A new non-invasive graphical method for quantification of cerebral blood flow with[ $$^{123}\hbox {I}$$ 123 I ] IMP

Author:

Kameyama MasashiORCID,Watanabe Kiyotaka

Funder

Nihon Medi-Physics

Publisher

Springer Science and Business Media LLC

Subject

Radiology Nuclear Medicine and imaging,General Medicine

Reference27 articles.

1. Kameyama M. Lassen’s equation is good approximation of permeability-surface model: new $$\alpha$$ α values for $$^{99\text{m}}$$ 99 m Tc-HMPAO and $$^{99\text{m}}$$ 99 m Tc-ECD. J Cereb Blood Flow Metab. 2014;34:1157–61.

2. Winchell H, Horst W, Braun L, Oldendorf W, Hattner R, Parker H. N-isopropyl-[ $$^{123}{\text{I}}$$ 123 I ] p-iodoamphetamine: single-pass brain uptake and washout; binding to brain synaptosomes; and localization in dog and monkey brain. J Nucl Med. 1980;21:947–52.

3. Susskind H, Weber DA, Ivanovic M, Wong CT, DeHaan CE, Gavin PR. Quantitative $$^{123}{\text{I}}$$ 123 I IMP and $$^{99\text{m}}{\text{Tc}}$$ 99 m Tc HMPAO imaging in the dog following cocaine administration. Nucl Med Biol. 1996;23:343–52.

4. Kuhl D, Barrio J, Huang S, Selin C, Ackermann R, Lear J, et al. Quantifying local cerebral blood flow by N-isopropyl- p-[ $$^{123}{\text{I}}$$ 123 I ] iodoamphetamine (IMP) tomography. J Nucl Med. 1982;23:196–203.

5. Podreka I, Baumgartner C, Suess E, Müller C, Brücke T, W L, et al. Quantification of regional cerebral blood flow with IMP-SPECT. reproducibility and clinical relevance of flow values. Stroke. 1989;20:183–91.

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