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B T Woods

Publications and source records attributed to B T Woods.

At least 19 recordsLinked to original sources

Neurologic signs of cerebellar and cortical sensory dysfunction in schizophrenics and their relatives.

Previous research has found that both schizophrenics and their relatives have significantly elevated rates of clinical neurologic signs--including 'hard' signs screened to exclude artifacts. The present study examined whether hard signs that indicate relatively localized dysfunction in particular brain regions significantly distinguish schizophrenics and/or their non-schizophrenic relatives from psychiatrically normal controls and patients with other disorders. All patients were diagnosed with DSM-III or DSM-IIIR criteria, using information from structured interviews, supplemented by chart review and family informants. Subjects were administered clinical neurologic examinations by a neurologist blind to diagnosis. The proband sample, composed of 54 schizophrenic or schizoaffective subjects, had a significantly greater proportion of subjects with signs of cerebellar dysfunction than any of the comparison samples, which included: 44 control subjects, 24 patients with substance abuse, 37 patients with bipolar disorder, and 73 of the probands' non-schizophrenic parents and adult siblings. Proportions of both probands and their relatives with signs of dysfunction of sensory cortex were significantly higher than for other groups. Cerebellar and sensory cortical dysfunctions may distinguish different subgroups of schizophrenics and may tend to reflect, respectively, non-familial and familial neuropathological factors.

Adult↗

Is schizophrenia a progressive neurodevelopmental disorder? Toward a unitary pathogenetic mechanism.

OBJECTIVE: The author 1) reassesses the case against a neuronal degeneration hypothesis for schizophrenia; 2) demonstrates that the hypothesis that schizophrenia is a disorder caused by early (i.e., pre- or perinatal) and static (i.e., fixed, nonprogressive) damage to the brain is unsatisfactory because it cannot readily account for brain imaging results from schizophrenic patients and lacks both satisfactory clinical examples and experimental models of early, static developmental disorders resulting in the late spontaneous functional deterioration that characterizes schizophrenia; and 3) offers an alternative pathogenetic hypothesis for schizophrenia that is consistent with the available imaging and neuropathological data. METHOD: Published data on schizophrenia and relevant clinical and experimental studies of neurodevelopment and its disorders are reviewed. RESULTS: The neuropathological studies provide strong evidence against a classic neurodegenerative pathogenesis of schizophrenia and moderate support for prenatal developmental abnormalities. The imaging data provide strong evidence that excessive brain volume loss occurs after maximum brain volume expansion and equivocal evidence that it continues after onset of overt illness. The available clinical and experimental models of late deterioration after static, early brain lesions are unconvincing. A progressive developmental mechanism can reconcile the neuropathological and imaging data, while being compatible with both early onset and late deterioration. CONCLUSIONS: It matters whether the pathogenetic agent in schizophrenia is static or progressive, since if it is the latter it is worthwhile to search not only for means of prevention but also for interventions that will arrest progression as early as possible.

Apoptosis↗

MRI brain abnormalities in chronic schizophrenia: one process or more?

It has been suggested that schizophrenia is primarily a prefrontal-temporal-limbic circuitry disorder. Further, it has been argued that primary neurologic vulnerability to the illness is established only during early stages of brain development and is not progressive. We tested the hypothesis of whether brain volume losses in prefrontal and temporal-limbic regions have occurred either before or after brain growth was hypothesized to be complete in schizophrenia. Nineteen chronic schizophrenic patients and 19 age- and sex-matched normal controls underwent magnetic resonance imaging (MRI). All scans were segmented into gray and white matter and cerebrospinal fluid (CSF) compartments for the frontal and temporal lobes and posterior cerebral hemispheres. Multivariate analysis of variance was used to analyze absolute intracranial cerebrum and subregion volumes, i.e., gray, white and CSF, absolute tissue (i.e., gray plus white) volumes, and tissue to intracranial volume (TCV) ratios. Patients showed significant intracranial volume reductions only in the frontal lobes but highly significantly lower TCV ratios (i.e., greater relative tissue loss) in all three major regions. It is suggested that the observed decreases in frontal intracranial volumes reflect a pathologic process in schizophrenia that impacted the frontal regions before brain growth was complete. We hypothesize that the generalized lower patient TCV ratios are attributable to a process that affected the whole cerebrum over a time period after brain volume had reached its maximum levels.

