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Biomedical subjects

S E Arnold

Publications and source records attributed to S E Arnold.

At least 19 recordsLinked to original sources

Diabetes is related to cerebral infarction but not to AD pathology in older persons.

OBJECTIVE: To examine the potential relation of diabetes to common neuropathologic causes of dementia, cerebral infarction and Alzheimer disease (AD) neuropathology. METHODS: Subjects were 233 older Catholic clergy in the Religious Orders Study, who underwent detailed annual evaluations, including neuropsychological testing, and brain autopsy at time of death (mean age 86 years, 45% men). Diabetes was identified by annual direct medication inspection and history. Cognitive function proximate to death was summarized into five cognitive domains, based on 19 neuropsychological tests. Macroscopic cerebral infarctions were recorded from 1 cm coronal slabs. Neuritic plaques, diffuse plaques, and neurofibrillary tangles were counted in Bielschowsky silver-stained sections and summarized to yield composite measures of neuritic plaques, diffuse plaques, tangles, and overall AD pathology. We also used immunohistochemistry with antibodies to amyloid-beta and PHF-tau to obtain quantitative measures of amyloid burden and neurofibrillary tangle density. Multiple logistic and linear regression analyses were used to examine the relation of diabetes to cerebral infarctions and AD pathology, controlling for age, sex, and education. RESULTS: AD pathology was related to all five cognitive domains (p < 0.01) and infarctions were related to perceptual speed (p < 0.001). Diabetes (present in 15% subjects) was associated with an increased odds of infarction (OR = 2.47, 95% CI: 1.16, 5.24). Diabetes was not related to global AD pathology score, or to specific measures of neuritic plaques, diffuse plaques or tangles, or to amyloid burden or tangle density. CONCLUSION: We found a relation between diabetes and cerebral infarction but not between diabetes and Alzheimer disease pathology in older persons.

Aged↗

AMPA receptor subunit and splice variant expression in the DLPFC of schizophrenic subjects and rhesus monkeys chronically administered antipsychotic drugs.

Disturbances in glutamate neurotransmission are thought to be one of the major contributing factors to the pathophysiology of schizophrenia. In the dorsolateral prefrontal cortex (DLPFC), glutamate neurotransmission is largely mediated by AMPA receptors. Data regarding alterations of subunit expression in the brains of patients with schizophrenia remain equivocal. This may be due to differences in technique sensitivity, endogenous control selection for normalization of data, or effect of antipsychotic drug treatment in different cohorts of schizophrenia. This study attempted to address these issues by examining the expression of AMPA receptor subunits and splice variants in the DLPFC of two schizophrenia cohorts using quantitative PCR (qPCR) with normalization to the geometric mean of multiple endogenous controls. In addition, a non-human primate model of chronic antipsychotic drug administration was used to determine the extent to which the transcript expression may be altered by antipsychotic drug treatment in the primate DLPFC. AMPA receptor subunits and flip and/or flop splice variants were not significantly different in the DLPFC of schizophrenia subjects versus controls in either of the two cohorts. However, in rhesus monkeys chronically treated with antipsychotic drugs, clozapine treatment significantly decreased GRIA1 and increased GRIA3 mRNA expression, while both clozapine and haloperidol increased the expression of GRIA2 subunit mRNA. Expression of AMPA receptor splice variants was not significantly altered by antipsychotic drug administration. This is the first study to show that AMPA receptor subunit mRNAs in the primate DLPFC are altered by antipsychotic drug administration. Antipsychotic drug-induced alterations may help explain differences in human post-mortem studies regarding AMPA receptor subunit expression and provide some insight into the mechanism of action of antipsychotic drugs.

Adult↗

The relationship between cerebral Alzheimer's disease pathology and odour identification in old age.

