Literature DB >> 10918313

Imaging blood flow in brain tumors using arterial spin labeling.

A C Silva1, S G Kim, M Garwood.   

Abstract

Measurements of tumor blood flow (TBF) are important for understanding tumor physiology and can be valuable in selecting and evaluating therapies. Brain tumors typically present reduced blood flows compared to normal brain tissue. This study shows that the arterial spin labeling (ASL) technique can be used to measure TBF non-invasively in a rat glioma model. Results show that TBF in the core (36.3 +/- 18.9 ml/100g/min, n=4) and peripheral regions (85.3 +/- 26.9 ml/100g/min, n=4) of the tumor are significantly reduced and show considerable heterogeneity compared to cerebral blood flow (CBF) of normal brain tissue (147.7 +/- 31.1 ml/100g/min, n=4), while T(1) in the tumor (2.6 +/- 0.1 sec) is significantly elevated compared to normal tissue T(1) (2.0 +/- 0.0 sec). These results strongly support the feasibility of using the ASL technique to evaluate different cancer treatment strategies, to monitor the effects of agents designed to modulate TBF and oxygenation (e.g., carbogen gas), and to assess and guide the use of anti-angiogenic agents. Magn Reson Med 44:169-173, 2000. Copyright 2000 Wiley-Liss, Inc.

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Year:  2000        PMID: 10918313     DOI: 10.1002/1522-2594(200008)44:2<169::aid-mrm1>3.0.co;2-u

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  28 in total

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Review 3.  Imaging biomarkers of angiogenesis and the microvascular environment in cerebral tumours.

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4.  Antiangiogenic Effect of Bevacizumab: Application of Arterial Spin-Labeling Perfusion MR Imaging in a Rat Glioblastoma Model.

Authors:  T J Yun; H R Cho; S H Choi; H Kim; J-K Won; S-W Park; J-H Kim; C-H Sohn; M H Han
Journal:  AJNR Am J Neuroradiol       Date:  2016-05-12       Impact factor: 3.825

5.  Growth properties of SF188/V+ human glioma in rats in vivo observed by magnetic resonance imaging.

Authors:  Rachel Grossman; Betty Tyler; Henry Brem; Charles G Eberhart; Silun Wang; De-Xue Fu; Zhibo Wen; Jinyuan Zhou
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6.  A combined theoretical and in vitro modeling approach for predicting the magnetic capture and retention of magnetic nanoparticles in vivo.

Authors:  Allan E David; Adam J Cole; Beata Chertok; Yoon Shin Park; Victor C Yang
Journal:  J Control Release       Date:  2011-02-02       Impact factor: 9.776

7.  Molecular Imaging of Cancer: Applications of Magnetic Resonance Methods.

Authors:  Barjor Gimi; Arvind P Pathak; Ellen Ackerstaff; Kristine Glunde; Dmitri Artemov; Zaver M Bhujwalla
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8.  Arterial spin labeling perfusion magnetic resonance imaging of non-human primates.

Authors:  Xiaodong Zhang; Chun-Xia Li
Journal:  Quant Imaging Med Surg       Date:  2016-10

9.  [Noninvasive measurement of relative cerebral blood flow with the blood bolus MRI arterial spin labeling: basic physics and clinical applications].

Authors:  M-A Weber; A Kroll; M Günther; S Delorme; J Debus; F L Giesel; M Essig; H-U Kauczor; L R Schad
Journal:  Radiologe       Date:  2004-02       Impact factor: 0.635

10.  Does arterial spin-labeling MR imaging-measured tumor perfusion correlate with renal cell cancer response to antiangiogenic therapy in a mouse model?

Authors:  Rachel Schor-Bardach; David C Alsop; Ivan Pedrosa; Stephanie A Solazzo; Xiaoen Wang; Robert P Marquis; Michael B Atkins; Meredith Regan; Sabina Signoretti; Robert E Lenkinski; S Nahum Goldberg
Journal:  Radiology       Date:  2009-06       Impact factor: 11.105

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