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Advances in Radiotherapy
            & Nuclear Medicine                                                 Blood glucose and I-123 MIBG lung uptake



            and performed in accordance with the ethical standards      doi: 10.2337/diab.41.9.1069
            laid down in the 1964 Declaration of Helsinki and its later   9.   Murashima S, Takeda K, Matsumura K, et al. Increased lung
            amendments.                                           uptake of iodine-123-MIBG in diabetics with sympathetic
                                                                  nervous dysfunction. J Nucl Med. 1998;39:334-338.
            Consent for publication
                                                               10.  Unlü M, Inanir S. Prolonged lung retention of iodine-123-
            Not applicable.                                       MIBG in diabetic patients. J Nucl Med. 1998;39:116-118.

            Availability of data                               11.  Mu X, Hasegawa S, Yoshioka J, et al. Clinical value of lung
                                                                  uptake of iodine-123 metaiodobenzylguanidine (MIBG),
            Data used in this work are available from the corresponding   a myocardial sympathetic nerve imaging agent, in patients
            author on reasonable request.                         with chronic heart failure.  Ann Nucl Med. 2001;15:
                                                                  411-416.
            References
                                                               12.  Hempel  A,  Maasch  C,  Heintze  U,  et  al.  High  glucose
            1.   Wieland DM, Wu J, Brown LE, Mangner TJ, Swanson DP,   concentrations  increase  endothelial  cell  permeability  via
               Beierwaltes WH. Radiolabeled adrenergic neuron-    activation of protein kinase CΑ. Circ Res. 1997;81:363-371.
               blocking agents: Adrenomedullary imaging with [131I]
               iodobenzylguanidine. J Nucl Med. 1980;21:349-353.     doi: 10.1161/01.res.81.3.363
            2.   Sisson JC, Wieland DM, Sherman P, Mangner TJ, Tobes MC,   13.  Canêo LF, Neirotti R. The importance of the proper definition
               Jacques S Jr. Metaiodobenzylguanidine as an index of the   of adulthood: What is and what is not included in a scientific
               adrenergic nervous system integrity and function.  J  Nucl   publication. Braz J Cardiovasc Surg. 2017;32(1):60.
               Med. 1987;28:1620-1624.                            doi: 10.21470/1678-9741-2016-0049
            3.   Kayano  D,  Kinuya  S. Current  consensus  on  I-131  MIBG   14.  Schober P, Boer C, Schwarte LA. Correlation coefficients:
               therapy. Nucl Med Mol Imaging. 2018;52:254-265.    appropriate use and interpretation.  Anesth Analg.
               doi: 10.1007/s13139-018-0523-z                     2018;126(5):1763-1768.
            4.   Dendy PP, Goldstone KE, Parkin A, Barber RW. Radiation      doi: 10.1213/ANE.0000000000002864
               protection. In: Sharp PF, Gemmell HG, Murray AD, editors.   15.  Neuroendocrine Tumours; 2017. Available from: https://
               Practical Nuclear Medicine. London: Springer-Verlag; 2005.   www.nhs.uk/conditions/neuroendocrine-tumours  [Last
               p. 91-111.                                         accessed on 2023 Dec 20].
               doi: 10.1007/b136183                            16.  Hong CM, Jeong YJ, Kim HW, et al. KSNM60 in Nuclear
            5.   Haugen BR, Alexander EK, Bible KC, et al. 2015 American   Endocrinology: from the Beginning to the Future. Nucl Med
               Thyroid Association management guidelines for adult   Mol Imaging. 2022;56(1):17-28.
               patients with thyroid  nodules  and differentiated  thyroid      doi: 10.1007/s13139-021-00728-0
               cancer: The American Thyroid Association guidelines task
               force on thyroid nodules and differentiated thyroid cancer.   17.  Moll L, Mcewan A, Shapiro B,  et al. Iodine-131 MIBG
               Thyroid. 2016;26:1-133.                            scintigraphy of neuroendocrine tumors other than
                                                                  pheochromocytoma  and  neuroblastoma.  J  Nucl Med.
               doi: 10.1089/thy.2015.0020                         1987;28(6):979-988.
            6.   Liu B, Zeng Y, Wang J, Zhao Z, Mu D, Kuang A. Lungs   18.  Binderup T, Knigge U, Loft A, et al. Functional imaging of
               absorbed dose in radioiodine therapy of differentiated   neuroendocrine tumors: A  head-to-head comparison of
               thyroid carcinoma with diffuse pulmonary metastases.   somatostatin receptor scintigraphy, 123I-MIBG scintigraphy,
               Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2010;27:851-854.  and 18F-FDG PET. J Nucl Med. 2010;51:704-712.
            7.   Murata K, Sumida Y, Murashima S, et al. A novel method      doi: 10.2967/jnumed.109.069765
               for the assessment of autonomic neuropathy in type  2
               diabetic patients: A comparative evaluation of 123I-MIBG   19.  Gould VE, Memoli V, Chejfec G, et al. The AUPD cell system
               myocardial scintigraphy and power spectral analysis of heart   and its neoplasms: Observations on the significance and
               rate variability. Diabet Med. 1996;13:266-272.     limitations of the concept. Surg Clin N Am. 1979;59:93-107.
               doi:    10.1002/(SICI)1096-9136(199603)13:3<266:AID-     doi: 10.1016/s0039-6109(16)41736-6
               DIA72>3.0.CO;2-4                                20.  Jaques S Jr., Tobes MC, Sisson JC, Baker JA, Wieland DM.
            8.   Mäntysaari  M,  Kuikka  J,  Mustonen  J,  et  al.  Noninvasive   Comparison of the sodium dependency of uptake of
               detection of cardiac sympathetic nervous dysfunction in   meta-lodobenzylguanidine and norepinephrine into
               diabetic patients using [123I] metaiodobenzylguanidine.   cultured bovine adrenomedullary cells.  Mol Pharmacol.
               Diabetes. 1992;41:1069-1075.                       1984;26(3):539-546.


            Volume 2 Issue 1 (2024)                         6                       https://doi.org/10.36922/arnm.2506
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