BACKGROUND: Olfactory dysfunction is common in old age, but its basis is uncertain. OBJECTIVE: To test the hypothesis that difficulty in identifying odours in old age is related to the accumulation of Alzheimer's disease pathology. METHODS: As part of the Rush Memory and Aging Project, participants completed the 12-item Brief Smell Identification Test, a standard measure of odour identification. During a mean (standard deviation (SD)) of 2.2 (1.2) years of follow-up (range 0.2-4.9), 166 people died, with brain autopsies performed on 129 (77.7%) people and neuropathological examinations completed on 77 (mean (SD) age at death 87.5 (5.9) years; median postmortem interval 6.1 h). From a uniform postmortem examination of multiple brain regions, summary measures of plaque and tangle pathology were derived on the basis of silver staining, and those of amyloid beta burden, tangle density and Lewy bodies on the basis of immunohistochemistry. RESULTS: Odour identification performance ranged from 0 to 12 correct (mean (SD) 8.0 (2.6)). In analyses adjusted for age, sex and education, a composite measure of plaques and tangles accounted for >12% of the variation in odour identification. The association remained after controlling for dementia or semantic memory. Density of tau tangles was inversely related to odour identification. A similar effect for amyloid burden was attenuated after controlling for tangles. The association with odour identification was robust for tangles in the entorhinal cortex and CA1/subiculum area of the hippocampus, but not for tangles in other cortical sites. Lewy bodies, identified in 12.5%, were not related to odour identification, probably partly due to to their relative infrequency. CONCLUSION: The results suggest that difficulty in identifying familiar odours in old age is partly due to the accumulation of neurofibrillar pathology in central olfactory regions.

Aged↗

Education modifies the association of amyloid but not tangles with cognitive function.

The authors quantified amyloid and tau tangles in Religious Orders Study participants. In separate analyses, amyloid and tangles were related to level of cognition. When terms for education's interaction with amyloid and tangles were added, education dampened the association of amyloid with level of cognition (p = 0.02) but not the association of neurofibrillary tangles with level of cognition, suggesting that education is related to factors that reduce the effect of amyloid on cognition.

Activities of Daily Living↗

Amyloid mediates the association of apolipoprotein E e4 allele to cognitive function in older people.

BACKGROUND: The neurobiological changes underlying the association of the apolipoprotein E (APOE) e4 allele with level of cognition are poorly understood. OBJECTIVE: To test the hypothesis that amyloid load can account for (mediate) the association of the APOE e4 allele with level of cognition assessed proximate to death. METHODS: There were 44 subjects with clinically diagnosed Alzheimer's disease and 50 without dementia, who had participated in the Religious Orders Study. They underwent determination of APOE allele status, had comprehensive cognitive testing in the last year of life, and brain autopsy at death. The percentage area of cortex occupied by amyloid beta and the density of tau positive neurofibrillary tangles were quantified from six brain regions and averaged to yield summary measures of amyloid load and neurofibrillary tangles. Multiple regression analyses were used to examine whether amyloid load could account for the effect of allele status on level of cognition, controlling for age, sex, and education. RESULTS: Possession of at least one APOE e4 allele was associated with lower level of cognitive function proximate to death (p = 0.04). The effect of the e4 allele was reduced by nearly 60% and was no longer significant after controlling for the effect of amyloid load, whereas there was a robust inverse association between amyloid and cognition (p = 0.001). Because prior work had suggested that neurofibrillary tangles could account for the association of amyloid on cognition, we next examined whether amyloid could account for the effect of allele status on tangles. In a series of regression analyses, e4 was associated with density of tangles (p = 0.002), but the effect of the e4 allele was reduced by more than 50% and was no longer significant after controlling for the effect of amyloid load. CONCLUSION: These findings are consistent with a sequence of events whereby the e4 allele works through amyloid deposition and subsequent tangle formation to cause cognitive impairment.

Aged↗

Clinical and neuropathologic variation in neuronal intermediate filament inclusion disease.

