Simultaneous dynamic T 1 and T 2 * measurement for AIF assessment combined with DCE MRI in a mouse tumor model
Autor: | Mihaela Lupu, Melanie Heilmann, Joël Mispelter, Christine Walczak, Julien Vautier, Andreas Volk, Carole D. Thomas, Jean-Luc Dimicoli |
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Rok vydání: | 2007 |
Předmět: |
Pathology
medicine.medical_specialty Biophysics Mice Nude Mice Necrosis Nuclear magnetic resonance medicine Animals Humans Radiology Nuclear Medicine and imaging Arterial input function Mouse tumor Colorectal tumor Radiological and Ultrasound Technology medicine.diagnostic_test Chemistry Myocardium Heart Magnetic resonance imaging Magnetic Resonance Imaging Disease Models Animal Plasma concentration Dynamic contrast-enhanced MRI Necrotic tumor High field Colorectal Neoplasms |
Zdroj: | Magnetic Resonance Materials in Physics, Biology and Medicine. 20:193-203 |
ISSN: | 1352-8661 |
DOI: | 10.1007/s10334-007-0082-2 |
Popis: | A double-delay SR-MGE-SNAP sequence allowing simultaneous T1 and T2* measurement was developed for integrating arterial input function (AIF) measurement into DCE MRI. Implemented on a 4.7-T animal MR system, this technique was applied to mice with colorectal tumor xenografts. AIF, measured in the mouse heart, was modeled by a bi-exponential function, whereas tumor K(trans) and v(e) parameter maps were obtained from analysis with a two- compartment model using an individually measured AIF. AIF analysis of T2*-corrected data yielded A1 = 9.2 +/- 4.3 kg/l, A(2) = 4.2 +/- 0.8 kg/l, m1 = 2.3 +/- 1.1 min(-1), and m2 = 0.05 +/- 0.02 min(-1). The mean initial plasma concentration C ( p )(t = 0) = 8.0 +/- 2.7 mM was compatible with estimated 8.6 mM. Without T2*-correction distribution phase parameters A1, m1, and C(p)(t = 0) were underestimated. In tumors, neglect of T2* effects yielded mean K(trans) values which were reduced by 14% (P < 0.05), whereas v(e) showed only a slight non-significant reduction. Simultaneous measurement of DeltaR1 and DeltaR2* studied in highly and poorly vascularized and (pre-)necrotic tumor regions revealed complementary behavior of both parameters with respect to vascular properties. In conclusion, the presented measurement technique is a promising tool for dynamic MRI applications studied in animal models at high field strengths and/or with CA of high relaxivities, as it combines classical DCE MRI integrating AIF assessment with dynamic T2* measurement. |
Databáze: | OpenAIRE |
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