Skip to main content
Erschienen in: Journal of Nuclear Cardiology 2/2009

01.04.2009 | Major Achievements in Nuclear Cardiology

Advances in technical aspects of myocardial perfusion SPECT imaging

verfasst von: Piotr J. Slomka, PhD, James A. Patton, PhD, Daniel S. Berman, MD, Guido Germano, PhD

Erschienen in: Journal of Nuclear Cardiology | Ausgabe 2/2009

Einloggen, um Zugang zu erhalten

Excerpt

Although myocardial perfusion SPECT (MPS) imaging is widely used in current clinical practice, it suffers from some fundamental limitations including long image acquisition, low image resolution, and patient radiation dose. In the last two decades, MPS was performed most commonly by standard dual-head scintillation cameras with parallel-hole collimators, typically configured in a 90° detector geometry and image reconstruction based on standard filtered-back projection algorithms. The required scan times were as along as 15-20 minutes for each stress and rest MPS acquisition to provide adequate imaging statistics, resulting in long overall test times and frequent artifacts caused by patient motion during the scan as well as compromised patient comfort. Recently, it has become very important to address these limitations, since MPS has new competitors in the non-invasive imaging arena most notably coronary CT angiography (CCTA), which allow diagnostic imaging in a very short time. In addition, a practice of combining MPS with other modalities such as CCTA for better diagnostic certainty1 has intensified concerns regarding total radiation dose delivered to the patient.2 The radiation dose and acquisition time are intrinsically linked with each other, as longer acquisition times could be used with lower injected doses and higher doses could be used to shorten acquisition times. …
Literatur
1.
Zurück zum Zitat Slomka PJ, Berman DS, Germano G. Applications and software techniques for integrated cardiac multimodality imaging. Expert Rev Cardiovasc Ther 2008;6:27-41.CrossRefPubMed Slomka PJ, Berman DS, Germano G. Applications and software techniques for integrated cardiac multimodality imaging. Expert Rev Cardiovasc Ther 2008;6:27-41.CrossRefPubMed
2.
Zurück zum Zitat Einstein AJ, Henzlova MJ, Rajagopalan S. Estimating risk of cancer associated with radiation exposure from 64-slice computed tomography coronary angiography. JAMA 2007;298:317-23.CrossRefPubMed Einstein AJ, Henzlova MJ, Rajagopalan S. Estimating risk of cancer associated with radiation exposure from 64-slice computed tomography coronary angiography. JAMA 2007;298:317-23.CrossRefPubMed
3.
Zurück zum Zitat Babla H, Bai C, Conwell R. A triple-head solid state camera for cardiac single photon emission tomography (SPECT). In: Franks LA, Burger A, James RB, Barber HB, Doty FP, Roehrig H, editors. Proceedings of the SPIE. vol. 6319. 2005. p. 63190M. Babla H, Bai C, Conwell R. A triple-head solid state camera for cardiac single photon emission tomography (SPECT). In: Franks LA, Burger A, James RB, Barber HB, Doty FP, Roehrig H, editors. Proceedings of the SPIE. vol. 6319. 2005. p. 63190M.
4.
Zurück zum Zitat Lewin HC, Hyun MC. A clinical comparison of an upright triple-head digital detector system to a standard supine dual-head gamma camera (abstract). J Nucl Cardiol 2005;12:113-113.CrossRef Lewin HC, Hyun MC. A clinical comparison of an upright triple-head digital detector system to a standard supine dual-head gamma camera (abstract). J Nucl Cardiol 2005;12:113-113.CrossRef
6.
Zurück zum Zitat Maddahi J, Mahmarian J, Mendez R, et al. Prospective multi-center evaluation of rapid gated SPECT myocardial perfusion upright imaging (abstract). J Nucl Med 2008;49:2P. Maddahi J, Mahmarian J, Mendez R, et al. Prospective multi-center evaluation of rapid gated SPECT myocardial perfusion upright imaging (abstract). J Nucl Med 2008;49:2P.