BACKGROUND: Recently described neuronal intermediate filament inclusion disease (NIFID) shows considerable clinical heterogeneity. OBJECTIVE: To assess the spectrum of the clinical and neuropathological features in 10 NIFID cases. METHODS: Retrospective chart and comprehensive neuropathological review of these NIFID cases was conducted. RESULTS: The mean age at onset was 40.8 (range 23 to 56) years, mean disease duration was 4.5 (range 2.7 to 13) years, and mean age at death was 45.3 (range 28 to 61) years. The most common presenting symptoms were behavioral and personality changes in 7 of 10 cases and, less often, memory loss, cognitive impairment, language deficits, and motor weakness. Extrapyramidal features were present in 8 of 10 patients. Language impairment, perseveration, executive dysfunction, hyperreflexia, and primitive reflexes were frequent signs, whereas a minority had buccofacial apraxia, supranuclear ophthalmoplegia, upper motor neuron disease (MND), and limb dystonia. Frontotemporal and caudate atrophy were common. Histologic changes were extensive in many cortical areas, deep gray matter, cerebellum, and spinal cord. The hallmark lesions of NIFID were unique neuronal IF inclusions detected most robustly by antibodies to neurofilament triplet proteins and alpha-internexin. CONCLUSION: NIFID is a neuropathologically distinct, clinically heterogeneous variant of frontotemporal dementia (FTD) that may include parkinsonism or MND. Neuronal IF inclusions are the neuropathological signatures of NIFID that distinguish it from all other FTD variants including FTD with MND and FTD tauopathies.

Adult↗

Depressive symptoms, clinical AD, and cortical plaques and tangles in older persons.

BACKGROUND: Depressive symptoms in old age have been associated with risk of Alzheimer disease (AD), but it is uncertain whether they are an independent risk factor for disease or an early clinical sign of its underlying pathology. METHODS: A group of 130 older Catholic nuns, priests, and brothers underwent detailed annual clinical evaluations and brain autopsy at death. The evaluations included administration of a modified 10-item Center for Epidemiologic Studies Depression Scale (CES-D) and 19 cognitive performance tests and clinical classification of dementia and AD. On postmortem examination, neuritic plaques, diffuse plaques, and neurofibrillary tangles in tissue samples from four cortical regions were counted, and a previously established composite measure of cortical plaque and tangle density (range 0 to 2.98) was derived. All analyses were adjusted for age, sex, and education. RESULTS: Participants reported a mean 1.5 depressive symptoms (SD 1.6) on the CES-D scale averaged across evaluations. In a logistic regression model, the odds of clinically diagnosed AD proximate to death increased by 1.33 (95% CI 1.01 to 1.76) for each depressive symptom and by 8.41 (95% CI 3.49 to 20.26) for each unit on the composite measure of pathology. In subsequent analyses, depressive symptoms were not related to level of pathology and did not modify the relation of pathology to clinical AD. In a series of linear regression models that controlled for pathology, depressive symptoms were related to level of cognitive function proximate to death and did not modify the association of pathology with cognition. CONCLUSION: The association of depressive symptoms with clinical AD and cognitive impairment appears to be independent of cortical plaques and tangles.

Aged↗

Education modifies the relation of AD pathology to level of cognitive function in older persons.

