Search PubMed⌕ Search

Biomedical subjects

L S Pilowsky

Publications and source records attributed to L S Pilowsky.

At least 37 records · Page 2Linked to original sources

Nuclear medicine in neurology and psychiatry.

Progress in nuclear medicine has always been a function of technological advances, and applications in neurology and psychiatry illustrate the point. Improvements in radiation detectors now allow for three-dimensional and quantitative mapping of the distribution of a labelled compound in the human brain. New ligands permit the study of specific functioning signals of the blood/brain barrier, blood flow, metabolism (oxygen, glucose, aminoacids), and neurotransmission (dopamine, benzodiazepine, serotonin receptors). The picomolar sensitivity of nuclear medicine can now be coupled to a wide group of ligands which offer specific information that can be obtained in no other way in the living patient.

Animals↗

Automatic segmentation of dynamic neuroreceptor single-photon emission tomography images using fuzzy clustering.

The segmentation of medical images is one of the most important steps in the analysis and quantification of imaging data. However, partial volume artefacts make accurate tissue boundary definition difficult, particularly for images with lower resolution commonly used in nuclear medicine. In single-photon emission tomography (SPET) neuroreceptor studies, areas of specific binding are usually delineated by manually drawing regions of interest (ROIs), a time-consuming and subjective process. This paper applies the technique of fuzzy c-means clustering (FCM) to automatically segment dynamic neuroreceptor SPET images. Fuzzy clustering was tested using a realistic, computer-generated, dynamic SPET phantom derived from segmenting an MR image of an anthropomorphic brain phantom. Also, the utility of applying FCM to real clinical data was assessed by comparison against conventional ROI analysis of iodine-123 iodobenzamide (IBZM) binding to dopamine D2/D3 receptors in the brains of humans. In addition, a further test of the methodology was assessed by applying FCM segmentation to [123I]IDAM images (5-iodo-2-[[2-2-[(dimethylamino)methyl]phenyl]thio] benzyl alcohol) of serotonin transporters in non-human primates. In the simulated dynamic SPET phantom, over a wide range of counts and ratios of specific binding to background, FCM correlated very strongly with the true counts (correlation coefficient r2>0.99, P<0.0001). Similarly, FCM gave segmentation of the [123I]IBZM data comparable with manual ROI analysis, with the binding ratios derived from both methods significantly correlated (r2=0.83, P<0.0001). Fuzzy clustering is a powerful tool for the automatic, unsupervised segmentation of dynamic neuroreceptor SPET images. Where other automated techniques fail completely, and manual ROI definition would be highly subjective, FCM is capable of segmenting noisy images in a robust and repeatable manner.

Animals↗

In vivo occupancy of striatal and temporal cortical D2/D3 dopamine receptors by typical antipsychotic drugs. [123I]epidepride single photon emission tomography (SPET) study.

BACKGROUND: The dopamine hypothesis proposes that antipsychotic drugs act primarily through limbic cortical D2/D2-like dopamine receptor blockade. AIM: To evaluate this hypothesis with the D2/D3-selective SPET probe [123I]-epidepride. METHOD: [123I]-epidepride SPET scans were performed on 12 patients with schizophrenia treated with antipsychotics and II age-matched healthy controls. [123I]-epidepride 'specific binding' to D2/D3 dopamine receptors was estimated, and relative percentage D2/D3 receptor occupancy by typical antipsychotic drugs determined. RESULTS: Mean (s.d.) daily dose was 669.12 (516.8) mg chlorpromazine equivalents. Mean percentage D2/D3 receptor occupancy was 81.6 (8.1) and 73.2 (13.9) in the temporal cortex and striatum respectively. CONCLUSIONS: Typical antipsychotic drug treatment is associated with substantial temporal cortical D2/D3 receptor occupancy. The relationship between this and efficacy is poor in patients with treatment-resistant schizophrenia.

Adult↗

Psychopharmacology of olanzapine. A review.

