron emission tomography. Compared with controls, patients with seasonal affective disorder with and without light treatment had globally lower metabolic rates, relatively lower superior medial frontal cortex rates, and somewhat higher basal ganglia rates. Patients receiving light treatment had a relatively higher rate in an occipital region of interest containing the primary visual cortex. Patients without light treatment had relatively higher metabolic rates in right parietal and medial orbitofrontal cortex and lower rates in the left parietal cortex. Patients not receiving light treatment had a hemispheric metabolic asymmetry (left greater than right) for the midprefrontal cortex located 67 mm above the canthomeatal line. The right side of this region, previously found reduced in manic-depressive illness and schizophrenia, was decreased primarily in patients with seasonal affective disorder with fewer atypical depressive symptoms. These "abnormal" prefrontal and parietal cortex regions appeared highly "coupled" in the patients with seasonal affective disorder.

Adult

Metabolic brain pattern of sustained auditory discrimination.

Positron emission tomography of [18F]-2-fluorodeoxyglucose was used to assess the functional brain activity of normal subjects while performing auditory discrimination (CPT), while receiving an identical set of tones as in CPT, but with the instructions that they were background noise, or while at rest. The present study: (1) confirms earlier findings of an association between the functional activity of the right midprefrontal cortex and the performance of auditory discrimination, (2) localizes this increase in right prefrontal cortex activity to the middle prefrontal gyrus; and (3) provides a framework of specific testable hypotheses for the evaluation of the importance of certain limbic and paralimbic areas in the biological determination of sustained attention to be addressed in future studies. The framework accounts for the now confirmed finding that the middle cingulate has lower metabolic activity in CPT than at rest, and new findings of alterations in temporal lobe processing of tones in response to attention.

Acoustic Stimulation

Cerebral glucose metabolism in patients with summer seasonal affective disorder.

Positron emission tomography scans of nine patients diagnosed with summer seasonal affective disorder (SSAD) were compared with scans of 45 normal control subjects to investigate differences in brain glucose metabolism. All subjects performed an auditory discrimination task beginning several minutes before injection of F-18-deoxyglucose and continuing for 30 minutes after injection. Regional glucose metabolic rates were extracted from 60 rectangular regions of interest measured in five planes selected as atlas matches from 28 total slices. Statistically significant differences between patients with SSAD and normal control subjects were found in cerebral glucose metabolic rate and also in normalized regional glucose metabolic rates in the orbital frontal cortex and in the left inferior parietal lobule.

Adult

Cerebral glucose metabolism in adults with hyperactivity of childhood onset.

BACKGROUND AND METHODS: The cause of childhood hyperactivity (attention deficit-hyperactivity disorder) is unknown. We investigated the hypothesis that cerebral glucose metabolism might differ between normal adults (controls) and adults with histories of hyperactivity in childhood who continued to have symptoms. Each patient was also the biologic parent of a hyperactive child. None of the adults had ever been treated with stimulant medication. To measure cerebral glucose metabolism, we administered 148 to 185 MBq (4 to 5 mCi) of [18F]fluoro-2-deoxy-D-glucose intravenously to 50 normal adults and 25 hyperactive adults while they performed an auditory-attention task. Images were obtained for 30 minutes with a Scanditronix positron-emission tomograph with a resolution of 5 to 6 mm. Whole-brain and regional rates of glucose metabolism were measured with computer assistance by two trained research assistants, working independently, who were blinded to the subjects' status (control or hyperactive). RESULTS: Global cerebral glucose metabolism was 8.1 percent lower in the adults with hyperactivity than in the normal controls (mean +/- SD, 9.05 +/- 1.20 mg per minute per 100 g vs. 9.85 +/- 1.68 mg per minute per 100 g; P = 0.034). In the adults with hyperactivity, glucose metabolism was significantly reduced, as compared with the values for the controls, in 30 of 60 specific regions of the brain (P less than 0.05). Among the regions of the brain with the greatest reductions in glucose metabolism were the premotor cortex and the superior prefrontal cortex. When the seven women with hyperactivity or the six patients with learning disabilities were omitted from the analysis, the results were similar. CONCLUSIONS: Glucose metabolism, both global and regional, was reduced in adults who had been hyperactive since childhood. The largest reductions were in the premotor cortex and the superior prefrontal cortex--areas earlier shown to be involved in the control of attention and motor activity.

Adult

Local cerebral glucose metabolic rates in obsessive-compulsive disorder. Patients treated with clomipramine.

In a recent study, we reported abnormal local cerebral glucose metabolic rates in the orbital frontal cortex of patients with obsessive-compulsive disorder. Eight patients with obsessive-compulsive disorder scanned previously were scanned again during treatment with the tricyclic antidepressant clomipramine hydrochloride. Comparisons of local cerebral glucose metabolic rates for both groups showed a relative decrease in regions of the orbital frontal cortex and the left caudate, and an increase in other areas of the basal ganglia, including the right anterior putamen. When comparing patients who responded well to clomipramine with those who were either poor or partial responders, we found significant decreases only in the left caudate of patients who responded well to the drug. The present study suggests that clomipramine-induced improvement in obsessive-compulsive symptoms is associated with a return of regional brain metabolism to a more normal level in regions of the orbital frontal cortex and the caudate nucleus.

Adult

Cerebral glucose metabolic differences in patients with panic disorder.

