A Self-scaling,Distributed Information Architecture for Public Health,Research, and Clinical Care |
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Authors: | Andrew J. McMurry Clint A. Gilbert Ben Y. Reis Henry C. Chueh Isaac S. Kohane Kenneth D. Mandl |
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Affiliation: | aChildren’s Hospital Informatics Program at the Harvard–MIT Division of Health Sciences and Technology, Boston, MA;bDana-Farber/Harvard Cancer Center, Boston, MA;cHarvard Medical School, Boston, MA;dLaboratory of Computer Science, Massachusetts General Hospital, Boston, MA. |
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Abstract: |
ObjectiveThis study sought to define a scalable architecture to support the National Health Information Network (NHIN). This architecture must concurrently support a wide range of public health, research, and clinical care activities.Study DesignThe architecture fulfils five desiderata: (1) adopt a distributed approach to data storage to protect privacy, (2) enable strong institutional autonomy to engender participation, (3) provide oversight and transparency to ensure patient trust, (4) allow variable levels of access according to investigator needs and institutional policies, (5) define a self-scaling architecture that encourages voluntary regional collaborations that coalesce to form a nationwide network.ResultsOur model has been validated by a large-scale, multi-institution study involving seven medical centers for cancer research. It is the basis of one of four open architectures developed under funding from the Office of the National Coordinator of Health Information Technology, fulfilling the biosurveillance use case defined by the American Health Information Community. The model supports broad applicability for regional and national clinical information exchanges.ConclusionsThis model shows the feasibility of an architecture wherein the requirements of care providers, investigators, and public health authorities are served by a distributed model that grants autonomy, protects privacy, and promotes participation. |
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