Olanzapine is a new atypical antipsychotic (Weaver, 1997). Both early development and clinical studies support its safe use. Clinical trials suggest that it is efficacious in treating positive symptoms in schizophrenia, and more efficacious for negative symptoms and depressive symptoms than traditional antipsychotics. In addition, the side-effect profile of olanzapine is favourable, with a low incidence of EPS and little increase in prolactin during acute-phase trials. At present, olanzapine appears broadly as good as the other novel atypical drugs. As a group, the atypical antipsychotics have been recommended for use as first-line therapy, in acute schizophrenic relapse, and for those who are responsive, but intolerant, to classical antipsychotic medication (Kerwin, 1994; Lieberman, 1996). The role of olanzapine in treating treatment-resistant patients is unproven, and data is awaited comparing olanzapine directly with clozapine. The current era of development of drugs for schizophrenia holds great promise, and it is the duty of all doctors to make patients aware of the benefits and risks of available treatments, and to enable them to choose.

Antipsychotic Agents↗

Cognitive functioning and GABAA/benzodiazepine receptor binding in schizophrenia: a 123I-iomazenil SPET study.

BACKGROUND: The role of the inhibitory neurotransmitter gamma aminobutyric acid (GABA) in schizophrenia has previously been investigated using postmortem material. Recently, using single photon emission tomography (SPET) with the selective benzodiazepine antagonist 123I-Iomazenil as the radioligand, we have demonstrated an in vivo relationship between reduced GABAA/benzodiazepine receptor binding and the severity of positive symptomatology in schizophrenia. The present study aimed to build on this using the same in vivo scanning techniques, and relating findings to cognitive functioning. METHODS: Ten nonpsychiatric control subjects and 15 schizophrenic patients, matched for age and handedness, were scanned. A battery of neuropsychologic tests was also administered. RESULTS: Correlational analysis revealed a pattern of increased correlations between GABAA/benzodiazepine receptor binding and task performance, in the schizophrenic group compared to the control group. CONCLUSIONS: Findings are preliminary but suggest a relationship between reduced GABAA/benzodiazepine receptor binding and poorer cognitive functioning, involving memory and visual attention processes, in the schizophrenic group but not in the control group. A role for GABA in the pathophysiology of schizophrenia is suggested. Limitations of the present study and suggestions for future research are discussed.

Adult↗

Reduced levels of GABA-benzodiazepine receptor in alcohol dependency in the absence of grey matter atrophy.

BACKGROUND: We tested the hypothesis that reduced levels of the GABA-benzodiazepine receptor occur in alcohol dependency using single photon emission tomography (SPET) and the specific GABA-benzodiazepine ligand, 123I-iomazenil. METHOD: Neurologically and cognitively unimpaired abstinent alcohol-dependent (n = 12) and non-alcohol-dependent male subject (n = 14) underwent a 123I-iomazenil SPET scan. SPET and magnetic resonance images were co-registered and voxel-based statistical tests performed. Subjects' clinical and alcohol history were obtained with standard questionnaires. The relationships between clinical and alcohol variables and the regional level of GABA-benzodiazepine receptors were investigated using multiple regression analysis. RESULTS: Abstinent alcohol-dependent subjects had decreased levels of GABA-benzodiazepine receptor compared with non-alcohol-dependent subjects within the frontal, parietal and temporal cortices, including regions in which grey matter atrophy was absent. CONCLUSIONS: Alcohol dependency is associated with reduced GABA-benzodiazepine receptor levels in the absence of grey matter atrophy in some cortical regions, such as within the parietal lobe. Regional variability of reduction in GABA-benzodiazepine receptors demonstrates that alcohol does not have a global, toxic effect on the brain.

Adult↗

5-HT2A receptor blockade in patients with schizophrenia treated with risperidone or clozapine. A SPET study using the novel 5-HT2A ligand 123I-5-I-R-91150.

