Search PubMed⌕ Search

Biomedical subjects

D G Daniel

Publications and source records attributed to D G Daniel.

56 records · Page 4Linked to original sources

The relationship of occipital skull asymmetry to brain parenchymal measures in schizophrenia.

It has long been hypothesized, but never proven that an organic brain injury early in life predisposes to schizophrenia. Since brain and cranial development are closely linked, if such an event occurred early enough in the premorbid course of schizophrenia, it could conceivably effect skull architecture. To approach this question, the occipital bone depth and the occipitomedian angle were measured in 50 patients with chronic schizophrenia and in 35 medical controls. Strong correlations emerged between the skull asymmetry indices and the occipital and temporal lobe parenchymal asymmetry indices. There were no statistically significant differences in cranial asymmetry measures between the patients with schizophrenia and the medical controls. However, when the comparison was limited to right handed individuals with homolateral sighting dominance, a weak, but statistically significant trend was observed for more symmetrical slanting along the sagittal suture in the schizophrenic patients. In addition, cranial asymmetry was weakly predictive of increased prefrontal markings in the schizophrenic patients. The congruence of skull findings with parenchymal variables suggests that certain aspects of skull and parenchymal architecture are co-determined.

Adolescent↗

Shape analysis of the middle cranial fossa of schizophrenic patients. A computerized tomographic study.

Recent morphometric studies indicate that both right and left temporal lobe volumes are reduced in schizophrenic patients. Subsequent studies suggested that this volumetric reduction is the result of focal or multifocal gray matter abnormalities. Since in early life brain growth or lack thereof influences the overlying skull configuration, we attempted to elucidate the time of onset of the temporal lobe lesion in schizophrenic patients by quantifying both the volume and shape of their middle cranial fossa. Computerized tomographic scans of 17 schizophrenic patients and an equal number of age-matched controls were digitized using a LOATS image analysis system. The middle cranial fossa was manually outlined and software routines allowed the quantification of volume and shape parameters. Our results showed that no significant differences were present between schizophrenic patients and controls. If the bilateral reduction in temporal lobe volumes in schizophrenic patients is the result of an early onset (e.g., developmental) lesion, the resultant foci of gray matter abnormality may occur distant to the base of the skull. Alternatively, tissue loss may be insufficient to alter the development of the overlying skull or to be detected by our methods.

Dominance, Cerebral↗