9.
Zurück zum Zitat Arlt R, Rundquist DE. Room temperature semiconductor detectors for safeguards measurements. Nucl Instrum Methods Phys Res A 1996;380:455-61.CrossRef Arlt R, Rundquist DE. Room temperature semiconductor detectors for safeguards measurements. Nucl Instrum Methods Phys Res A 1996;380:455-61.CrossRef
10.
Zurück zum Zitat O’Connor M. Evaluation of the CardiArc dedicated cardiac system (unpublished independent evaluation). Rochester, MN: Mayo Clinic; 2005. O’Connor M. Evaluation of the CardiArc dedicated cardiac system (unpublished independent evaluation). Rochester, MN: Mayo Clinic; 2005.
11.
Zurück zum Zitat Sharir T, Ben-Haim S, Merzon K, et al. High-speed myocardial perfusion imaging Initial clinical comparison with conventional dual detector anger camera imaging. J Am Coll Cardiol Cardiovasc Imaging 2008;1:156-63. Sharir T, Ben-Haim S, Merzon K, et al. High-speed myocardial perfusion imaging Initial clinical comparison with conventional dual detector anger camera imaging. J Am Coll Cardiol Cardiovasc Imaging 2008;1:156-63.
12.
Zurück zum Zitat Rousso B, Nagler M. Spectrum Dynamics LLC, assignee. Multi-dimensional image reconstruction. US patent 7176466. 13 Feb 2007. Rousso B, Nagler M. Spectrum Dynamics LLC, assignee. Multi-dimensional image reconstruction. US patent 7176466. 13 Feb 2007.
13.
Zurück zum Zitat Hines H, Kayayan R, Colsher J, et al. Recommendations for implementing SPECT instrumentation quality control. Eur J Nucl Med Mol Imaging 1999;26:527-32.CrossRef Hines H, Kayayan R, Colsher J, et al. Recommendations for implementing SPECT instrumentation quality control. Eur J Nucl Med Mol Imaging 1999;26:527-32.CrossRef
14.
Zurück zum Zitat Patton J, Sandler M, Berman D, et al. D-SPECT: A new solid state camera for high speed molecular imaging. Soc Nuclear Med 2006;47:189-189. Patton J, Sandler M, Berman D, et al. D-SPECT: A new solid state camera for high speed molecular imaging. Soc Nuclear Med 2006;47:189-189.
15.
Zurück zum Zitat Ben-Haim S, Hutton B, Van Gramberg D, et al. Simultaneous dual isotope myocardial perfusion scintigraphy (DI MPS)—Initial experience with fast D-SPECT (abstract). J Nucl Cardiol 2008;15:S2. Ben-Haim S, Hutton B, Van Gramberg D, et al. Simultaneous dual isotope myocardial perfusion scintigraphy (DI MPS)—Initial experience with fast D-SPECT (abstract). J Nucl Cardiol 2008;15:S2.
16.
Zurück zum Zitat Berman D, SW H, Wolak A, et al. Stress thallium-201/rest Tc-99m sequential dual isotope high-speed myocardial perfusion imaging. Circulation 2008;118:S1010. Berman D, SW H, Wolak A, et al. Stress thallium-201/rest Tc-99m sequential dual isotope high-speed myocardial perfusion imaging. Circulation 2008;118:S1010.
17.
Zurück zum Zitat Sharir T, Ben Haim S, Slomka PJ, et al. Validation of quantitative analysis of high-speed myocardial perfusion imaging: Comparison to conventional SPECT imaging (abstract). J Nucl Cardiol 2008;15:S4.CrossRef Sharir T, Ben Haim S, Slomka PJ, et al. Validation of quantitative analysis of high-speed myocardial perfusion imaging: Comparison to conventional SPECT imaging (abstract). J Nucl Cardiol 2008;15:S4.CrossRef
18.
Zurück zum Zitat Jaszczak RJ, Li J, Wang H, Zalutsky MR, Coleman RE. Pinhole collimation for ultra-high-resolution, small-field-of-view SPECT. Phys Med Biol 1994;39:425-37.CrossRefPubMed Jaszczak RJ, Li J, Wang H, Zalutsky MR, Coleman RE. Pinhole collimation for ultra-high-resolution, small-field-of-view SPECT. Phys Med Biol 1994;39:425-37.CrossRefPubMed
19.
