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A D Goldfinger

Publications and source records attributed to A D Goldfinger.

2 recordsLinked to original sources

Image processing of electron micrographs for light scattering calculations.

Theoretical light scattering calculations, when applied to models based on structures seen in electron micrographs of corneal stroma, require knowledge of the constituent fibril positions and radii. Obtaining this information manually is a difficult and time-consuming task. In order to facilitate this problem, we present a simple and flexible computer algorithm that allows the process to be automated using a Macintosh computer. The accuracy of the results is checked by comparing light scattering calculations using fibril positions and radii found manually with those found by the computer. The results show that the computer algorithm is a viable and accurate means of obtaining the needed data.

Algorithms↗

Ventricle-brain ratio, computed tomographic density, and brain area in 50 schizophrenics.

A sample of 50 DSM-III-diagnosed schizophrenics (mean age, 34 years) intentionally biased to contain a relatively high proportion of persistently unemployed persons was compared with a sample of 87 normal volunteers on three computed tomographic measures. These were lateral ventricle-brain ratio, regional brain computed tomographic density values, and brain slice area. Images were made with the same computed tomographic scanner and identical scan parameters. Computed tomographic data were assessed blindly using a computer-linked image array processor and electronic planimeter. Ventricle-brain ratios were significantly higher in schizophrenics, with 28% of the patient sample exceeding 2 SDs of the control mean. Brain area measures were not associated with an enlarged ventricle-brain ratio. Contrary to our prediction, ventricular enlargement was unassociated with most negative symptom ratings, but was correlated with the absence of positive symptoms. A history of abnormal delivery and the presence of left-handedness were significant predictors of an enlarged ventricle-brain ratio on multiple regression analysis. Schizophrenics had a significantly smaller brain slice area compared with normal controls, a finding not attributable to height differences between groups. Brain slice area was inversely correlated with computed tomographic brain density across all subjects. After correction of computed tomographic density values for area using a linear regression model, no significant regional density differences were detectable between normal controls and schizophrenics. Within normal controls there was a significant relationship between social class and brain slice area, but not ventricle-brain ratio.

Adult↗