PubMed HealthSearch

Biomedical subjects

S Aronow

Publications and source records attributed to S Aronow.

7 recordsLinked to original sources

Iron content of pigmented villonodular synovitis detected by computed tomography.

Pigmented villonodular synovitis is a rare lesion in which iron is accumulated. A CT scan performed on one such lesion demonstrated significantly increased attenuation values. We have calculated the amount of iron which would have to be added to muscle tissue in order to produce this increase in density. We have also measured the iron content directly. The close agreement of these two figures suggests that the observed density increase is due to the iron content of the lesion.

Adult

Computed tomography scanning for the measurement of bone mineral in the human spine.

An investigation into the feasibility of using X-ray computed tomography (CT) to measure disease induced changes in bone mineral content of the human spine is described. A theoretical study of this type of measurement has been made using a mathematical model of osteomalacia. The measured EMI number changes linearly with the mineral content, and the sensitivity is shown to be 1.2 EMI units (EU: 500 scale)/1% change in mineral content in vertebral bone. The physical sensitivity to an equal mineral change in cortical bone is found to be 8.6 times greater. The mineral selectivity of the CT method is such that only about half the change in the EMI number arising from progressive osteomalacia reflects change in actual mineral content, while half is due merely to changes in bone density that accompany demineralization. In addition, the perturbing effects of beam hardening on measurement accuracy are evaluated and shown to be significant. Finally, an experimental measurement indicates that in practice the reproducibility of such measurements would be about 1 EU, and it is shown that the measured parameter correlates well with the calculated total linear attenuation coefficients.

Bone and Bones

Attenuation measurements of whole blood and blood fractions in computed tomography.

Computed tomography (CT) provides an extraordinarily effective means of diagnosing intracranial hemorrhages. Normal blood has a relatively high x-ray attenuation in the circulation and following extravasation, permitting the discrimination by CT of many pathologically enlarged vascular spaces containing circulating blood and/or blood clot (such as arteriovenous malformations and large aneurysms) in addition to recent hemorrhages, from continguous anatomical structures. To promote further understanding of the factors contributing to the attenuation of blood in normal and abnormal states. the attenuations of various preparations of whole blood and blood fractions were investigated in further detail.

Blood