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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

Chaudhary R, Singh B, Kumar M, Gakhar SK, Saini AK, et al. (2015) Role of single nucleotide polymorphisms in pharmacogenomics and their association with human diseases. Drug Metabol Rev 47: 281-290.

Buchwalder C, Saatchi K, Häfeli UO (2014) Nanomaterial‐Based Bioimaging Probes. Bio-and Bioinspired Nanomat 201-228.

Verger E, Drion P, Meffre G, Bernard C, Duwez L, et al. (2016) 68 Ga and 188 Re Starch-Based Microparticles as Theranostic Tool for the Hepatocellular Carcinoma: Radiolabeling and Preliminary In Vivo Rat Studies. PloS one, 11: e0164626.

Muylle K, Vanderlinden B (2014) Reply to Letter re: General Theory of Predictive Dosimetry for Yttrium-90 Radioembolization to Sites Other Than the Liver. Cardiovas Interv Radiol, 37: 1118.

Flamen P, Hendlisz A, Vanderlinden B (2012) Selective internal radiation therapy simulation using 99m Tc-labelled macroaggregates of albumin and SPECT-CT. Eur J Cancer Suppl, 10: 54-56.

Behrendt FF, Winz O, Mottaghy FM (2012) Study-Parameter Impact in Quantitative 90-Yttrium PET Imaging for Radioembolization Treatment Monitoring and Dosimetry. IEEE TMI,0580.

Steiner K, Papadopoulou A, Yu D (2013) The Role of Interventional Radiology in the Treatment of Hepatocellular Carcinoma. In Seminars in Ultrasound, CT and MRI, WB Saunders.34: 89-101.

Siddiqui A, Jeevani T, Anusha NP, Bindu HA (2011) Stem cell therapy for liver diseases. J Stem Cell Res Ther 1: 2.

Wright CL, Zhang J, Tweedle MF, Knopp MV, Hall NC (2015) Theranostic imaging of Yttrium-90. BioMed Res Int.

Kao YH, Tan AE, Lo RH, Tay KH, Tan BS, et al. (2014) Non-target activity detection by post-radioembolization yttrium-90 PET/CT: image assessment technique and case examples. Fron Oncol 4:11.

Goedicke A, Berker Y, Verburg FA, Behrendt FF, Winz O, et al. (2013) Study-parameter impact in quantitative 90-yttrium PET imaging for radioembolization treatment monitoring and dosimetry. IEEE Transac Med Imaging, 32: 485-492.

Westcott MA, Coldwell DM, Liu DM, Zikria JF (2016) The development, commercialization, and clinical context of yttrium-90 radiolabeled resin and glass microspheres. Adv Radiat Oncol 1: 351-364.

Caine M, McCafferty MS, McGhee S, Garcia P, Mullett WM, et al. (2016). Impact of Yttrium-90 Microsphere Density, Flow Dynamics, and Administration Technique on Spatial Distribution: Analysis Using an In Vitro Model. J Vasc Interven Radiol

Pasciak AS, Lin A, Georgiades C, Findeiss LK, Kauffman S, et al. (2016) Computational simulation of the predicted dosimetric impact of adjuvant yttrium-90 PET/CT-guided percutaneous ablation following radioembolization. EJNMMI research, 6: 89.

Aramburu J, Antón R, Rivas A, Ramos JC, Sangro B, et al. (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.

Aramburu J, Antón R, Rivas A, Ramos JC, Sangro B, et al. (2016) Computational assessment of the effects of the catheter type on particle–hemodynamics during liver radioembolization. J Biomech 49: 3705-3713.

Caine M, Carugo D, Zhang X, Hill M, Dreher MR, et al. (2017) Review of the Development of Methods for Characterization of Microspheres for Use in Embolotherapy: Translating Bench to Cathlab. Advanced Healthcare Materials.

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

Siddiqui A, Jeevani T, Anusha NP, Bindu HA (2011) Stem cell therapy for liver diseases. J Stem Cell Res Ther 1: 2.

Aramburu J, Antón R, Bernal N, Rivas A, Ramos JC, et al. (2015) Physiological outflow boundary conditions methodology for small arteries with multiple outlets: a patient-specific hepatic artery haemodynamics case study. Proceedings of the Institution of Mechanical Engineers, Part H: J Eng Med 229: 291-306.

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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