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Análisis de sincronismo intraventricular: Ausencia de valor para detección de isquemia en SPECT miocárdico con dipiridamol y adquisición post-estrés tardío

Referencias

  1. Garcia EV, Faber TL, Cooke CD, Folks RD, Chen J, Santana C. The increasing role of quantification in clinical nuclear cardiology: the Emory approach. J Nucl Cardiol 2007; 14:420-32.
  2. Hendel RC, Berman DS, Di Carli MF, Heidenreich PA, Henkin RE, Pellikka PA, et al. ACCF/ASNC/ACR/AHA/ASE/SCCT/SCMR/SNM 2009 appropriate use criteria for cardiac radionuclide imaging: a report of the American College of Cardiology Foundation Appropriate Use Criteria Task Force, the American Society of Nuclear Cardiology, the American College of Radiology, the American Heart Association, the American Society of Echocardiography, the Society of Cardiovascular Computed Tomography, the Society for Cardiovascular Magnetic Resonance, and the Society of Nuclear Medicine. Circulation 2009; 119:e561-87.
  3. Massardo T, Alarcon L, Spuler J. Risk stratification of coronary artery disease using radionuclides. Current status of clinical practice. Rev Esp Med Nucl Imagen Mol 2017; 36:377-87.
  4. Van Kriekinge SD, Nishina H, Ohba M, Berman DS, Germano G. Automatic global and regional phase analysis from gated myocardial perfusion SPECT imaging: application to the characterization of ventricular contraction in patients with left bundle branch block. J Nucl Med 2008; 49:1790-7.
  5. Chen J, Garcia EV, Bax JJ, Iskandrian AE, Borges-Neto S, Soman P. SPECT myocardial perfusion imaging for the assessment of left ventricular mechanical dyssynchrony. J Nucl Cardiol 2011; 18:685-94.
  6. Jimenez-Heffernan A, Butt S, Mesquita CT, Massardo T, Peix A, Kumar A, et al. Technical aspects of gated SPECT MPI assessment of left ventricular dyssynchrony used in the VISION-CRT study. J Nucl Cardiol 2020; 28(3):1165-71.
  7. Nagueh SF. Mechanical dyssynchrony in congestive heart failure: diagnostic and therapeutic implications. J Am Coll Cardiol 2008; 51:18-22.
  8. Peix A, Karthikeyan G, Massardo T, Kalaivani M, Patel C, Pabon LM, et al. Value of intraventricular dyssynchrony assessment by gated-SPECT myocardial perfusion imaging in the management of heart failure patients undergoing cardiac resynchronization therapy (VISION-CRT). J Nucl Cardiol 2021; 28:55-64.
  9. Alexanderson-Rosas E, Espinola-Zavaleta N, Garcia EV, Peix A, Massardo T, Pabon LM, et al. Diastolic dyssynchrony assessment by gated myocardial perfusion-SPECT in subjects who underwent cardiac resynchronization therapy. J Nucl Cardiol 2021; 28:1413-21
  10. Camilletti J, Erriest J, Espinola-Zavaleta N, Hernandez-Sandoval S, Redolatti M, Cartasegna L, et al. Left ventricular dyssynchrony and abnormalities in wall motion, assessed by gated-SPECT as ischemic auxiliary markers. J Nucl Cardiol 2020; 27:2261-68 (Erratum: J Nucl Cardiol 2020; 27:1380).
  11. Massardo T. Auxiliary ischemic markers, the role of left ventricular dyssynchrony. J Nucl Cardiol 2020; 27:2269-72.
  12. Peix A, Padron K, Cabrera LO, Pardo L, Sanchez J. Left ventricular mechanical dyssynchrony in patients with chest pain and normal epicardial coronary arteries. J Nucl Cardiol 2021; 28:1055-63.
  13. Chen CC, Shen TY, Chang MC, Hung GU, Chen WC, Kao CH, et al. Stress-induced myocardial ischemia is associated with early post-stress left ventricular mechanical dyssynchrony as assessed by phase analysis of 201Tl gated SPECT myocardial perfusion imaging. Eur J Nucl Med Mol Imaging 2012; 39:1904-9.
  14. Hung GU HW, Chen J. Dipyridamole-induced worsening of mechanical synchrony on Tl-201 gated myocardial perfusion SPECT predicts severe and extensive coronary artery disease. J Nucl Med 2014; 55 (Supplement 1 238):1.
  15. Vancheri F, Vancheri S, Henein MY. Effect of age on left ventricular global dyssynchrony in asymptomatic individuals: A population study. Echocardiography 2016; 33:977-83.
