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Biomedical subjects

M Ganesh

Publications and source records attributed to M Ganesh.

3 recordsLinked to original sources

DataFoundry: information management for scientific data.

Data warehouses and data marts have been successfully applied to a multitude of commercial business applications. They have proven to be invaluable tools by integrating information from distributed, heterogeneous sources and summarizing this data for use throughout the enterprise. Although the need for information dissemination is as vital in science as in business, working warehouses in this community are scarce because traditional warehousing techniques do not transfer to scientific environments. There are two primary reasons for this difficulty. First, schema integration is more difficult for scientific databases than for business sources, because of the complexity of the concepts and the associated relationships. While this difference has not yet been fully explored, it is an important consideration when determining how to integrate autonomous sources. Second, scientific data sources have highly dynamic data representations (schemata). When a data source participating in a warehouse changes its schema, both the mediator transferring data to the warehouse and the warehouse itself need to be updated to reflect these modifications. The cost of repeatedly performing these updates in a traditional warehouse, as is required in a dynamic environment, is prohibitive. This paper discusses these issues within the context of the DataFoundry project, an ongoing research effort at Lawrence Livermore National Laboratory. DataFoundry utilizes a unique integration strategy to identify corresponding instances while maintaining differences between data from different sources, and a novel architecture and an extensive meta-data infrastructure, which reduce the cost of maintaining a warehouse.

Computer Systems↗

Extramedullary plasmacytoma presenting as upper back pain.

Extramedullary plasmacytoma (EMP) is a rare soft tissue plasma cell tumour, usually presenting as a mass within the upper respiratory tract. It is most unusual for it to present in the posterior mediastinum as a primary solitary lesion. Discussed here is the case report of a patient who initially presented with musculoskeletal pain. Subsequent investigations, however, revealed the cause to be an EMP; diagnosis was made on finding aggregates of plasma cells on histological examination of the tissue specimen. The latter had been obtained by way of a computerised tomography scan guided biopsy of the tumour. Bone marrow aspiration studies showed no evidence of multiple myelomatosis. There was significant clinical improvement in response to radiotherapy. It is possible that this might represent one of the first documented reports of a primary solitary EMP in the posterior mediastinum.

Back Pain↗

Penetrance and expressivity of the gene for double podding in chickpea.

The double-pod per peduncle trait is known to contribute to increased seed yield in chickpea (Cicer arietinum L.). A cross was made between the single-podded variety ICCV 2 and the double-podded variety JG 62 in 1993. Penetrance and expressivity of the gene for double podding was studied in an F2 population and F10 recombinant inbred lines (RILs) of this cross. Homozygous recessive allele of this gene (ss) governs the production of double flowers and pods per peduncle. Results indicated that the s allele has unstable penetrance and variable expressivity. The penetrance of this allele was 53% for the F2 and 84.5% for the RILs. The ranges for the expression of this trait among the penetrant F2 individuals and the penetrant RILs were 1.1-14.8% and 0.1-33.0%. These were 8.3-30.8% for early sown and 17.1-68.7% for the late sown double-podded parent JG 62. Thus it appears that the allele shows greater penetrance and enhanced expressivity under soil moisture stress. In the F2 the seed yield advantage of the double-podded over the single-podded plants was 18%, whereas among the RILs it was 7%. The increased number of pods and seeds contributed to the higher yield. However, there was a slight decrease in seed size of the double-podded genotypes. An increase in the size of seed may have a role in the decreased penetrance and expressivity of this allele among the double-podded segregants of the ICCV 2 x JG 62 chickpea cross.

Alleles↗