Zurück zum Zitat Schramm NU, Ebel G, Engeland U, Schurrat T, Behe M, Behr TM. High-resolution SPECT using multipinhole collimation. IEEE Trans Nucl Sci 2003;50:315-20.CrossRef Schramm NU, Ebel G, Engeland U, Schurrat T, Behe M, Behr TM. High-resolution SPECT using multipinhole collimation. IEEE Trans Nucl Sci 2003;50:315-20.CrossRef
20.
Zurück zum Zitat Beekman FJ, Vastenhouw B. Design and simulation of a high-resolution stationary SPECT system for small animals. Phys Med Biol 2004;49:4579-92.CrossRefPubMed Beekman FJ, Vastenhouw B. Design and simulation of a high-resolution stationary SPECT system for small animals. Phys Med Biol 2004;49:4579-92.CrossRefPubMed
21.
Zurück zum Zitat Funk T, Kirch DL, Koss JE, Botvinick E, Hasegawa BH. A novel approach to multipinhole SPECT for myocardial perfusion imaging. J Nucl Med 2006;47:595-602.PubMed Funk T, Kirch DL, Koss JE, Botvinick E, Hasegawa BH. A novel approach to multipinhole SPECT for myocardial perfusion imaging. J Nucl Med 2006;47:595-602.PubMed
22.
Zurück zum Zitat Metzler SD, Bowsher JE, Smith MF, Jaszczak RJ. Analytic determination of pinhole collimator sensitivity with penetration. IEEE Trans Med Imaging 2001;20:730-41.CrossRefPubMed Metzler SD, Bowsher JE, Smith MF, Jaszczak RJ. Analytic determination of pinhole collimator sensitivity with penetration. IEEE Trans Med Imaging 2001;20:730-41.CrossRefPubMed
23.
Zurück zum Zitat Funk T, Després P, Barber WC, Shah KS, Hasegawa BH. A multipinhole small animal SPECT system with submillimeter spatial resolution. Med Phys 2006;33:1259-68. Funk T, Després P, Barber WC, Shah KS, Hasegawa BH. A multipinhole small animal SPECT system with submillimeter spatial resolution. Med Phys 2006;33:1259-68.
24.
Zurück zum Zitat Steele PP, Kirch DL, Koss JE. Comparison of simultaneous dual-isotope multipinhole SPECT with rotational SPECT in a group of patients with coronary artery disease. J Nucl Med 2008;49:1080.CrossRefPubMed Steele PP, Kirch DL, Koss JE. Comparison of simultaneous dual-isotope multipinhole SPECT with rotational SPECT in a group of patients with coronary artery disease. J Nucl Med 2008;49:1080.CrossRefPubMed
25.
Zurück zum Zitat Volokh L, Hugg J, Blevis I, Asma E, Jansen F, Manjeshwar R. Effect of detector energy response on image quality of myocardial perfusion SPECT. Paper presented at IEEE nuclear science symposium and medical imaging conference, 19–26, 2008; Dresden. Volokh L, Hugg J, Blevis I, Asma E, Jansen F, Manjeshwar R. Effect of detector energy response on image quality of myocardial perfusion SPECT. Paper presented at IEEE nuclear science symposium and medical imaging conference, 19–26, 2008; Dresden.
26.
Zurück zum Zitat Blevis I, Tsukerman L, Volokh L, Hugg J, Jansen F, Bouhnik J. CZT gamma camera with pinhole collimator: Spectral measurements. Paper presented at IEEE 2008 nuclear science and medical imaging conference, 2008; Dreseden, Germany. Blevis I, Tsukerman L, Volokh L, Hugg J, Jansen F, Bouhnik J. CZT gamma camera with pinhole collimator: Spectral measurements. Paper presented at IEEE 2008 nuclear science and medical imaging conference, 2008; Dreseden, Germany.
27.
Zurück zum Zitat Garcia EV, Tsukerman L, Keidar Z. 2.05: A new solid state, ultra fast cardiac multi-detector SPECT system. J Nucl Cardiol 2008;15:S3-S3.CrossRef Garcia EV, Tsukerman L, Keidar Z. 2.05: A new solid state, ultra fast cardiac multi-detector SPECT system. J Nucl Cardiol 2008;15:S3-S3.CrossRef
28.
Zurück zum Zitat Hawman PC, Haines EJ. The cardiofocal collimator: A variable focus collimator for cardiac SPECT. Phys Med Biol 1994;39:439-50.CrossRefPubMed Hawman PC, Haines EJ. The cardiofocal collimator: A variable focus collimator for cardiac SPECT. Phys Med Biol 1994;39:439-50.CrossRefPubMed
29.