BACKGROUND: 5-HT2A receptor antagonism may be crucial to the action of atypical antipsychotics. Previous work has related 5-HT2A receptor blockade to clinical efficacy and protection from extrapyramidal side-effects. METHOD: We developed a SPET imaging protocol for assessing 5-HT2A receptor binding using the selective ligand 123I-5-I-R91150. Six healthy volunteers, five clozapine- and five risperidone-treated subjects with DSM-IV schizophrenia were studied. Multi-slice SPET was performed on each subject. RESULTS: Cortex:cerebellum ratios were significantly lower in both clozapine- and risperidone-treated subjects compared with the healthy volunteers in all cortical regions. There was no difference in occupancy between the two drug-treated groups. No correlation was found between the percentage change in the Global Assessment Scale (GAS) and 5-HT2A receptor binding indices in the drug-treated groups. CONCLUSIONS: Clozapine and risperidone potently block 5-HT2A receptors in vivo. The lack of relationship between receptor binding indices and change in GAS suggests that 5-HT2A receptor blockade may be unrelated to clinical improvement. Future studies will substantiate this finding by studying 5-HT2A receptor binding in large groups of patients treated with both typical and novel atypical antipsychotics.

Adult↗

Caudate regional cerebral blood flow in obsessive-compulsive disorder, panic disorder and healthy controls on single photon emission computerised tomography.

We compared regional cerebral blood flow (rCBF) in 15 patients with DSM IIIR obsessive-compulsive disorder (OCD), 15 patients with DSM IIIR panic disorder and 15 healthy controls matched for age, sex and hand preference, using uptake of technetium-99m-D,L-hexamethyl-propylene amine oxime (99mTc HMPAO), on single photon emission computerised tomography (SPECT). Caudate rCBF was significantly reduced in OCD patients compared to healthy subjects and panic disorder patients. When four patients were excluded from each group, right caudate rCBF remained significantly lower in OCD patients than in panic disorder patients or healthy subjects. The data suggest functional involvement of the right caudate nucleus is present in OCD.

Adult↗

Multivariate cluster analysis of dynamic iodine-123 iodobenzamide SPET dopamine D2 receptor images in schizophrenia.

This paper describes the application of a multivariate statistical technique to investigate striatal dopamine D2 receptor concentrations measured by iodine-123 iodobenzamide (123I-IBZM) single-photon emission tomography (SPET). This technique enables the automatic segmentation of dynamic nuclear medicine images based on the underlying time-activity curves present in the data. Once the time-activity curves have been extracted, each pixel can be mapped back on to the underlying distribution, considerably reducing image noise. Cluster analysis has been verified using computer simulations and phantom studies. The technique has been applied to SPET images of dopamine D2 receptors in a total of 20 healthy and 20 schizophrenic volunteers (22 male, 18 female), using the ligand 123I-IBZM. Following automatic image segmentation, the concentration of striatal dopamine D2 receptors shows a significant left-sided asymmetry in male schizophrenics compared with male controls. The mean left-minus-right laterality index for controls is -1.52 (95% CI -3.72-0.66) and for patients 4.04 (95% CI 1.07-7.01). Analysis of variance shows a case-by-sex-by-side interaction, with F=10.01, P=0. 005. We can now demonstrate that the previously observed male sex-specific D2 receptor asymmetry in schizophrenia, which had failed to attain statistical significance, is valid. Cluster analysis of dynamic nuclear medicine studies provides a powerful tool for automatic segmentation and noise reduction of the images, removing much of the subjectivity inherent in region-of-interest analysis. The observed striatal D2 asymmetry could reflect long hypothesized disruptions in dopamine-rich cortico-striatal-limbic circuits in schizophrenic males.

Benzamides↗

Initial evaluation of 123I-5-I-R91150, a selective 5-HT2A ligand for single-photon emission tomography, in healthy human subjects.