Adult↗

Brain alcohol detectability increase with repeated administration in humans: a proton spectroscopy study.

Proton MRS was used to detect brain alcohol after repeated alcohol exposure in human subjects. MRS detectability measurements were made after administration of an alcoholic drink (0.6 g/kg alcohol) and after an identical drink administrated 6 h later. Between-drink differences in the methyl proton triplet resonance of ethyl alcohol were assessed at statistically equivalent and near-peak blood alcohol concentrations (reflecting brain alcohol concentrations) and statistically equivalent internal standard N-acetyl resonance areas after Drinks 1 and 2, respectively. Brain alcohol detectability was not altered in TE 30-ms spectra but was increased in all five subjects after Drink 2 by an average of 70% in TE 270-ms spectra (p < 0.01). This was accompanied by significant between-drink differences in subjective ratings of alcohol's effects, suggestive of induction of acute alcohol tolerance. These findings suggest increased brain alcohol detectability in TE 270-ms spectra after repeated alcohol exposure that may reflect acute alcohol tolerance.

Adult↗

Frontal brain volume and context effects in short-term recall in schizophrenia.

In a group of schizophrenic patients, magnetic resonance imaging (MRI) measures of relative frontal brain volume (total frontal volume/total cerebral volume) correlated highly with the capacity to use context as an aid to recall in a verbal memory task. The dorsolateral area of the prefrontal cortex appears to have contributed most to this effect. Recall of simple word lists without contextual features revealed no correlation with relative frontal volume. With increasing contextual organization of the material, correlations between frontal volume and recall scores increased significantly. These findings are consistent with the general proposition that impairment in the use of informational redundancy is a significant component of schizophrenic pathology.

Adult↗

MRI abnormalities in major psychiatric disorders: an exploratory comparative study.

MRI scan reports from 536 psychiatric inpatients in 10 DSM-III-R diagnostic categories and 51 normal control subjects were reviewed for incidence and severity of four types of abnormality: deep white matter hyperintensities, periventricular hyperintensities, ventricular enlargement, and cortical atrophy. Multivariate analysis revealed significant effects for both diagnosis and age and a significant interaction. After age covariance, the most discriminant type of abnormality was ventricular enlargement, with normal control subjects having significantly less enlargement than 6 of 10 patient groups, including the personality disorder and the depressed nonpsychotic groups. The data also suggested important diagnosis by age by type-of-abnormality interactions deserving of further study.

Adult↗

Relationship of prefrontal and temporal lobe MRI measures to neuropsychological performance in chronic schizophrenia.

This preliminary study focused on the relationship between prefrontal and temporal lobe MRI measures and neuropsychological performance in chronic schizophrenia. Seventeen schizophrenic inpatients received an MRI and a neuropsychological test battery after clinical stabilization, on average 2 months after admission. The central finding was a significant inverse correlation between neurocognitive measures of prefrontal function and dorsolateral prefrontal cortex (DLPFC) area, strongest in the left hemisphere. Neurocognitive performance did not correlate significantly with orbital frontal area or total temporal lobe volume. The correlations of neuropsychological performance with total frontal volume and whole brain volume were generally not significant, although the pattern was similar to that associated with the DLPFC. Because a number of executive-attention and abstraction measures were significantly associated with the DLPFC, dysfunctions of this region may underlie a syndrome of cognitive dysfunctions. Long-term memory functions were also significantly correlated with the DLPFC, raising the possibility that recall memory defects in schizophrenia are, in part, associated with prefrontal contributions of attention, abstract reasoning, and executive function. This study needs replication with a larger sample of patients and more comprehensive volumetric morphometric analyses.

Adolescent↗

In vivo proton magnetic resonance spectroscopy detection of human alcohol tolerance.