Zurück zum Zitat Vija A, Hawman E, Engdahl J. Analysis of a SPECT OSEM reconstruction method with 3D beam modeling and optional attenuation correction: Phantom studies. Paper presented at IEEE nuclear science symposium and medical imaging conference, 2003. Vija A, Hawman E, Engdahl J. Analysis of a SPECT OSEM reconstruction method with 3D beam modeling and optional attenuation correction: Phantom studies. Paper presented at IEEE nuclear science symposium and medical imaging conference, 2003.
30.
Zurück zum Zitat Römer W, Reichel N, Vija HA, et al. Isotropic reconstruction of SPECT data using OSEM3D: Correlation with CT. Acad Radiol 2006;13:496-502.CrossRefPubMed Römer W, Reichel N, Vija HA, et al. Isotropic reconstruction of SPECT data using OSEM3D: Correlation with CT. Acad Radiol 2006;13:496-502.CrossRefPubMed
31.
Zurück zum Zitat Vija H, Chapman J, Ray M. IQ•SPECT technology white paper. Siemens Medical Solutions, USA. Mol Imaging 2008;1–7. Vija H, Chapman J, Ray M. IQ•SPECT technology white paper. Siemens Medical Solutions, USA. Mol Imaging 2008;1–7.
32.
Zurück zum Zitat Shepp LA, Vardi Y. Maximum likelihood reconstruction for emission tomography. IEEE Trans Med Imaging 1982;1:113-22.CrossRefPubMed Shepp LA, Vardi Y. Maximum likelihood reconstruction for emission tomography. IEEE Trans Med Imaging 1982;1:113-22.CrossRefPubMed
33.
Zurück zum Zitat Lange K, Carson R. EM reconstruction algorithms for emission and transmission tomography. J Comput Assist Tomogr 1984;8:306-16.PubMed Lange K, Carson R. EM reconstruction algorithms for emission and transmission tomography. J Comput Assist Tomogr 1984;8:306-16.PubMed
34.
Zurück zum Zitat Hudson HM, Larkin RS. Accelerated image reconstruction using ordered subsets of projection data. IEEE Trans Med Imaging 1994;13:601-9.CrossRefPubMed Hudson HM, Larkin RS. Accelerated image reconstruction using ordered subsets of projection data. IEEE Trans Med Imaging 1994;13:601-9.CrossRefPubMed
35.
Zurück zum Zitat El Fakhri G, Buvat I, Benali H, Todd-Pokropek A, Di Paola R. Relative impact of scatter, collimator response, attenuation, and finite spatial resolution corrections in cardiac SPECT. J Nucl Med 2000;41:1400-8.PubMed El Fakhri G, Buvat I, Benali H, Todd-Pokropek A, Di Paola R. Relative impact of scatter, collimator response, attenuation, and finite spatial resolution corrections in cardiac SPECT. J Nucl Med 2000;41:1400-8.PubMed
36.
Zurück zum Zitat Metz CE. The geometric transfer function component for scintillation camera collimators with straight parallel holes. Phys Med Biol 1980;25:1059-70.CrossRefPubMed Metz CE. The geometric transfer function component for scintillation camera collimators with straight parallel holes. Phys Med Biol 1980;25:1059-70.CrossRefPubMed
37.
Zurück zum Zitat Kadrmas DJ, Frey EC, Karimi SS, Tsui BMW. Fast implementation of reconstruction-based scatter compensation in fully 3D SPECT image reconstruction. Phys Med Biol 1998;43:857-73.CrossRefPubMed Kadrmas DJ, Frey EC, Karimi SS, Tsui BMW. Fast implementation of reconstruction-based scatter compensation in fully 3D SPECT image reconstruction. Phys Med Biol 1998;43:857-73.CrossRefPubMed
38.
Zurück zum Zitat Ye J, Song X, Zhao Z, Da Silva AJ, Wiener JS, Shao L. Iterative SPECT reconstruction using matched filtering for improved image quality. IEEE Nucl Sci Symp Conf Rec 2006;4. Ye J, Song X, Zhao Z, Da Silva AJ, Wiener JS, Shao L. Iterative SPECT reconstruction using matched filtering for improved image quality. IEEE Nucl Sci Symp Conf Rec 2006;4.
39.
Zurück zum Zitat Ye J, Shao L, Zhao Z, Durbin M. Iterative reconstruction with enhanced noise control filtering. WO patent WO/2007/034,342; 2007. Ye J, Shao L, Zhao Z, Durbin M. Iterative reconstruction with enhanced noise control filtering. WO patent WO/2007/034,342; 2007.
