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Biomedical subjects

S M Fry

Publications and source records attributed to S M Fry.

9 recordsLinked to original sources

Spinal abnormalities in pediatric patients: MR imaging findings compared with clinical, myelographic, and surgical findings.

Eighty-one pediatric patients with a variety of spinal disorders, including suspected dysrhaphism, scoliosis, neoplasia, and neurofibromatosis, underwent magnetic resonance (MR) imaging. The results were retrospectively compared with those of myelography followed by computed tomography (CT) and surgery. In patients with dysrhaphism, most abnormalities, including hydromyelia, inclusion tumors, and sites of cord tether, were demonstrated with MR imaging. Diastematomyelia and small hydromyelic cavities were indistinguishable on routine coronal and sagittal T1-weighted images; axial images with T2 weighting were optimal for this differentiation. MR imaging did not enable direct visualization of a thickened filum or evaluation of tethering with a thin, dorsally positioned neural placode. Congenital or severe scoliosis required lengthy studies with multiple planes of imaging or myelography and CT. Milder curvatures were readily evaluated with MR imaging, and neoplastic lesions, with the exception of intrathecal tumor seeding, were adequately defined.

Adolescent↗

Parotid masses: MR imaging.

Twenty patients with surgically proved neoplasms of the parotid gland were evaluated in order to compare contrast material-enhanced computed tomography (CT) and magnetic resonance (MR) imaging. In 14 patients both CT and MR imaging examinations were performed, while in six only MR imaging was performed. Because contrast resolution is better with MR imaging, it appears to be superior to CT in distinguishing the parotid gland from surrounding structures. Four intraparotid lesions were more conspicuous on T2-weighted MR images than on CT scans. MR imaging appears to be superior to CT for evaluating parotid masses and for distinguishing neoplasms of the parotid gland from those originating within the parapharyngeal space.

Adenoma↗

Leptomeningeal metastasis: MR imaging.

Seven patients with central nervous system neoplasia and leptomeningeal metastases, proved either at initial diagnosis or on follow-up with contrast material-enhanced computed tomography (CT), were evaluated with magnetic resonance (MR) imaging. In two patients, diffuse sulcal enhancement on CT scans was inapparent on T1- or T2-weighted MR images. Likewise, in four patients diffuse cisternal enhancement on CT scans was not identifiable with MR. Nodular or focal cisternal masses were identified with both CT and MR imaging in three patients; in two, however, MR imaging provided less information. Ependymal and subependymal metastases identified with CT (two patients) were indistinguishable on MR images from periventricular abnormalities of radiation therapy and/or hydrocephalus. These findings suggest that leptomeningeal metastasis may be so subtle or inapparent as to be overlooked with MR imaging alone. Thus, CT and MR imaging should be considered complementary techniques for initial diagnosis and follow-up of tumors with a propensity for leptomeningeal metastasis.

Adult↗

Rhesus monkey (Macaca mulatta) model in genetic toxicology mitomycin C clastogenicity in germ cells.

The value of rhesus monkeys (Macaca mulatta) as a genetic toxicology model is limited by their scarcity, expense, and impracticality of progeny testing. However, in some special circumstances, e.g., accidental exposure of humans to potential mutagens, rhesus monkeys or other primates may provide a superior animal model to help to cope with a difficult public health situation. Using the testis as a target organ we found that when primary spermatocytes were treated in pre-leptotene stage with 1 mg mitomycin C/kg body weight, the frequency of exchanges, fragments, sex-chromosome and autosomal univalents increased significantly at diakinesis-metaphase I. This response was absent in cells treated during diplotene, late pachytene or during spermatogonial stages. We suggested that animals should be evaluated not only for genetic toxicology parameters, but also toxicologically, histologically, behaviorally, for carcinogenesis and seminal cytology. Whenever possible, the animals should be recycled.

Animals↗