Multiple-animal MR imaging using a 3T clinical scanner and multi-channel coil for volumetric analysis in a mouse tumor model
Creators
- 1. National Cancer Center Hospital East, Kashiwa, Chiba (Japan)
- 2. GE Healthcare Japan Ltd., Hino, Tokyo (Japan)
- 3. Tokyo Metropolitan Univ., Graduate School of Human Health Sciences, Hachioji, Tokyo (Japan)
Description
Multiple small-animal magnetic resonance (MR) imaging to measure tumor volume may increase the throughput of preclinical cancer research assessing tumor response to novel therapies. We used a clinical scanner and multi-channel coil to evaluate the usefulness of this imaging to assess experimental tumor volume in mice. We performed a phantom study to assess 2-dimensional (2D) geometric distortion using 9-cm spherical and 32-cell (8 x 4 one-cm2 grids) phantoms using a 3-tesla clinical MR scanner and dedicated multi-channel coil composed of 16 5-cm circular coils. Employing the multi-channel coil, we simultaneously scanned 6 or 8 mice bearing sarcoma 180 tumors. We estimated tumor volume from the sum of the product of tumor area and slice thickness on 2D spin-echo images (repetition time/echo time, 3500/16 ms; in-plane resolution, 0.195 x 0.195 x 1 mm3). After MR acquisition, we excised and weighed tumors, calculated reference tumor volumes from actual tumor weight assuming a density of 1.05 g/cm3, and assessed the correlation between the estimated and reference volumes using Pearson's test. Two-dimensional geometric distortion was acceptable below 5% in the 9-cm spherical phantom and in every cell in the 32-cell phantom. We scanned up to 8 mice simultaneously using the multi-channel coil and found 11 tumors larger than 0.1 g in 12 mice. Tumor volumes were 1.04±0.73 estimated by MR imaging and 1.04±0.80 cm3 by reference volume (average±standard deviation) and highly correlated (correlation coefficient, 0.995; P<0.01, Pearson's test). Use of multiple small-animal MR imaging employing a clinical scanner and multi-channel coil enabled accurate assessment of experimental tumor volume in a large number of mice and may facilitate high throughput monitoring of tumor response to therapy in preclinical research. (author)
Additional details
Publishing Information
- Journal Title
- Magnetic Resonance in Medical Sciences
- Journal Volume
- 10
- Journal Issue
- 4
- Journal Page Range
- p. 229-237
- ISSN
- 1347-3182
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 43069403
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Descriptors DEI
- MICE; NMR IMAGING; PHANTOMS; SARCOMAS; SIGNAL-TO-NOISE RATIO; SPIN ECHO; THICKNESS; TWO-DIMENSIONAL CALCULATIONS; VOLUMETRIC ANALYSIS
- Descriptors DEC
- ANIMALS; CHEMICAL ANALYSIS; DIAGNOSTIC TECHNIQUES; DIMENSIONLESS NUMBERS; DIMENSIONS; DISEASES; MAMMALS; MOCKUP; NEOPLASMS; QUANTITATIVE CHEMICAL ANALYSIS; RODENTS; STRUCTURAL MODELS; VERTEBRATES