Mouse Phenotyping with MRI
Fig. 1. The mouse sled used to position the mouse and provide physiological contacts (36). (a) The sled indicating the Velcro attachment to secure the mouse’s head. (b) A close-up…
Fig. 1. The mouse sled used to position the mouse and provide physiological contacts (36). (a) The sled indicating the Velcro attachment to secure the mouse’s head. (b) A close-up…
Fig. 1. Materials for reactive hyperemia surgery. (a) Occlusion tube. (b) Bisected end of occlusion tube through which the 6-lb test fishing line is threaded and which is placed into…
Fig. 1. MIP view of the renal vessels superimposed with a surface-rendered view of the kidneys for anatomical orientation. The angiogram was reconstructed from a 2D multislice dataset which was…
Fig. 1. MR imaging setup for rodents. A rat was placed supinely into a homemade plastic holder covered with a homemade mask connecting to an inhalation anesthesia system via a…
an applied field ” (7). Schenck goes on to highlight that only a perturbation parallel to the applied field is relevant in NMR and that the perturbation is strongest within…
Fig. 1. Diagram of a spoiled, bright-blood gradient echo cine sequence frequently used in murine MRI: after the detection of the R-wave in the ECG, the same k-space line is…
Fig. 1. Photograph of a pig lying head first, supine, on the scanner patient table in front of a 1.5-T MR system. The animal is covered by two BodyMatrix RF…
Fig. 1. Illustration of the experimental setup for the lung MR imaging studies using hyperpolarized gas with free breathing. The top picture shows the homemade mask positioned on the head…
Fig. 1. 3D high-resolution whole body MRI of fixed mouse embryos (16.5 days of development). Multiple embryos in glass container, FOV (25.6 mm)3 with an isotropic resolution of 50 μm. (a) Axial…
Fig. 1. Schematic setup of the probehead when using a vertical bore main magnet. Fig. 2. A 27-mm TEM resonator with pressure-sensitive balloon for respiratory gating and cardiac triggering. Anesthesia…