PubMed HealthSearch

PubMed · 2488146

Optimizing radiologic workup: an artificial intelligence approach.

Abstract

The increasing complexity of diagnostic imaging is presenting an ever expanding variety of radiologic test options to clinicians. As a result, it is becoming more difficult for referring physicians to select an appropriate sequence of tests. The current economic pressures on medicine make it particularly important that resources be used judiciously. Radiologic workup often involves a sequence of tests that lead from presenting signs and symptoms to a definitive diagnosis or intervention. This sequence ideally begins with simple, inexpensive, safe, non-invasive tests and progresses to more complex, expensive, and hazardous tests only if the simpler tests are insufficient to establish a diagnosis. DxCON is a developmental artificial intelligence-based computer system that gives advice to physicians about the optimum sequencing of radiologic tests. DxCON evaluates basic clinical information and a physician's proposed workup plan. The system then creates an analysis of the strengths and weaknesses of his plan. The domain chosen to explore computer-based workup advice is the radiologic workup of obstructive jaundice.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

H A Swett, M Rothschild, G G Weltin, P R Fisher, P L Miller. 1989. Optimizing radiologic workup: an artificial intelligence approach.. https://doi.org/10.1007/bf03168010

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Cytomegalovirus infection persists in the liver graft in the vanishing bile duct syndrome.

Cytomegalovirus infection is one factor implicated in the cause of the vanishing bile duct syndrome complicating liver transplantation. To further investigate the role of cytomegalovirus in this syndrome, we studied serial liver biopsy material by in situ hybridization for cytomegalovirus DNA using a highly sensitive technique that allows the localization of viral replication. Cytomegalovirus DNA was identified in hepatocytes in 10 of 12 patients with the vanishing bile duct syndrome, 1 of whom had no serological evidence of cytomegalovirus infection. It was also present in all 18 patients with uncomplicated cytomegalovirus infection but was not identified in any of 10 subjects with transplants who had neither complication. Nine of the patients in this series underwent a diagnostic liver biopsy at 1 wk and subsequently had cytomegalovirus infection develop; cytomegalovirus DNA was identified in liver tissue of all nine patients, indicating that cytomegalovirus replication commences at an early stage. In those with uncomplicated cytomegalovirus, infection occurred earlier (p less than 0.05) but was eliminated more quickly (p less than 0.0005), and the number of infected hepatocytes was greater (p less than 0.05) when compared with those with the vanishing bile duct syndrome; in these, cytomegalovirus DNA was detectable until death or retransplantation. Cytomegalovirus DNA was never identified in either biliary or endothelial tissue. These data indicate that the vanishing bile duct syndrome is associated with persistent cytomegalovirus replication within hepatocytes.

Cholestasis