The mapping of 5-HT2 receptors in the brain using functional imaging techniques has been limited by a relative lack of selective radioligands. Iodine-123 labelled 4-amino-N-[1-[3-(4-fluorophenoxy)propyl]-4-methyl-4-piperidinyl]-5-io do-2-methoxybenzamide (123I-5-I-R91150 or 123I-R93274) is a new ligand for single-photon emission tomography (SPET), with high affinity and selectivity for 5-HT2A receptors. This study reports on preliminary 123I-5-I-R91150 SPET, whole-body and blood distribution findings in five healthy human volunteers. Maximal brain uptake was approximately 2% of total body counts at 180 min post injection (p.i. ). Dynamic SPET sequences were acquired with the brain-dedicated, single-slice multi-detector system SME-810 over 200 min p.i. Early peak uptake (at 5 min p.i.) was seen in the cerebellum, a region free from 5HT2A receptors. In contrast, radioligand binding in the frontal cortex increased steadily over time, up to a peak at approximately 100-120 min p.i. Frontal cortex-cerebellum activity ratios reached values of 1.4, and remained stable from approximately 100 min p.i. onwards. Multi-slice SPET sequences showed a pattern of regional variation of binding compatible with the autoradiographic data on the distribution of 5-HT2A receptors in humans (cerebral cortex>striatum>cerebellum). These findings suggest that 123I-5-I-R91150 may be used for the imaging of 5-HT2A receptors in the living human brain with SPET.

Adult↗

In vivo effects on striatal dopamine D2 receptor binding by the novel atypical antipsychotic drug sertindole--a 123I IBZM single photon emission tomography (SPET) study.

The novel antipsychotic drug sertindole has an atypical pharmacological profile. We have estimated striatal D2 dopamine binding in schizophrenic patients treated with sertindole using 123I iodobenzamide (IBZM) SPET. Patients were recruited from a clinical trial of sertindole's tolerability and efficacy. Striatal D2 binding in sertindole-treated patients (n = 5), was compared with previously reported data from clozapine (n = 10); olanzapine (n = 6); typical antipsychotic responsive (n = 10); and risperidone (n = 6)-treated groups. Mean PANSS (structured clinical interview for the positive and negative syndrome scale) scores showed clinical improvement in the sertindole group. Few extrapyramidal side effects (EPS) were recorded [average Simpson-Angus (SAS) score = 2.6]. Sertindole-treated patients had mean D2 binding indices (+/-SE) significantly lower than clozapine-treated patients (1.19 +/- 0.04) versus (1.49 +/- 0.04), and olanzapine-treated patients (1.41 +/- 0.06); and similar to those of risperidone (1.24 +/- 0.04) and typical antipsychotic responsive (1.25 +/- 0.05) treated patients. In this patient sample the preliminary evidence suggests that sertindole's decreased tendency to induce EPS at clinically therapeutic doses is not due to limited occupancy of striatal D2 receptors in vivo, and as is the case for risperidone, patients are protected from EPS by some other intrinsic effect of the drug.

Adult↗

Registration of dynamic dopamine D2 receptor images using principal component analysis.

This paper describes a novel technique for registering a dynamic sequence of single-photon emission tomography (SPET) dopamine D2 receptor images, using principal component analysis (PCA). Conventional methods for registering images, such as count difference and correlation coefficient algorithms, fail to take into account the dynamic nature of the data, resulting in large systematic errors when registering time-varying images. However, by using principal component analysis to extract the temporal structure of the image sequence, misregistration can be quantified by examining the distribution of eigenvalues. The registration procedures were tested using a computer-generated dynamic phantom derived from a high-resolution magnetic resonance image of a realistic brain phantom. Each method was also applied to clinical SPET images of dopamine D2 receptors, using the ligands iodine-123 iodobenzamide and iodine-123 epidepride, to investigate the influence of misregistration on kinetic modelling parameters and the binding potential. The PCA technique gave highly significant (P<0.001) improvements in image registration, leading to alignment errors in x and y of about 25% of the alternative methods, with reductions in autocorrelations over time. It could also be applied to align image sequences which the other methods failed completely to register, particularly 123I-epidepride scans. The PCA method produced data of much greater quality for subsequent kinetic modelling, with an improvement of nearly 50% in the chi2 of the fit to the compartmental model, and provided superior quality registration of particularly difficult dynamic sequences.

Algorithms↗

Wisconsin Card Sorting Task (WCST) errors and cerebral blood flow in obsessive-compulsive disorder (OCD).