  16. Nakajima K, Okuda K, Matsuo S, Kiso K, Kinuya S, Garcia EV. Comparison of phase dyssynchrony analysis using gated myocardial perfusion imaging with four software programs: Based on the Japanese Society of Nuclear Medicine working group normal database. J Nucl Cardiol 2017; 24:611-21.
  17. Lee DS, Yeo JS, Chung JK, Lee MM, Lee MC. Transient prolonged stunning induced by dipyridamole and shown on 1- and 24-hour poststress 99mTc-MIBI gated SPECT. J Nucl Med 2000; 41:27-35.
  18. AlJaroudi WA, Hage FG. Myocardial stunning by gated SPECT: An old tool reinvented in a stunning turn. J Nucl Cardiol 2019; 26:841-44.
  19. Bestetti A, Cuko B, Decarli A, Galli A, Lombardi F. Additional value of systolic wall thickening in myocardial stunning evaluated by stress-rest gated perfusion SPECT. J Nucl Cardiol 2019; 26:833-40.
  20. Mut F, Giubbini R, Vitola J, Lusa L, Sobic-Saranovic D, Peix A, et al. Detection of post-exercise stunning by early gated SPECT myocardial perfusion imaging: results from the IAEA multi-center study. J Nucl Cardiol 2014; 21:1168-76.
  21. Germano G, Van Kriekinge SD. Measuring mechanical cardiac dyssynchrony in the 3-D era. J Nucl Cardiol 2017; 24:158-61.
  22. Bois JP, Scott C, Chareonthaitawee P, Gibbons RJ, Rodriguez-Porcel M. Phase analysis single-photon emission computed tomography (SPECT) myocardial perfusion imaging (MPI) detects dyssynchrony in myocardial scar and increases specificity of MPI. EJNMMI Res 2019; 9:11.
  23. Legallois D, Marie PY, Franken PR, Djaballah W, Agostini D, Manrique A. Comparison of the dyssynchrony parameters recorded with gated SPECT in ischemic cardiomyopathy according to their repeatability at rest and to their ability to detect a synchrony reserve under dobutamine infusion. J Nucl Cardiol 2020; 27:2247-57.
  24. Aljaroudi WA, Hage FG, Hermann D, Doppalapudi H, Venkataraman R, Heo J, et al. Relation of left-ventricular dyssynchrony by phase analysis of gated SPECT images and cardiovascular events in patients with implantable cardiac defibrillators. J Nucl Cardiol 2010; 17:398-404.
  25. Massardo T, Gonzalez P, Humeres P, Chamorro H, Ayala F, Yovanovich J, et al. Simultaneous assessment of function and perfusion during dipyridamole-handgrip Tc-99m sestamibi imaging in chronic coronary artery disease. Ann Nucl Med 1999; 13:121-5.
  26. Hung GU, Chen CP, Yang KT. Incremental value of ischemic stunning on the detection of severe and extensive coronary artery disease in dipyridamole Tl-201 gated myocardial perfusion imaging. Int J Cardiol 2005; 105:108-10.
  27. Lin WL, Wang SY, Shiau YC, Wu YW. The clinical usefulness of phase analysis in detecting coronary artery disease using dipyridamole thallium-201-gated myocardial perfusion imaging with a cadmium-zinc-telluride camera. J Nucl Cardiol 2020; 27:241-50.
  28. Aljaroudi W, Koneru J, Heo J, Iskandrian AE. Impact of ischemia on left ventricular dyssynchrony by phase analysis of gated single photon emission computed tomography myocardial perfusion imaging. J Nucl Cardiol 2011; 18:36-42.
  29. Zafrir N, Nevzorov R, Bental T, Strasberg B, Gutstein A, Mats I, et al. Prognostic value of left ventricular dyssynchrony by myocardial perfusion-gated SPECT in patients with normal and abnormal left ventricular functions. J Nucl Cardiol 2014; 21:532-40.
  30. Hess PL, Shaw LK, Fudim M, Iskandrian AE, Borges-Neto S. The prognostic value of mechanical left ventricular dyssynchrony defined by phase analysis from gated single-photon emission computed tomography myocardial perfusion imaging among patients with coronary heart disease. J Nucl Cardiol 2017; 24:482-90.
  31. Bajaj NS, Singh S, Farag A, El-Hajj S, Heo J, Iskandrian AE, et al. The prognostic value of non-perfusion variables obtained during vasodilator stress myocardial perfusion imaging. J Nucl Cardiol 2016; 23:390-413.