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Clinscan mr scanner

Manufactured by Bruker
Sourced in Germany

The ClinScan MR scanner is a magnetic resonance imaging (MRI) system designed for clinical applications. It provides high-quality imaging capabilities for various medical diagnostic procedures. The core function of the ClinScan MR scanner is to generate detailed images of the human body using strong magnetic fields and radio waves, allowing healthcare professionals to examine and assess patients' internal structures and physiological processes.

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2 protocols using clinscan mr scanner

1

Multimodal Imaging of Liver Metastases

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Approximately 2–4 days after the first detection of liver metastases by micro-CT imaging, animals were given a tail vein injection of ∼13 MBq of 64Cu-labeled anti-CEA mAb M5A-DOTA or anti-GD2 mAb hu14.18-DOTA (∼20 µg). For the blocking experiments, 500 µg of unlabeled M5A antibody was injected 3 h prior to the injection of 64Cu-labeled M5A antibody.
Ten-minute static PET scans were obtained at 3, 24 and 48 h after tracer injection on an Inveon dedicated small animal PET scanner (Siemens Preclinical Solutions, Knoxville, Tennessee, USA). Animals were anesthetized with 1.5% isoflurane (Abbott, Wiesbaden, Germany) evaporated in oxygen at a flow of 0.5 L/min, and body temperature was maintained at 37°C by a heating pad and a rectal temperature sensor. Images were reconstructed with an iterative ordered-subset expectation maximization algorithm. According to our standard protocol for mouse PET imaging, attenuation and scatter correction were not applied. Images were reconstructed in Inveon Acquisition Workplace 1.5.0.28 with OSEM2D with four iterations. The reconstructed voxel size was 0.776×0.776×0.796 mm. After each PET scan, the animals were transferred to a 7 T ClinScan MR scanner (Bruker, Ettlingen, Germany), and anatomic images were acquired with a 3D turbo-spin-echo (tse) sequence (TE = 205 ms, TR = 3000 ms, voxel size: 0.22×0.22×0.22 mm3, matrix size: 160×256×120).
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2

Longitudinal MRI of Mouse Brain after MSC Implantation

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One day before and 6 days after implantation of MSCs MR scans were performed. Therefore, a mixture of 1.5% isoflurane (Abbott, Wiesbaden, Germany) evaporated in oxygen at a flow of 0.5 L/min was used to anesthetize the animals. Mice were placed in a 7T ClinScan MR-Scanner (Bruker, Ettlingen, Germany) and T2-weighted images of the brain were acquired with a dedicated brain coil. A heating system connected to a rectal temperature sensor maintained the body temperature at 37 °C. Inveon Research Workplace 3.1 (Siemens Preclinical Solutions, Erlangen, Germany) was used for image analysis.
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