Alcohol tolerance was ascertained with in vivo proton magnetic resonance spectroscopy (MRS) in men who regularly consumed either large (10-20 drinks/week) or small (2-4 drinks/weeks) amounts of beverage alcohol. Brain ethanol concentrations were determined by MRS, and blood ethanol levels were measured by gas chromatography after controlled ethanol administration (0.8 g/kg). Brain-blood ethanol concentration ratios for heavy drinkers were significantly greater than ratios for occasional drinkers (P < 0.002). Inasmuch as ethanol tolerance covaries with the severity of dependence, MRS procedures may facilitate our understanding of alcohol tolerance and treatment of alcoholism.

Adult↗

In vivo proton magnetic resonance spectroscopy of alcohol in rhesus monkey brain.

Brain alcohol was measured in rhesus monkeys (Macaca mulatta) by proton magnetic resonance spectroscopy (MRS) following acute nasogastric alcohol administration (0.8 g/kg). Monkeys were anesthetized with ketamine and xylazine. A 1.5 T whole body imager and a 3-inch surface coil were used to acquire TE 30 and 270 ms spectra from a 7.5 cc voxel localized with a stimulated echo (STEAM) sequence. Venous blood samples were collected during spectral acquisitions for gas chromatographic determination of temporally concordant blood alcohol levels (BALs). Acute alcohol administration did not alter the resonance areas of N-acetylaspartate/N-acetyl containing compounds (NAA), choline containing compounds, or total creatine. The NAA resonance was used as an internal standard to calculate approximate brain alcohol concentrations, which averaged 27 +/- 3% and 27 +/- 8% of temporally concordant BALs (T2-corrected TE 30 and TE 270 ms spectra, respectively). In addition to reconfirming results from prior studies finding incomplete detection of brain alcohol with MRS, these results demonstrate the feasibility of measuring brain alcohol in anesthetized nonhuman primates to examine relationships between alcohol exposure history and MRS-visibility of brain alcohol.

Animals↗

A nonferrous instrumental joystick device for recording behavioral responses during magnetic resonance imaging and spectroscopy.

A nonferrous joystick device was developed to permit subjects to continuously report ethanol-induced alterations in subjective mood states while undergoing a magnetic resonance imaging (MRI) and magnetic resonance spectroscopy (MRS) procedure. The device utilizes air pressure (supplied by a small compressor) that is directed to a series of tubes that terminate in a hand-held unit. The hand-held unit easily fits inside the magnet and resembles a standard computer game joystick except that the ends of the air hoses replace the buttons. The control unit contains three pressure transducers, which are triggered when the tubes are occluded by the subject, activating different pens on an event marker located 6 m from the whole body imager. The unit is safe to use inside a 1.5-Tesla magnetic field and does not disrupt the MRI and MRS recording procedures. Subjective reports of ethanol-induced euphoria and intoxication paralleled the MRS detection of ethanol in the brain. This device could prove to be useful in numerous behavioral studies involving whole-body MRI and MRS.

Adult↗

Pituitary volume in men with concurrent heroin and cocaine dependence.

Pituitary gland volume was measured in 16 men between the ages of 26-33 with magnetic resonance imaging. Eight male patients had a Diagnostic and Statistical Manual III-Revised, American Psychiatric Association Axis I diagnosis of concurrent opioid and cocaine dependence. The average duration of opioid and cocaine abuse was 7.8 +/- 2.0 and 6.9 +/- 1.4 yr, respectively. All patients were in good physical health as determined by physical examination, blood chemistry, hemogram and hormone analysis, and all tested negatively for the HIV antibody. No patient had any other Diagnostic and Statistical Manual III-Revised Axis I diagnosis or neurological disorder. Eight healthy males served as age-matched control subjects. None of the control subjects had any past or current history of substance abuse or any clinical indication for magnetic resonance imaging. Opioid and cocaine dependent men had significantly larger pituitary gland volumes (730.0 +/- 24.4 mm3) than control subjects (540.0 +/- 26.6 mm3) (P < 0.01). The significant increase in pituitary gland volume in men who abuse opiates and cocaine may be antecedent to detection of abnormal anterior pituitary hormone function.

Adult↗

Induced and spontaneous seizures in man produce increases in regional brain lipid detected by in vivo proton magnetic resonance spectroscopy.

