Skip to main content

Main menu

  • Home
  • Content
    • Current
    • Ahead of print
    • Past Issues
    • JNM Supplement
    • SNMMI Annual Meeting Abstracts
    • Continuing Education
    • JNM Podcasts
  • Subscriptions
    • Subscribers
    • Institutional and Non-member
    • Rates
    • Journal Claims
    • Corporate & Special Sales
  • Authors
    • Submit to JNM
    • Information for Authors
    • Assignment of Copyright
    • AQARA requirements
  • Info
    • Reviewers
    • Permissions
    • Advertisers
  • About
    • About Us
    • Editorial Board
    • Contact Information
  • More
    • Alerts
    • Feedback
    • Help
    • SNMMI Journals
  • SNMMI
    • JNM
    • JNMT
    • SNMMI Journals
    • SNMMI

User menu

  • Subscribe
  • My alerts
  • Log in
  • Log out
  • My Cart

Search

  • Advanced search
Journal of Nuclear Medicine
  • SNMMI
    • JNM
    • JNMT
    • SNMMI Journals
    • SNMMI
  • Subscribe
  • My alerts
  • Log in
  • Log out
  • My Cart
Journal of Nuclear Medicine

Advanced Search

  • Home
  • Content
    • Current
    • Ahead of print
    • Past Issues
    • JNM Supplement
    • SNMMI Annual Meeting Abstracts
    • Continuing Education
    • JNM Podcasts
  • Subscriptions
    • Subscribers
    • Institutional and Non-member
    • Rates
    • Journal Claims
    • Corporate & Special Sales
  • Authors
    • Submit to JNM
    • Information for Authors
    • Assignment of Copyright
    • AQARA requirements
  • Info
    • Reviewers
    • Permissions
    • Advertisers
  • About
    • About Us
    • Editorial Board
    • Contact Information
  • More
    • Alerts
    • Feedback
    • Help
    • SNMMI Journals
  • View or Listen to JNM Podcast
  • Visit JNM on Facebook
  • Join JNM on LinkedIn
  • Follow JNM on Twitter
  • Subscribe to our RSS feeds
Meeting ReportTechnologist Abstracts

Count statistics of myocardial perfusion imaging using solid-state cadmium-zinc-telluride technology

Ted Pozniakoff, Andrew Einstein, Sabahat Bokhari and Ketan Bhatia
Journal of Nuclear Medicine May 2011, 52 (supplement 1) 2305;
Ted Pozniakoff
1Nuclear Cardiology, New York-Presbyterian Hosp, New York, NY
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Andrew Einstein
1Nuclear Cardiology, New York-Presbyterian Hosp, New York, NY
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Sabahat Bokhari
1Nuclear Cardiology, New York-Presbyterian Hosp, New York, NY
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Ketan Bhatia
1Nuclear Cardiology, New York-Presbyterian Hosp, New York, NY
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • Article
  • Info & Metrics
Loading

Abstract

2305

Objectives Anger camera technology has been a mainstay in nuclear medicine, but it is relatively count inefficient. A new generation of cameras using high sensitivity, high resolution, solid-state detectors CZT (cadmium-zinc-telluride) with improved count detection efficiency is now available. This may offer a shorter imaging time and/or reduction of administered dose, however few data are available about the count statistics of such systems.

Methods We evaluated a cohort of 20 consecutive patients undergoing myocardial perfusion imaging on CZT. This cohort consisted of 10 male patients (mean age 57, range 43-76) and 10 female patients (mean age 49, range 30-66). For each patient, a region of interest (ROI) was placed around the myocardium (“target”), as well as in the superior mediastinum (“background”). Target to background ratios, target count density, and maximum counts per pixel were assessed for each patient, and compared to previously published data for dual headed SPECT gamma cameras.

Results Typical 30mCi 99mTc Sestamibi doses take 16 minutes acquisition on an Anger Camera to yield acceptable image quality and count density (100 max counts per pixel, or more). Similar studies on the CZT system with the same dose but a 3 minute acquisition yielded higher count densities (mean 588 max counts per pixel, range 438 - 956). Also “Low Dose” MIBI protocols (mean dose 9.8 mCi, range 9.0 to 12.0 mCi), the CZT camera imaged for 5 minutes which yielded a count density of (277.6 mean max counts per pixel, range 143 - 460). Background to target ratios were (mean 35.3 %, range 23.9 - 49.5). Image quality remained adequate and provided diagnostic images.

Conclusions Higher efficiency of the CZT system may allow us to develop shorter acquisition times or lower radiation dose to the patient while maintaining image quality

Back to top

In this issue

Journal of Nuclear Medicine
Vol. 52, Issue supplement 1
May 2011
  • Table of Contents
  • Index by author
Article Alerts
Sign In to Email Alerts with your Email Address
Email Article

Thank you for your interest in spreading the word on Journal of Nuclear Medicine.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
Count statistics of myocardial perfusion imaging using solid-state cadmium-zinc-telluride technology
(Your Name) has sent you a message from Journal of Nuclear Medicine
(Your Name) thought you would like to see the Journal of Nuclear Medicine web site.
Citation Tools
Count statistics of myocardial perfusion imaging using solid-state cadmium-zinc-telluride technology
Ted Pozniakoff, Andrew Einstein, Sabahat Bokhari, Ketan Bhatia
Journal of Nuclear Medicine May 2011, 52 (supplement 1) 2305;

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Share
Count statistics of myocardial perfusion imaging using solid-state cadmium-zinc-telluride technology
Ted Pozniakoff, Andrew Einstein, Sabahat Bokhari, Ketan Bhatia
Journal of Nuclear Medicine May 2011, 52 (supplement 1) 2305;
Twitter logo Facebook logo LinkedIn logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One
Bookmark this article

Jump to section

  • Article
  • Info & Metrics

Related Articles

  • No related articles found.
  • Google Scholar

Cited By...

  • No citing articles found.
  • Google Scholar

More in this TOC Section

Technologist Abstracts

  • 3D-OSEM vs FORE+OSEM: The optimal reconstruction algorithm in FDG PET tests with short acquisition time
  • Linearity estimation of PET/CT scanner in list mode acquisition
  • Validation of the optimal index for monitoring early tumor changes between two scans in FDG PET/CT
Show more Technologist Abstracts

Technologist Scientific Papers I

  • Identifying optimal SPECT acquisition for liver imaging using 99mTc-MAA
  • Usefulness of LEAP collimator in lung ventilation SPECT
  • Quality assurance of gastric emptying studies
Show more Technologist Scientific Papers I

Similar Articles

SNMMI

© 2025 SNMMI

Powered by HighWire