Difference between revisions of "CTSC:education Cardiology"

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Back to [[Collaboration:Harvard_CTSC|Collaboration:Harvard_CTSC]] <br>
 
Back to [[Collaboration:Harvard_CTSC|Collaboration:Harvard_CTSC]] <br>
  
=Proposed structure for the Cardiovascular Imaging half-day sessions (Monday March 22nd, BWH and Tuesday March 23rd, MGH)=
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=Cardiovascular Imaging =
  
 
===First lecture: Imaging biomarkers overview (15 min including questions) ===
 
===First lecture: Imaging biomarkers overview (15 min including questions) ===
  
* Speaker BWH 3/22: pending
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* Speaker MGH 3/23: pending
 
  
 
===Second lecture: Clinical research with cardiovascular ultrasound (30 min including questions)===
 
===Second lecture: Clinical research with cardiovascular ultrasound (30 min including questions)===
  
* Speaker BWH 3/22: Todd Perlstein
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* Speaker MGH 3/23: Todd Perlstein
 
  
 
===Third lecture: Clinical research with cardiovascular MRI (35 min including questions)===
 
===Third lecture: Clinical research with cardiovascular MRI (35 min including questions)===
  
* Speaker BWH 3/22: Neil Rofsky
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* Speaker MGH 3/23: Neil Rofsky
 
  
 
===Fourth lecture: Life cycle of medical imaging data (15 min including questions)===
 
===Fourth lecture: Life cycle of medical imaging data (15 min including questions)===
 
   
 
   
* Speaker BWH 3/22: Valerie Humblet
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* Speaker MGH 3/23: Valerie Humblet
 
  
 
=== Fifth lecture: Clinical research with cardiovascular CT (30 min including questions)===
 
=== Fifth lecture: Clinical research with cardiovascular CT (30 min including questions)===
 
   
 
   
* Speaker BWH 3/22: Ron Blankstein
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* Speaker MGH 3/23: Udo Hoffman
 
  
 
=== Sixth lecture: Clinical research with cardiovascular nuclear imaging (30 min including questions)===
 
=== Sixth lecture: Clinical research with cardiovascular nuclear imaging (30 min including questions)===
 
   
 
   
* Speaker: Marcello Di Carli (3/22), Henry Gewirtz (3/23)
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=== Seventh lecture: Overview of utilizing the Harvard Catalyst Imaging Resources (15 min including questions/wrap up)===
 
=== Seventh lecture: Overview of utilizing the Harvard Catalyst Imaging Resources (15 min including questions/wrap up)===
 
   
 
   
* Speaker: Valerie Humblet
 
  
=Regarding goals to share with the individual imaging modality speakers=
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==Goals to share with the individual imaging modality speakers==
 
   
 
   
 
* To provide a brief technical overview of the imaging modality.
 
* To provide a brief technical overview of the imaging modality.
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* To address subject safety issues with that modality
 
* To address subject safety issues with that modality
  
1) The participant will develop an understanding of the basic principles of the use of imaging biomarkers in clinical research.
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==Learning objectives==
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* The participant will develop an understanding of the basic principles of the use of imaging biomarkers in clinical research.
 
   
 
   
2) The participant will become familiar with the application of cardiovascular ultrasound, magnetic resonance imaging, computed tomography, and nuclear imaging in clinical research.
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* The participant will become familiar with the application of cardiovascular ultrasound, magnetic resonance imaging, computed tomography, and nuclear imaging in clinical research  
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    or divided into individual components
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* The participant will understand the clinical imaging resources that are available through the Harvard Clinical and Translational Sciences Center (The Harvard Catalyst) Imaging Core.
 
    3) The participant will become familiar with the application of cardiovascular magnetic resonance imaging in clinical research.
 
 
    4) The participant will become familiar with the application of cardiovascular computed tomography in clinical research.
 
 
    5) The participant will become familiar with the application of cardiovascular nuclear imaging in clinical research.
 
 
6 (or 3)) The participant will understand the clinical imaging resources that are available through the Harvard Clinical and Translational Sciences Center  
 
    (The Harvard Catalyst) Imaging Core.
 
 
   
 
   
7 (or 4)) The participant will develop a basic understanding of the life cycle of medical imaging data.
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* The participant will develop a basic understanding of the life cycle of medical imaging data.

Latest revision as of 15:19, 28 June 2010

Home < CTSC:education Cardiology

Back to Collaboration:Harvard_CTSC

Cardiovascular Imaging

First lecture: Imaging biomarkers overview (15 min including questions)

Second lecture: Clinical research with cardiovascular ultrasound (30 min including questions)

Third lecture: Clinical research with cardiovascular MRI (35 min including questions)

Fourth lecture: Life cycle of medical imaging data (15 min including questions)

Fifth lecture: Clinical research with cardiovascular CT (30 min including questions)

Sixth lecture: Clinical research with cardiovascular nuclear imaging (30 min including questions)

Seventh lecture: Overview of utilizing the Harvard Catalyst Imaging Resources (15 min including questions/wrap up)

Goals to share with the individual imaging modality speakers

  • To provide a brief technical overview of the imaging modality.
  • To provide an overview of the imaging biomarkers that the modality can generate.
  • To provide one or two specific examples of the use of that modality in answering a clinical research question.
  • To provide an overview of technical and / or logistical issues in utilizing the modality.
  • Cost?
  • To address subject safety issues with that modality

Learning objectives

  • The participant will develop an understanding of the basic principles of the use of imaging biomarkers in clinical research.
  • The participant will become familiar with the application of cardiovascular ultrasound, magnetic resonance imaging, computed tomography, and nuclear imaging in clinical research
  • The participant will understand the clinical imaging resources that are available through the Harvard Clinical and Translational Sciences Center (The Harvard Catalyst) Imaging Core.
  • The participant will develop a basic understanding of the life cycle of medical imaging data.