Elevations of brain concentrations of arachidonic acid and other free fatty acids (FFAs) by seizures induced in animals were demonstrated some years ago. Similarly, large shifts of potassium (K+) from intra- to extracellular space during seizure activity have been documented in numerous studies. More recent studies of cell membrane function demonstrated a direct effect of FFAs on membrane K+ conductance, suggesting that FFAs may play a primary role in seizure evolution in brain tissue. Using electroconvulsive therapy (ECT), in which generalized seizures are induced in patients by passage of electrical current, as a controlled human model of seizures, we studied the in vivo biochemical effects of single generalized seizures with localized proton magnetic resonance spectroscopy (1H MRS). We found that ECT reliably induces an elevation in the lipid signal that resonates at approximately 1.2 ppm. We observed a similar increase in brain lipids in a patient with temporal lobe epilepsy temporarily off medication; the signal disappeared after re-medication. Similar observations were noted for a subject with focal gliosis bordering a resected brain tumor. Finally, acute alcohol effects seem also to induce observable lipid changes. The 1H MRS technique does not yet permit direct identification of the specific lipids involved but analysis of cerebrospinal fluid obtained by lumbar puncture before and immediately after ECT may permit more precise characterization of the observed lipid increases. Theoretical and clinical implications of these results for the study of brain FFAs and epilepsy will be discussed.

Brain↗

Visualization of water movement in the living rabbit eye.

Water enriched with the stable isotope 17O (H2(17)O) shortens the transverse relaxation time (T2) of protons in water and can therefore be used as the contrast agent for proton magnetic resonance (MR) imaging. This agent can be given topically or intravenously to demonstrate water movement in the eye. Topical H2(17)O (0.05-0.1 ml/eye, 10% enrichment) entered the anterior chamber within 5 min and dissipated from the chamber in a single-exponential fashion (flow-rate constant k = 0.1 min-1), principally due to an exchange with the iridic circulation. No H2(17)O was detected in the vitreous. Intravenous administration of H2(17)O (1 ml/kg, 10% enrichment) resulted in rapid entry (less than 20 min) of the agent into the aqueous chamber. Again, no H2(17)O was detected in the vitreous. The lens region, on the other hand, showed an increase in image intensity with time that reached a plateau after 40 min. Although these findings are preliminary, acetazolamide (20 mg/kg injected intravenously) appeared to affect iridic circulation, possibly through vasoconstriction. Potential application of this H2(17)O-enhanced MR imaging technique is discussed.

Administration, Topical↗

Quantitative magnetic resonance imaging in heroin- and cocaine-dependent men: a preliminary study.

Quantitative magnetic resonance imaging (MRI) of the brain was performed in nine drug-dependent men with a primary diagnosis of opioid and/or cocaine dependence, and 10 age-matched, non-drug-dependent controls. Individuals were screened for the presence of gross cerebral abnormalities before T1 and T2 analyses. Regional T1 and T2 times were calculated on a single 5-mm thick axial slice positioned just below the caudal margin of the lateral ventricles, passing through the caudate and putamen. A voxel of interest (VOI) cursor was placed bilaterally within the putamen, caudate, frontal gray matter, frontal white matter, or posterior white matter. T1 and T2 values were determined for each VOI using an iterative chi 2 minimization program. T1 and T2 relaxation times did not differ significantly between the subject groups in any brain region studied. These results suggest that T1 and T2 relaxation times may not identify microstructural central nervous system changes resulting from chronic opiate and cocaine abuse.

Adult↗

Shape of the myopic eye as seen with high-resolution magnetic resonance imaging.

We have obtained multislice magnetic resonance (MR) images of the eye and calculated ocular dimensions along the three cardinal axes: antero-posterior (A-P), equatorial, and vertical. We found no difference in the shape of hyperopic (average refractive error: +3.72 D) and emmetropic eyes, both of which had an equatorial diameter longer than the A-P and vertical diameters. Myopic eyes (average refractive error: -6.54 D) were larger than hyperopic eyes, and most had the same spheroelliptical shape as that of the emmetropic and hyperopic eyes. The results suggest that during myopic progression an overall enlargement or a radial volume expansion has occurred.

Adult↗