Technique and Theory of Hollow-fiber Phantom for Cerebral CT Perfusion
Author:
Affiliation:
1. Department of Radiological Services, Tokyo Women’s Medical University Hospital
2. Department of Diagnostic Imaging and Nuclear Medicine, Tokyo Women’s Medical University
Publisher
Japanese Society of Radiological Technology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjrt/73/2/73_2017_JSRT_73.2.128/_pdf
Reference13 articles.
1. 1) Klotz E, König M. Perfusion measurements of the brain: using dynamic CT for the quantitative assessment of cerebral ischemia in acute stroke. Eur J Radiol 1999; 30(3): 170–184.
2. 2) Mayer TE, Hamann GF, Baranczyk J, et al. Dynamic CT perfusion imaging of acute stroke. AJNR Am J Neuroradiol 2000; 21(8): 1441–1449.
3. 3) Lev MH, Segal AZ, Farkas J, et al. Utility of perfusion-weighted CT imaging in acute middle cerebral artery stroke treated with intra-arterial thrombolysis: prediction of final infarct volume and clinical outcome. Stroke 2001; 32(9): 2021–2028.
4. 4) Kudo K, Sasaki M, Yamada K, et al. Differences in CT perfusion maps generated by different commercial software: quantitative analysis by using identical source data of acute stroke patients. Radiology 2010; 254(1): 200–209.
5. 5) Eastwood JD, Lev MH, Azhari T, et al. CT perfusion scanning with deconvolution analysis: pilot study in patients with acute middle cerebral artery stroke. Radiology 2002; 222 (1): 227–236.
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1. The effect of scan interval and bolus length on the quantitative accuracy of cerebral computed tomography perfusion analysis using a hollow-fiber phantom;Radiological Physics and Technology;2017-10-16
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