OBJECTIVE: To test the hypothesis that years of formal education modifies the relation of AD pathology to level of cognitive function. METHODS: A total of 130 older Catholic clergy participating in the Religious Orders Study underwent annual cognitive function testing and brain autopsy at the time of death. Individual cognitive function tests were z-scored and averaged to yield a global measure of cognitive function and summary measures of five different cognitive abilities. Neuritic and diffuse plaques and neurofibrillary tangles were counted in separate 1 mm(2) areas of maximal density. Counts were converted to standard scores by dividing by their SD, and combined to yield a global AD pathology score and summary scores of each postmortem index. Linear regression was used to examine the relation of education and AD pathology scores to level of cognitive function proximate to death, controlling for age and sex. Subsequent analyses tested the interaction between education and each AD pathology score to determine whether education modified the relation of AD pathology to level of cognitive function. Additional analyses examined these associations on five specific cognitive abilities. RESULTS: Both years of formal education (regression coefficient = 0.073, p = 0.0001) and the global AD pathology score (regression coefficient = -0.689, p < 0.0001) were related to level of cognitive function. When an interaction term between education and AD pathology was added to the model, the association between a unit of AD pathology and level of cognitive function was 0.088 (p = 0.0078) standard unit less for each year of education than the level predicted from the model without the interaction term. Whereas neuritic plaques, diffuse plaques, and neurofibrillary tangles were all strongly related to cognitive function, education only modified the relation of neuritic plaques (p = 0.002) and diffuse plaques (p = 0.03) to cognition, but not neurofibrillary tangles. In analyses examining five different cognitive abilities, the interaction between education and the neuritic plaque score was strongest for perceptual speed and weakest for episodic memory. CONCLUSIONS: These data provide strong evidence that the relation between senile plaques and level of cognitive function differs by years of formal education.

Aged↗

Relation of cerebral infarctions to dementia and cognitive function in older persons.

BACKGROUND: Cerebral infarctions are common in older persons but their relationship with dementia and cognitive function remains controversial. METHODS: Participants were 164 older Catholic nuns, priests, and brothers who underwent annual clinical evaluation and brain autopsy at death. The authors quantified number and volume of old cerebral infarctions on postmortem examination and determined the association with dementia and cognitive function proximate to death. Analyses controlled for age, sex, and education. RESULTS: A total of 58 (35.4%) subjects had cerebral infarctions: 29 had one infarction and 29 had multiple infarctions. In logistic regression analyses, infarctions increased the odds of dementia twofold (OR 2.12; 95% CI 1.06 to 4.25). The odds of dementia increased by 2.67-fold for multiple infarctions (95% CI 1.08 to 6.61), whereas the odds of dementia with single infarctions increased by 69% (95% CI 0.70 to 4.09). In linear regression analyses, there was a trend for multiple infarctions to be associated with lower global cognitive scores (-0.44 standard units, p = 0.057). Multiple infarctions were related to perceptual speed, visuospatial skills, and working memory, but not to episodic or semantic memory. The authors found similar results with infarction volume. In secondary analyses, only infarctions that were clinically evident during life were associated with dementia and cognitive function. CONCLUSION: Cerebral infarctions are associated with a twofold increase in odds of dementia. Odds are higher in persons with multiple, large, or clinically evident infarctions. In addition, cerebral infarctions do not affect all cognitive systems equally, showing the strongest association with perceptual speed and the weakest with episodic memory.

Aged↗

Apolipoprotein E epsilon4 allele, AD pathology, and the clinical expression of Alzheimer's disease.

OBJECTIVE: To test the hypothesis that the APOE epsilon4 allele is associated with the clinical manifestations of AD through an association with the pathologic hallmarks of disease. METHODS: Participants were older Catholic nuns, priests, and brothers who agreed to annual neurologic and neuropsychological evaluation for AD and other common neurologic conditions and brain autopsy at the time of death. There were 77 persons without dementia and 51 with probable AD; 38 participants had one or more epsilon4 alleles. RESULTS: In logistic regression analyses, controlling for age, sex, and education, the epsilon4 allele was strongly associated with the likelihood of clinical AD (odds = 3.46, 95% CI = 1.44 to 8.33). However, controlling for the effect of AD pathology, the association of the epsilon allele with clinical AD was reduced by >50% and was no longer significant (odds = 1.58, 95% CI = 0.56 to 4.43). Similarly, in linear regression analyses, controlling for age, sex, and education, the epsilon4 allele was strongly associated with level of cognitive function proximate to death (regression coefficient = -0.477, p = 0.005). However, after controlling for the effect of AD pathology, the association of the epsilon4 allele with level of cognition was reduced by >80% and was no longer significant (regression coefficient = -0.093). Similar results were found in analyses using separate measures of neuritic plaques, diffuse plaques, and neurofibrillary tangles, and in analyses of five different cognitive systems (episodic memory, semantic memory, working memory, perceptual speed, and visuospatial ability). CONCLUSIONS: The APOE epsilon4 allele appears to be associated with the clinical manifestations of AD through an association with the pathologic hallmarks of AD rather than another mechanism.