Regional glucose metabolic rates were measured in patients with panic disorder during the performance of auditory discrimination. Those regions examined by Reiman and colleagues in their blood flow study of panic disorder [Nature 310:683 (1984)] were examined with a higher resolution positron emission tomography (PET) scanner and with the tracer [F-18]-2-fluoro-2-deoxyglucose (FDG). In contrast to the blood flow findings of Reiman et al., we did not find global gray metabolic differences between patients with panic disorder and normal controls. Consistent with the findings of Reiman et al. [Nature; Am J Psychiatry 143:469 (1986)], we found hippocampal region asymmetry. We also found metabolic decreases in the left inferior parietal lobule and in the anterior cingulate (trend), as well as an increase in the metabolic rate of the medial orbital frontal cortex (trend) of panic disorder patients. It is unclear whether the continuous performance task (CPT) enhanced or diminished findings that would have been noted in a study performed without task.

Acoustic Stimulation

Cerebral glucose metabolic rates in obsessive compulsive disorder.

Brain metabolism was measured with positron emission tomography and [18F] 2-fluoro-2-deoxyglucose in normal subjects and in patients with obsessive compulsive disorder (OCD) while they performed a continuous auditory discrimination task designed to evaluate the functional localization of sustained attention. Data on 8 nondepressed patients with OCD were compared with 30 normal volunteers. We observed significantly higher normalized regional metabolism both in the right orbital frontal cortex (p = 0.002, two-tailed t test) and in the left anterior orbital frontal cortex (p = 0.017, one-tailed t test) and in patients with OCD as compared to normal controls. We observed no normalized glucose metabolic differences in basal ganglia structures in patients with OCD as compared to our normal controls. There were no statistical differences in global glucose metabolic values between the OCD and the control group. Our findings are consistent with the findings of Baxter et al. (Arch Gen Psychiatry 44:211-218, 1987). Regions in the parietal cortex also appear to show differences in this preliminary study.

Adult

Evidence for common alterations in cerebral glucose metabolism in major affective disorders and schizophrenia.

Regional glucose metabolic rates were measured in affectively disordered patients during the performance of auditory discrimination. Those regions previously observed as abnormal in schizophrenia were examined to see if similar alterations might be associated with affective disorder. The abnormalities observed in the mid-prefrontal cortex, an area that appears to be an important biologic determinant of the sustained attention required of subjects in this task, are similar to those previously observed in schizophrenia. Moreover, the abnormalities do not appear to relate directly to symptomatology or the subject's performance. The authors discuss the possibility that this abnormality may reflect dysfunction in the integrating component of the attention network critical for the maintenance of goal-directed behavior and thus represent a psychosis vulnerability factor in some patients.

Acoustic Stimulation

The effect of neuroleptics on dysfunction in a prefrontal substrate of sustained attention in schizophrenia.

Regional brain metabolism was measured in patients with schizophrenia during the performance of auditory discrimination to evaluate the effect of neuroleptic medication on the middle prefrontal cortex, an area that appears to be an important biological determinant of the sustained attention required of subjects in this task. While unmedicated patients with schizophrenia have lower than "normal" metabolic rates in this cortical area that are unrelated to performance, patients receiving neuroleptics appear to have this metabolic deficit attenuated with higher metabolism in this area associated with greater accuracy of performance. This change occurs in the context of differential neuroleptic effects on the cortical regions of the frontal cortex, increased metabolism in the basal ganglia, thalamus and temporal lobes, and no apparent effect in the parietal and occipital cortices. The findings suggest that only part of the abnormality in the prefrontal cortex determination of sustained attention in schizophrenia is sensitive to neuroleptic treatment.

Adult

From syndrome to illness: delineating the pathophysiology of schizophrenia with PET.

The Section on Clinical Brain Imaging of the Laboratory of Cerebral Metabolism has been engaged in studying regional brain metabolism by positron emission tomography (PET) to establish the pathophysiology of schizophrenia. Recent studies have revealed that the fluorodeoxyglucose (FDG) PET methodology can be applied successfully to determine the anatomical substrata of directed attention. In normal controls, the metabolic rate in the middle prefrontal cortex, measured during the ongoing performance of auditory discrimination, is associated with their accuracy of performance. In unmedicated patients with schizophrenia, even those who performed as well as normals, the metabolic rate in the mid-prefrontal cortex was found to be significantly lower than normal. Further, this decreased metabolic rate was unrelated to performance. In medicated patients with schizophrenia, at least part of the metabolic deficit remains, but this deficit appears to be performance-related. These findings suggest several conclusions. The mid-prefrontal cortex and its dopamine neurotransmitter pathway input are important biological determinants of sustained attention. Two types of prefrontal metabolic deficits may contribute to dysfunctional goal-directed behavior and, more speculatively, vulnerability to psychosis in some patients with schizophrenia. One deficit is sensitive to neuroleptics, and thus presumably to a change in the balance of regional brain dopamine input. A second deficit is unaffected by neurolpetic treatment.

Brain

Dysfunction in a prefrontal substrate of sustained attention in schizophrenia.

Regional brain metabolism was measured in normal subjects and patients with schizophrenia while they performed an auditory discrimination task designed to emphasize sustained attention. A direct relationship was found in the normal subjects between metabolic rate in the middle prefrontal cortex and accuracy of performance. The metabolic rate in the middle prefrontal cortex of patients with schizophrenia, even those who performed as well as normals, was found to be significantly lower than normal and unrelated to performance. The findings point to a role of the mid-prefrontal region in sustained attention and to dysfunction of this region in schizophrenia.

Adult

Positron emission tomography.

PET is a unique tool for the direct in vivo evaluation of physiologic processes within discrete areas of the brain. Thus far, its application to the study of schizophrenia has served to confirm the subtleties of this illness. However, PET does promise to increase our knowledge of the neurochemical anatomy of the normal and abnormal mind with respect to goal-directed behavior.

Basal Ganglia