40.
Zurück zum Zitat Van Laere K, Koole M, Lemahieu I, Dierckx R. Image filtering in single-photon emission computed tomography: Principles and applications. Comput Med Imaging Graph 2001;25:127-33.CrossRefPubMed Van Laere K, Koole M, Lemahieu I, Dierckx R. Image filtering in single-photon emission computed tomography: Principles and applications. Comput Med Imaging Graph 2001;25:127-33.CrossRefPubMed
41.
Zurück zum Zitat Venero CV, Ahlberg AW, Bateman TM, et al. Enhancement of nuclear cardiac laboratory efficiency—Multicenter evaluation of a new post-processing method with depth-dependent collimator resolution applied to full and half-time acquisitions. J Nucl Cardiol 2008;15:S4. Venero CV, Ahlberg AW, Bateman TM, et al. Enhancement of nuclear cardiac laboratory efficiency—Multicenter evaluation of a new post-processing method with depth-dependent collimator resolution applied to full and half-time acquisitions. J Nucl Cardiol 2008;15:S4.
42.
Zurück zum Zitat Bateman TM, Heller GV, McGhie AI, et al. 2.04: Multicenter investigation comparing a highly efficient half-time stress-only attenuation correction approach against standard rest-stress Tc-99m SPECT imaging. J Nucl Cardiol 2008;15:S3-S3.CrossRef Bateman TM, Heller GV, McGhie AI, et al. 2.04: Multicenter investigation comparing a highly efficient half-time stress-only attenuation correction approach against standard rest-stress Tc-99m SPECT imaging. J Nucl Cardiol 2008;15:S3-S3.CrossRef
43.
Zurück zum Zitat Tsui BMW, Hu HB, Gilland DR, Gullberg GT. Implementation of simultaneous attenuation and detector response correction in SPECT. IEEE Trans Nucl Sci 1988;35:778-83.CrossRef Tsui BMW, Hu HB, Gilland DR, Gullberg GT. Implementation of simultaneous attenuation and detector response correction in SPECT. IEEE Trans Nucl Sci 1988;35:778-83.CrossRef
44.
Zurück zum Zitat DePuey E, Gadiraju R, Clark J, Thompson L, Anstett F, Shwartz S. OSEM and wide beam reconstruction (WBR) “half-time” gated myocardial perfusion SPECT functional imaging: A comparison to “full-time” filtered back projection. J Nucl Cardiol 2008;15:547-63. DePuey E, Gadiraju R, Clark J, Thompson L, Anstett F, Shwartz S. OSEM and wide beam reconstruction (WBR) “half-time” gated myocardial perfusion SPECT functional imaging: A comparison to “full-time” filtered back projection. J Nucl Cardiol 2008;15:547-63.
45.
Zurück zum Zitat Tsui BMW, Gullberg GT. The geometric transfer-function for cone and fan beam collimators. Phys Med Biol 1990;35:81-93.CrossRefPubMed Tsui BMW, Gullberg GT. The geometric transfer-function for cone and fan beam collimators. Phys Med Biol 1990;35:81-93.CrossRefPubMed
46.
Zurück zum Zitat Tsui BMW, Frey EC, Zhao X, Lalush DS, Johnston RE, McCartney WH. The importance and implementation of accurate 3D compensation methods for quantitative SPECT. Phys Med Biol 1994;39:509-30.CrossRefPubMed Tsui BMW, Frey EC, Zhao X, Lalush DS, Johnston RE, McCartney WH. The importance and implementation of accurate 3D compensation methods for quantitative SPECT. Phys Med Biol 1994;39:509-30.CrossRefPubMed
47.
Zurück zum Zitat Bruyant PP. Analytic and iterative reconstruction algorithms in SPECT. J Nucl Med 2002;43:1343-58.PubMed Bruyant PP. Analytic and iterative reconstruction algorithms in SPECT. J Nucl Med 2002;43:1343-58.PubMed
48.
Zurück zum Zitat Green PJ. Bayesian reconstructions from emission tomography data using a modified EM algorithm. IEEE Trans Med Imaging 1990;9:84-93.CrossRefPubMed Green PJ. Bayesian reconstructions from emission tomography data using a modified EM algorithm. IEEE Trans Med Imaging 1990;9:84-93.CrossRefPubMed
49.