Age Factors↗

Depressive symptoms, cognitive decline, and risk of AD in older persons.

BACKGROUND: Cross-sectional and retrospective case-control studies suggest an association of depression symptoms with cognitive impairment and AD, but there have been few prospective studies and their results have been inconsistent. METHODS: Participants are Catholic clergy members who were aged > or =65 years and who did not have clinical evidence of AD. During a 7-year period, they underwent annual clinical evaluations that included clinical classification of AD and detailed cognitive function testing from which global and specific measures of cognition were derived. Number of depressive symptoms was assessed at baseline with a modified, 10-item Center for Epidemiologic Studies Depression Scale (CES-D). The association of CES-D score with incident AD, using proportional hazards models, and cognitive decline, using random effects models, was examined. RESULTS: At baseline, participants reported an average of about one depressive symptom on the CES-D scale (range, 0 to 8). During the 7 years of follow-up, 108 persons developed AD. In analyses that controlled for selected demographic and clinical variables including baseline level of cognitive function, CES-D score was associated with both risk of AD and rate of cognitive decline. For each depressive symptom, risk of developing AD increased by an average of 19%, and annual decline on a global cognitive measure increased by an average of 24%. CONCLUSIONS: The results raise the possibility that depressive symptoms in older persons may be associated with risk of developing AD.

Aged↗

Dysregulation of olfactory receptor neuron lineage in schizophrenia.

BACKGROUND: Growing evidence implicates abnormal neurodevelopment in schizophrenia. While neuron birth and differentiation is largely completed by the end of gestation, the olfactory epithelium (OE) is a unique part of the central nervous system that undergoes regeneration throughout life, thus offering an opportunity to investigate cellular and molecular events of neurogenesis and development postmortem. We hypothesized that OE neurons exhibit deviant progress through neurodevelopment in schizophrenia characterized by an increase in immature neurons. METHODS: Olfactory epithelium was removed at autopsy from 13 prospectively assessed elderly subjects who had schizophrenia and 10 nonpsychiatric control subjects. Sections were immunolabeled with antibodies that distinguish OE neurons in different stages of development, including basal cells (low-affinity nerve growth factor receptor, p75NGFR), postmitotic immature neurons (growth-associated protein 43 [GAP43]), and mature olfactory receptor neurons (olfactory marker protein). Absolute and relative densities of each cell type were determined. RESULTS: We observed a significantly lower density of p75NGFR basal cells (37%) in schizophrenia and increases in GAP43 + postmitotic immature neurons (316%) and ratios of GAP43 + postmitotic immature neurons to p75NGFR + cells (665%) and olfactory marker protein + mature neurons to p75NGFR + basal cells (328%). Neuroleptic-free schizophrenia subjects exhibited the highest GAP43 + postmitotic immature neuron values. CONCLUSIONS: Abnormal densities and ratios of OE neurons at different stages of development indicate dysregulation of OE neuronal lineage in schizophrenia. This could be because of intrinsic factors controlling differentiation or an inability to gain trophic support from axonal targets in the olfactory bulb. While caution is necessary in extrapolating developmental findings in mature OE to early brain development, similarities in molecular events suggest that such studies may be instructive.

Aged↗

Loss of brain tau defines novel sporadic and familial tauopathies with frontotemporal dementia.

