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What is “Biomedical Informatics”?

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What is “Biomedical Informatics”?


Biomedical Informatics

Biomedical informatics (BMI) is the interdisciplinary field that studies and pursues the effective uses of biomedical data, information, and knowledge for scientific inquiry, problem solving, and decision making, motivated by efforts to improve human health.


Biomedical Informatics:Corollaries to the Definition

  • BMI develops, studies and applies theories, methods and processes for the generation, storage, retrieval, use, and sharing of biomedical data, information, and knowledge.

  • BMI builds on computing, communication and information sciences and technologies and their application in biomedicine.


Biomedical Informatics:Corollaries to the Definition

  • BMI investigates and supports reasoning, modeling, simulation, experimentation and translation across the spectrum from molecules to populations, dealing with a variety of biological systems, bridging basic and clinical research and practice, and the healthcare enterprise.

  • BMI, recognizing that people are the ultimate users of biomedical information, draws upon the social and behavioral sciences to inform the design and evaluation of technical solutions and the evolution of complex economic, ethical, social, educational, and organizational systems.


Biomedical Informatics in Perspective

Imaging Informatics

Clinical

Informatics

Public Health Informatics

Bioinformatics

Applied Research

And Practice

Biomedical Informatics Methods, Techniques, and Theories

Basic Research

Biomedical Informatics ≠ Bioinformatics


Computer Science (software)

Computer Science (hardware)

Cognitive Science

& Decision Making

Bioengineering

Epidemiology

And Statistics

Management

Sciences

Clinical

Sciences

Basic Biomedical

Sciences

Interdisciplinary Nature ofBiomedical Informatics

Biomedical

Informatics


Biomedical Informatics Textbook (4th edition)

Springer Verlag - 2013


Biomedical Informatics in Perspective

Applied Research

And Practice

Molecular and

Cellular

Processes

Tissues and

Organs

Individuals

(Patients)

Populations

And Society

Biomedical Informatics Methods, Techniques, and Theories

Basic Research

Biomedical Informatics ≠ Health Informatics

Health Informatics

Imaging Informatics

Clinical Informatics

Public Health Informatics

Bioinformatics


Biomolecular

Imaging

Biomedical Informatics in Perspective

Biomedical Informatics Methods, Techniques, and Theories

Basic Research

Consumer Health

Pharmaco-genomics

Imaging Informatics

Clinical Informatics

Public Health Informatics

Bioinformatics

Applied Research

And Practice

Continuum with “Fuzzy” Boundaries

Molecular and

Cellular

Processes

Tissues and

Organs

Individuals

(Patients)

Populations

And Society


Biomedical Informatics in Perspective

Biomedical Informatics Methods, Techniques, and Theories

Basic Research

Clinical Translational Science

Imaging Informatics

Clinical Informatics

Public Health Informatics

Bioinformatics

Applied Research

And Practice

Continuum with “Fuzzy” Boundaries

Molecular and

Cellular

Processes

Tissues and

Organs

Individuals

(Patients)

Populations

And Society


Contribute to...

Computer

Science

Draw upon….

Contributes to….

Clinical or Biomedical Domain of Interest

Draws upon….

Biomedical Informatics in Perspective

Biomedical Informatics Methods, Techniques, and Theories

Other

Component

Sciences

Management

Sciences

Information

Sciences

Decision

Science

Cognitive

Science

Applied Informatics


Education and Experience at Both Levels

Contributions

Expected

Imaging Informatics

Clinical

Informatics

Public Health Informatics

Bioinformatics

Applied Research

Education of BiomedicalInformatics Researchers

Biomedical Informatics Methods, Techniques, and Theories

Basic Research


Biomedical and Clinical Research

Electronic Health Records

Regional and National Public Health and Disease Registries

Providers Caring for Patients

Standards for Prevention and Treatment

Information, Decision-Support, and Order-Entry Systems

Creation of Protocols, Guidelines, and Educational Materials

An Envisioned Cycle That Ties Patient Care with Knowledge Creation and Dissemination

A “Learning Healthcare System”


BMI

Clinical Systems Companies

Biomedical Informatics

Training, Research and

Development

Hospitals, Health

Systems, Practices,

Healthcare Industry

  • Academia

  • Research Institutes

  • Corporate Research Labs

Academic Medical Centers

Biomedical Research

Community

HIT

BMI and HIT

PEOPLE

IDEAS

METHODS

SOFTWARE


BMI

Clinical Systems Companies

Biomedical Informatics

Training, Research and

Development

Hospitals, Health

Systems, Practices,

Healthcare Industry

  • Academia

  • Research Institutes

  • Corporate Research Labs

Academic Medical Centers

HIT

BMI and HIT

Synergies


BMI

HIT

BMI and HIT


AMIA:The Professional Home for Biomedical and Health Informatics


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