Literature DB >> 20008999

Nuclear myocardial perfusion imaging with a cadmium-zinc-telluride detector technique: optimized protocol for scan time reduction.

Bernhard A Herzog1, Ronny R Buechel, Ruth Katz, Michael Brueckner, Lars Husmann, Irene A Burger, Aju P Pazhenkottil, Ines Valenta, Oliver Gaemperli, Valerie Treyer, Philipp A Kaufmann.   

Abstract

UNLABELLED: We aimed at establishing the optimal scan time for nuclear myocardial perfusion imaging (MPI) on an ultrafast cardiac gamma-camera using a novel cadmium-zinc-telluride (CZT) solid-state detector technology.
METHODS: Twenty patients (17 male; BMI range, 21.7-35.5 kg/m(2)) underwent 1-d (99m)Tc-tetrofosmin adenosine stress and rest MPI protocols, each with a 15-min acquisition on a standard dual-detector SPECT camera. All scans were immediately repeated on an ultrafast CZT camera over a 6-min acquisition time and reconstructed from list-mode raw data to obtain scan durations of 1 min, 2 min, etc., up to a maximum of 6 min. For each of the scan durations, the segmental tracer uptake value (percentage of maximum myocardial uptake) from the CZT camera was compared by intraclass correlation with standard SPECT camera data using a 20-segment model, and clinical agreement was assessed per coronary territory. Scan durations above which no further relevant improvement in uptake correlation was found were defined as minimal required scan times, for which Bland-Altman limits of agreement were calculated.
RESULTS: Minimal required scan times were 3 min for low dose (r = 0.81; P < 0.001; Bland-Altman, -11.4% to 12.2%) and 2 min for high dose (r = 0.80; P < 0.001; Bland-Altman, -7.6% to 12.9%), yielding a clinical agreement of 95% and 97%, respectively.
CONCLUSION: We have established the minimal scan time for a CZT solid-state detector system, which allows 1-d stress/rest MPI with a substantially reduced acquisition time resulting in excellent agreement with regard to uptake and clinical findings, compared with MPI from a standard dual-head SPECT gamma-camera.

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Year:  2009        PMID: 20008999     DOI: 10.2967/jnumed.109.065532

Source DB:  PubMed          Journal:  J Nucl Med        ISSN: 0161-5505            Impact factor:   10.057


  92 in total

1.  Comparison of high efficiency CZT SPECT MPI to coronary angiography.

Authors:  W Lane Duvall; Joseph M Sweeny; Lori B Croft; Maya H Barghash; Nitin K Kulkarni; Krista A Guma; Milena J Henzlova
Journal:  J Nucl Cardiol       Date:  2011-06-03       Impact factor: 5.952

2.  Reduced stress dose with rapid acquisition CZT SPECT MPI in a non-obese clinical population: comparison to coronary angiography.

Authors:  W Lane Duvall; Joseph M Sweeny; Lori B Croft; Eric Ginsberg; Krista A Guma; Milena J Henzlova
Journal:  J Nucl Cardiol       Date:  2011-12-07       Impact factor: 5.952

3.  Downstream resource utilization following hybrid cardiac imaging with an integrated cadmium-zinc-telluride/64-slice CT device.

Authors:  Michael Fiechter; Jelena R Ghadri; Mathias Wolfrum; Silke M Kuest; Aju P Pazhenkottil; Rene N Nkoulou; Bernhard A Herzog; Cathérine Gebhard; Tobias A Fuchs; Oliver Gaemperli; Philipp A Kaufmann
Journal:  Eur J Nucl Med Mol Imaging       Date:  2011-12-06       Impact factor: 9.236

4.  Advances in SPECT camera software and hardware: currently available and new on the horizon.

Authors:  E Gordon DePuey
Journal:  J Nucl Cardiol       Date:  2012-06       Impact factor: 5.952

5.  Single photon-emission computed tomography.

Authors:  Thomas A Holly; Brian G Abbott; Mouaz Al-Mallah; Dennis A Calnon; Mylan C Cohen; Frank P DiFilippo; Edward P Ficaro; Michael R Freeman; Robert C Hendel; Diwakar Jain; Scott M Leonard; Kenneth J Nichols; Donna M Polk; Prem Soman
Journal:  J Nucl Cardiol       Date:  2010-10       Impact factor: 5.952

6.  Dedicated cardiac cameras: a new option for nuclear myocardial perfusion imaging.

Authors:  Orazio Schillaci; Roberta Danieli
Journal:  Eur J Nucl Med Mol Imaging       Date:  2010-08       Impact factor: 9.236

7.  Sequential SPECT/CT imaging for detection of coronary artery disease in a large cohort: evaluation of the need for additional imaging and radiation exposure.

Authors:  Elsemiek M Engbers; Jorik R Timmer; Jan Paul Ottervanger; Mohamed Mouden; Ad H J Oostdijk; Siert Knollema; Pieter L Jager
Journal:  J Nucl Cardiol       Date:  2015-09-22       Impact factor: 5.952

8.  Myocardial perfusion imaging with a solid-state camera: simulation of a very low dose imaging protocol.

Authors:  Ryo Nakazato; Daniel S Berman; Sean W Hayes; Mathews Fish; Richard Padgett; Yuan Xu; Mark Lemley; Rafael Baavour; Nathaniel Roth; Piotr J Slomka
Journal:  J Nucl Med       Date:  2013-01-15       Impact factor: 10.057

9.  Deep Learning for Prediction of Obstructive Disease From Fast Myocardial Perfusion SPECT: A Multicenter Study.

Authors:  Julian Betancur; Frederic Commandeur; Mahsaw Motlagh; Tali Sharir; Andrew J Einstein; Sabahat Bokhari; Mathews B Fish; Terrence D Ruddy; Philipp Kaufmann; Albert J Sinusas; Edward J Miller; Timothy M Bateman; Sharmila Dorbala; Marcelo Di Carli; Guido Germano; Yuka Otaki; Balaji K Tamarappoo; Damini Dey; Daniel S Berman; Piotr J Slomka
Journal:  JACC Cardiovasc Imaging       Date:  2018-03-14

10.  Segmental and global left ventricular function assessment using gated SPECT with a semiconductor Cadmium Zinc Telluride (CZT) camera: phantom study and clinical validation vs cardiac magnetic resonance.

Authors:  Alban Bailliez; Tanguy Blaire; Frédéric Mouquet; R Legghe; B Etienne; Damien Legallois; Denis Agostini; Alain Manrique
Journal:  J Nucl Cardiol       Date:  2014-05-09       Impact factor: 5.952

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