Dementia lacking distinctive histopathology (DLDH) or frontotemporal lobe degeneration (FTLD) is the most common neuropathological diagnosis for sporadic frontotemporal dementias (FTDs). The hallmarks of DLDH are neuron loss and gliosis in the absence of any disease-specific brain lesion. Similar brain pathology is also seen in a familial FTD pedigree known as hereditary dysphasic disinhibition dementia 2 (HDDD2). Abnormality in the function or isoform composition of the microtubule binding protein tau is a prominent feature in the brains of many patients with sporadic and hereditary FTDs. Therefore, we studied the tau protein in different brain regions from DLDH and HDDD2 patients. Our results indicate that a selective loss of all six tau isoforms, but not tau mRNA, occurs in these brains compared to normal control and Alzheimer's disease brains. Loss of tau protein was identified by Western blot analysis of protein extracts from DLDH and HDDD2 brains in regions both with and without neuronal degeneration. Functionally, this loss of tau protein may be equivalent to pathogenic mutations in the tau gene identified in familial FTD with parkinsonism linked to chromosome 17 (FTDP-17). Thus, DLDH and HDDD2 are novel tauopathies with a unique mechanism of pathogenesis. The presence of tau mRNA in these brains suggests that the level of tau protein may be controlled posttranscriptionally, at the level of either translation or mRNA stability.

Aged↗

Cognitive impairment and functional status in elderly institutionalized patients with schizophrenia.

OBJECTIVE: The relationship of cognitive impairment to functional status in older adults with schizophrenia was investigated. PATIENTS: Ninety-three psychiatric inpatients with schizophrenia between the ages of 65 and 88 years. Two subsets of this sample, consisting of 48 and 24 patients, were studied with a greater number of assessment instruments. MEASURES: The Mini-Mental State Examination (MMSE) was used for brief assessment of overall cognitive functioning, and the Psychogeriatric Dependency Rating Scale (PGDRS) was administered to assess functional status. The cognitive test battery from the Consortium to Establish a Registry for Alzheimer's Disease (CERAD) and/or an expanded neuropsychological battery, was given to a subset of the patients. RESULTS: In the overall sample, patients with greater global cognitive impairment had higher levels of rated impairment on the individual items that comprised the Orientation and Physical, but not Behavior, subscales of the PGDRS. Furthermore, in the two subsamples, specific neuropsychological measures of problem-solving, word list learning, naming and constructional praxis were related to overall measures of outcome. CONCLUSIONS: Neuropsychological deficit and psychosocial outcome are multi-dimensional entities that relate to one another in complex ways.

Activities of Daily Living↗

Challenges, status, and opportunities for studying developmental neuropathology in adult schizophrenia.

Neurodevelopmental theories of the pathoetiology of schizophrenia have been at the forefront of schizophrenia research in recent years. Support for these theories is substantial and growing. Epidemiological, phenomenological, and clinical neurobiological research have provided compelling though still circumstantial evidence. Neuropathological investigations also have provided some evidence; however, these have yet to actualize their potential for revealing the cellular and molecular nature of developmental aberrancies in this disease. This article summarizes the clinical evidence suggesting abnormal neurodevelopment in schizophrenia, outlines some of the important anatomic, cellular, and molecular mechanisms of normal central nervous system development, reviews current neuropathological findings relevant to neurodevelopment in schizophrenia, and suggests some new directions and opportunities for discovering the molecular neurodevelopmental basis of the disorder.

Atrophy↗

Alpha-synuclein cortical Lewy bodies correlate with dementia in Parkinson's disease.