Zurück zum Zitat Alenius S, Ruotsalainen U. Bayesian image reconstruction for emission tomography based on median root prior. Eur J Nucl Med Mol Imaging 1997;24:258-65. Alenius S, Ruotsalainen U. Bayesian image reconstruction for emission tomography based on median root prior. Eur J Nucl Med Mol Imaging 1997;24:258-65.
50.
Zurück zum Zitat Vija AH, Zeintl J, Chapman JT, Hawman EG, Hornegger J. Development of rapid SPECT acquisition protocol for myocardial perfusion imaging. IEEE Nucl Sci Symp Conf Rec 2006;3:1811-6. Vija AH, Zeintl J, Chapman JT, Hawman EG, Hornegger J. Development of rapid SPECT acquisition protocol for myocardial perfusion imaging. IEEE Nucl Sci Symp Conf Rec 2006;3:1811-6.
51.
Zurück zum Zitat Ficaro EP, Kritzman JN, Corbett JR. 15.34: Effect of reconstruction parameters and acquisition times on myocardial perfusion distribution in normals. J Nucl Cardiol 2008;15:S20-S20.CrossRef Ficaro EP, Kritzman JN, Corbett JR. 15.34: Effect of reconstruction parameters and acquisition times on myocardial perfusion distribution in normals. J Nucl Cardiol 2008;15:S20-S20.CrossRef
52.
Zurück zum Zitat Zeintl J, Ding X, Vija AH, Hawman EG, Hornegger J, Kuwert T. Estimation accuracy of ejection fraction in gated cardiac SPECT/CT imaging using iterative reconstruction with 3D resolution recovery in rapid acquisition protocols. 2007 NSS ‘07 IEEE Nucl Sci Symp Conf Rec 2007;6:4491-6. Zeintl J, Ding X, Vija AH, Hawman EG, Hornegger J, Kuwert T. Estimation accuracy of ejection fraction in gated cardiac SPECT/CT imaging using iterative reconstruction with 3D resolution recovery in rapid acquisition protocols. 2007 NSS ‘07 IEEE Nucl Sci Symp Conf Rec 2007;6:4491-6.
54.
Zurück zum Zitat Borges-Neto SPR, Shaw LK, et al. Clinical results of a novel wide beam reconstruction method for shortening scan time of Tc-99m cardiac SPECT perfusion studies. J Nucl Cardiol 2007;14:555-65.CrossRefPubMed Borges-Neto SPR, Shaw LK, et al. Clinical results of a novel wide beam reconstruction method for shortening scan time of Tc-99m cardiac SPECT perfusion studies. J Nucl Cardiol 2007;14:555-65.CrossRefPubMed
55.
Zurück zum Zitat DePuey EG, Bommireddipalli S, Beletsky I, et al. 2.01: Quarter-time myocardial perfusion SPECT wide beam reconstruction. J Nucl Cardiol 2008;15:S2-S2.CrossRef DePuey EG, Bommireddipalli S, Beletsky I, et al. 2.01: Quarter-time myocardial perfusion SPECT wide beam reconstruction. J Nucl Cardiol 2008;15:S2-S2.CrossRef
56.
Zurück zum Zitat Slomka PJ, Nishina H, Berman DS, et al. “Motion-frozen” display and quantification of myocardial perfusion. J Nucl Med 2004;45:1128-34.PubMed Slomka PJ, Nishina H, Berman DS, et al. “Motion-frozen” display and quantification of myocardial perfusion. J Nucl Med 2004;45:1128-34.PubMed
57.
Zurück zum Zitat Suzuki Y, Slomka PJ, Wolak A, et al. Motion-frozen myocardial perfusion SPECT improves detection of coronary artery disease in obese patients. J Nucl Med 2008;49:1075-9.CrossRefPubMed Suzuki Y, Slomka PJ, Wolak A, et al. Motion-frozen myocardial perfusion SPECT improves detection of coronary artery disease in obese patients. J Nucl Med 2008;49:1075-9.CrossRefPubMed
Metadaten
Titel
Advances in technical aspects of myocardial perfusion SPECT imaging
verfasst von
Piotr J. Slomka, PhD
James A. Patton, PhD
Daniel S. Berman, MD
Guido Germano, PhD
Publikationsdatum
01.04.2009
Verlag
Springer-Verlag
Erschienen in
Journal of Nuclear Cardiology / Ausgabe 2/2009
Print ISSN: 1071-3581
Elektronische ISSN: 1532-6551
DOI
https://doi.org/10.1007/s12350-009-9052-6

Weitere Artikel der Ausgabe 2/2009

Journal of Nuclear Cardiology 2/2009 Zur Ausgabe

ASNC Announcement

ASNC Announcement

ASNC Announcement

ASNC Announcement

Update Kardiologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.