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Nuclear Medicine & Radiation Therapy

ISSN: 2155-9619

Open Access

Citations Report

Nuclear Medicine & Radiation Therapy : Citations & Metrics Report

Articles published in Nuclear Medicine & Radiation Therapy have been cited by esteemed scholars and scientists all around the world.

Nuclear Medicine & Radiation Therapy has got h-index 12, which means every article in Nuclear Medicine & Radiation Therapy has got 12 average citations.

Following are the list of articles that have cited the articles published in Nuclear Medicine & Radiation Therapy.

  2024 2023 2022 2021 2020 2019 2018

Total published articles

50 52 63 62 11 17 49

Research, Review articles and Editorials

212 112 0 0 0 0 0

Research communications, Review communications, Editorial communications, Case reports and Commentary

545 458 0 0 0 0 0

Conference proceedings

0 0 0 0 0 0 22

Citations received as per Google Scholar, other indexing platforms and portals

757 570 69 80 82 74 61
Journal total citations count 706
Journal impact factor 2.03
Journal 5 years impact factor 1.8
Journal cite score 1.98
Journal h-index 12
Journal h-index since 2019 9
Important citations

Walrand S (2014) SPECT/CT for Dosimetry. In Clinical Applications of SPECT-CT .Springer Berlin Heidelberg. pp: 29-42.

Pasciak AS, Bourgeois AC, Bradley YC (2016. Treatment planning part III: Dosimetric considerations in radioembolization with glass and resin microspheres. Handbook of Radioembolization: Physics, Biology, Nucl Med Imaging 87.

Pasciak AS, McKinney JM, Bradley YC (Eds.). (2016) Handbook of Radioembolization: Physics, Biology, Nuclear Medicine, and Imaging.

Aramburu J, Antón R, Rivas A, Ramos JC, Sangro B, Bilbao JI(2016) Numerical investigation of liver radioembolization via computational particle–hemodynamics: The role of the microcatheter distal direction and microsphere injection point and velocity. J Biomech 49: 3714-3721.

Hsiang K (2016) Diagnostic reporting using postradioembolization imaging. Handbook of Radioembolization: Physics, Biology, Nucl Med Imaging.

Smits MLJ, Prince JF, Pronk AA, Nijsen JFW, Zonnenberg BA, et al. (2013) Quality of life in liver metastases patients treated with holmium-166 radioembolization. Holmium Radioemboltion of liver metastases, 97.

Dieudonné A, Hobbs RF, Sanchez-Garcia M, Lebtahi R (2016) Absorbed-dose calculation for treatment of liver neoplasms with 90Y-microspheres. Clin Transl Imaging 4: 273-282.

O’Doherty J (2015) A review of 3D image-based dosimetry, technical considerations and emerging perspectives in 90Y microsphere therapy. J Diag Imaging Ther 2:1.

Kao YH (2013). Disregard for basic dosimetric principles will lead to questionable results. Clin Nucl Med, 38: 759.

Rhee S, Kim S, Cho J, Park J, Eo JS, et al. (2016) Semi-quantitative analysis of post-transarterial radioembolization 90Y microsphere positron emission tomography combined with computed tomography (PET/CT) images in advanced liver malignancy: Comparison with 99mTc macroaggregated albumin (MAA) single photon emission computed tomography (SPECT). Nucl Med Molec Imaging 50: 63-69.

Ulrich G, Dudeck O, Grosser OS, Amthauer H (2013) Reply: Results Confounded by a Disregard for Basic Dose–Response Radiobiology. J Nucl Med 54: 1683-1684.

Aramburu J, Antón R, Rivas A, Ramos JC, Sangro B, et al.(2016) Computational particle–haemodynamics analysis of liver radioembolization pretreatment as an actual treatment surrogate. Int J Numer Meth Biomedl Eng.

Ulrich G, Dudeck O, Grosser OS, Amthauer H (2013) Reply: Value of 99mTc-macroaggregated albumin SPECT for radioembolization treatment planning. J Nucl Med 54: 1682-1682.

Maccauro M, Lorenzoni A, Boni G, Chiesa C, Spreafico C, et al. (2013) Multiagent imaging of liver tumors with reference to intra-arterial radioembolization. Clin Transl Imaging 1: 423-432.

Sangro B, Iñarrairaegui M, Bilbao JI (2013) Reply to:“Pre-therapeutic dosimetry evaluation and selective internal radiation therapy of hepatocellular carcinoma using yttrium-90-loaded microspheres”. J Hep, 58: 1056-1057.

Grosser OS, Ulrich G, Furth C, Pech M, Ricke J, et al. (2015) Intrahepatic Activity Distribution in Radioembolization with Yttrium-90–Labeled Resin Microspheres Using the Body Surface Area Method—A Less than Perfect Model. J Vascul Intervent Radiol 26: 1615-1621.

Lam MG, Smits ML (2013) Value of 99mTc-macroaggregated albumin SPECT for radioembolization treatment planning. J Nucl Med 54: 1681-1682.

Smits ML, Elschot M, Sze DY, Kao YH, Nijsen JF, et al. (2015) Radioembolization dosimetry: the road ahead. Cardiovas Interven Radiol 38: 261-269.

Garin E, Rolland Y, Laffont S, Edeline J (2016) Clinical impact of 99mTc-MAA SPECT/CT-based dosimetry in the radioembolization of liver malignancies with 90Y-loaded microspheres. European journal of nuclear medicine and molecular imaging, 43: 559-575.

Walrand S, Hesse M, Wojcik R, Lhommel R, Jamar F (2014) Optimal design of Anger camera for bremsstrahlung imaging: Monte Carlo evaluation. Fron Oncol 4: 149.

Google Scholar citation report
Citations: 706

Nuclear Medicine & Radiation Therapy received 706 citations as per Google Scholar report

Nuclear Medicine & Radiation Therapy peer review process verified at publons

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