BACKGROUND: Dementia is a frequent complication of idiopathic parkinsonism or PD, usually occurring later in the protracted course of the illness. The primary site of neuropathologic change in PD is the substantia nigra, but the neuropathologic and molecular basis of dementia in PD is less clear. Although Alzheimer's pathology has been a frequent finding, recent advances in immunostaining of alpha-synuclein have suggested the possible importance of cortical Lewy bodies (CLBs) in the brains of demented patients with PD. METHODS: The brains of 22 demented and 20 nondemented patients with a clinical and neuropathologic diagnosis of PD were evaluated with standard neuropathologic techniques. In addition, CLBs and dystrophic neurites were identified immunohistochemically with antibodies specific for alpha-synuclein and ubiquitin; plaques and tangles were identified by staining with thioflavine S. Associations between dementia status and pathologic markers were tested with logistic regression. RESULTS: CLBs positive for alpha-synuclein are highly sensitive (91%) and specific (90%) neuropathologic markers of dementia in PD and slightly more sensitive than ubiquitin-positive CLBs. They are better indicators of dementia than neurofibrillary tangles, amyloid plaques, or dystrophic neurites. CONCLUSION: CLBs detected by alpha-synuclein antibodies in patients with PD are a more sensitive and specific correlate of dementia than the presence of Alzheimer's pathology, which was present in a minority of the cases in this series.

Adolescent↗

Absence of neurodegeneration in the thalamus and caudate of elderly patients with schizophrenia.

The cognitive and functional deterioration observed in many 'poor-outcome' patients with schizophrenia suggests an ongoing neurodegenerative process. Diagnostic neuropathologic studies have excluded known neurodegenerative diseases as the cause of this dementia, and in a previous quantitative investigation of neurodegeneration and neural injury in this population we found no abnormalities in the cerebral cortex. However, it is possible that the deterioration observed in these patients could be due to subcortical neurodegenerative processes. Neurodegeneration and neural injury in the caudate nucleus and mediodorsal nucleus of the thalamus were investigated in a postmortem study of 11 prospectively accrued, clinically well-characterized elderly people with schizophrenia, 11 elderly control subjects with no neuropsychiatric illness, and 12 subjects with Alzheimer's disease. Traditional and immunohistochemical staining and unbiased computerized counting methods were used to quantify common markers of neurodegeneration and neural injury (neuron loss, neurofibrillary tangles, astrocytosis, microgliosis). No statistically significant differences were found between schizophrenia and control subjects for the densities of any markers. There is no evidence that abnormal neurodegeneration occurs in these two important subcortical structures.

Age Factors↗

Reduced dorsal and orbital prefrontal gray matter volumes in schizophrenia.

BACKGROUND: Converging neuroanatomic, neurophysiological, and neurobehavioral evidence implicate prefrontal subregions in schizophrenia. Neuroanatomic studies with magnetic resonance (MR) imaging enable regional volume parcellation. Inconsistent reports may relate to variable methods and small samples. We attempted to resolve volume differences within sectors of the prefrontal lobe in a large sample, relating volumes to clinical and neurocognitive features. METHODS: Magnetic resonance imaging was performed in 70 patients with schizophrenia (40 men and 30 women; 29 neuroleptic naive and 41 previously treated) and 81 healthy controls (34 men and 47 women). Gray and white matter volumes of the dorsolateral, dorsomedial, orbitolateral, and orbitomedial prefrontal cortex were quantified. Symptoms, functioning, and neurocognition were assessed concurrently. RESULTS: Reduced prefrontal gray matter volume was observed in patients. The reduction was evident for the dorsolateral area in men (9%) and women (11%), for the dorsomedial area only in men (9%), and for orbital regions only in women (23% and 10% for lateral and medial, respectively). The reduction of orbital volume in women was associated with poorer premorbid functioning, more severe negative symptoms, and depression. Volume of dorsal cortex was positively associated with better performance on abstraction and attention tasks across all groups. CONCLUSIONS: Schizophrenia is associated with reduced gray matter volume in prefrontal cortex, which affects men and women in the dorsolateral sector. The effects are moderated by sex for dorsomedial and orbital regions and are related to symptom severity and cognitive function. This is not a by-product of treatment, since the differences are evident in neuroleptic-naive patients.

Adult↗