We compared Wisconsin Card Sorting Task (WCST) performance in 19 obsessive-compulsive disorder (OCD) patients and 19 individually matched healthy controls. Measures of intelligence and mood were taken into account for all participants. Within the patient group, factors such as duration and severity of symptoms (as assessed using the Yale-Brown Obsessive-Compulsive Scale, Y-BOCS) were considered. We explored the relationship between OCD WCST errors and regional cerebral blood flow (rCBF) on brain dedicated, high resolution, single photon emission tomography (SPET). We used uptake of 99mTc-hexamethylpropylamine oxime (HMPAO) on SPET to estimate rCBF, and regional values were quantified as ratios of cerebellar blood flow. WCST results confirmed OCD patients were significantly impared when compared with age- and sex-matched healthy volunteers. Patients made significantly more trials, more preseverative errors, and more null-sorts. OCD patients Y-BOCS 'obsessive' subtotal significantly correlated with many WCST errors. Furthermore OCD WCST null-sorts correlated significantly with SPET OCD left inferior frontal cortical rCBF (r(18) = .47, p = .05) and left caudate rCBF (r(18) = .72, p = .01). The implications of these findings are discussed in the context of other studies which examine functional imaging and neuropsychology in OCD.

Adult↗

Correlation between reduced in vivo benzodiazepine receptor binding and severity of psychotic symptoms in schizophrenia.

OBJECTIVE: Although there is evidence from postmortem studies suggestive of deficient inhibitory neurotransmission of gamma-aminobutyric acid (GABA) in schizophrenia, no direct in vivo evidence has been obtained to date. The authors used single photon emission computed tomography (SPECT) with iodine-123-labeled iomazenil ([123I]iomazenil), a radioligand that selectively binds with high affinity to the benzodiazepine subunit of the GABAA receptor complex in the human brain, to investigate the presence of benzodiazepine receptor abnormalities in the cerebral cortex of living subjects with schizophrenia. METHOD: Dynamic [123I]iomazenil SPECT was performed in 15 patients (14 patients with DSM-III-R schizophrenia and one with schizophreniform disorder) and 12 healthy subjects over a period of 2 hours. The time-integral method was used to generate ratios of "specific" to "nonspecific" [123I]iomazenil binding at equilibrium for several cortical regions. RESULTS: No overall between-group differences in benzodiazepine receptor binding were found, but significant correlations emerged between the severity of schizophrenic symptoms and [123I]iomazenil binding in limbic cortical regions: positive symptom scores were negatively correlated with benzodiazepine receptor binding in the left medial temporal region, and negative symptoms were inversely related to receptor binding in the medial frontal region. These correlations were not significant when a Bonferroni correction for multiple comparisons was applied. CONCLUSIONS: These preliminary results are consistent with previous research implicating limbic cortical regions in the pathophysiology of schizophrenia, suggesting that reduced inhibitory GABAergic tone in these areas may contribute to the appearance of schizophrenic symptoms.

Adolescent↗

Dopamine D2 receptor occupancy in vivo by the novel atypical antipsychotic olanzapine--a 123I IBZM single photon emission tomography (SPET) study.

We have studied striatal D2 dopamine binding in schizophrenic patients treated with the novel atypical antipsychotic drug, olanzapine. 123I iodobenzamide (IBZM) single photon emission tomography (SPET) was used to estimate striatal dopamine D2 receptor binding in vivo. Patients were recruited from a prospective, double blind controlled trial of olanzapine versus haloperidol treatment. In vivo striatal D2 binding data from olanzapine treated patients (n = 6) were compared with previously reported data from typical antipsychotic responsive (n = 10); clozapine (n = 10); and risperidone (n = 6) treated patient groups. Mean % Brief Psychiatric Rating Scale score (BPRS) improvement following olanzapine treatment was 49% (SD 44). The hypothesis that clinical improvement in olanzapine treated patients would be associated with higher mean striatal D2 binding of 123I IBZM (reflecting lower levels of D2 occupancy) than typical antipsychotic (1.25 +/- 0.05) or risperidone (1.24 +/- 0.04) treatment was confirmed. Olanzapine treated patients had similar levels of striatal D2 binding in vivo (1.41 +/- 0.06) as those treated with clozapine (1.49 +/- 0.04). This preliminary evidence suggests olanzapine is another atypical antipsychotic drug in which therapeutic response is not associated with a high degree of striatal D2 receptor occupancy in vivo.

Adult↗