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Biomedical subjects

Kartik Vishwanath

Publications and source records attributed to Kartik Vishwanath.

2 recordsLinked to original sources

MachineProse: an ontological framework for scientific assertions.

OBJECTIVE: The idea of testing a hypothesis is central to the practice of biomedical research. However, the results of testing a hypothesis are published mainly in the form of prose articles. Encoding the results as scientific assertions that are both human and machine readable would greatly enhance the synergistic growth and dissemination of knowledge. DESIGN: We have developed MachineProse (MP), an ontological framework for the concise specification of scientific assertions. MP is based on the idea of an assertion constituting a fundamental unit of knowledge. This is in contrast to current approaches that use discrete concept terms from domain ontologies for annotation and assertions are only inferred heuristically. MEASUREMENTS: We use illustrative examples to highlight the advantages of MP over the use of the Medical Subject Headings (MeSH) system and keywords in indexing scientific articles. RESULTS: We show how MP makes it possible to carry out semantic annotation of publications that is machine readable and allows for precise search capabilities. In addition, when used by itself, MP serves as a knowledge repository for emerging discoveries. A prototype for proof of concept has been developed that demonstrates the feasibility and novel benefits of MP. As part of the MP framework, we have created an ontology of relationship types with about 100 terms optimized for the representation of scientific assertions. CONCLUSION: MachineProse is a novel semantic framework that we believe may be used to summarize research findings, annotate biomedical publications, and support sophisticated searches.

Artificial Intelligence↗

OntoDiagram: automatic diagram generation for congenital heart defects in pediatric cardiology.

In pediatric cardiology as well as many other medical specialties, the accurate portrayal of a large volume of patient information is crucial to providing good patient care. Our research aims at utilizing clinical and spatial ontologies representing the human heart, to automatically generate a Mullins-like diagram based on a patient's information in the cardiology databases. Our ontology allows an intuitive way of modeling congenital defects with the structure of the human heart. A prototype system has been implemented using Protege and the Java Advanced Imaging package , and is currently under testing at the Children's Mercy Hospitals and Clinics. A pilot study showed the diagrammatical representation and characterization of congenital heart defects can be used to facilitate a better understanding of a complex congenital heart defects.

Anatomy, Cross-Sectional↗