Abstract:
A dual modality CT/MRI integrated system for the diagnosis of acute strokes and treating a patient and methods thereof. The method includes: immobilizing a patient or a portion thereof to a support; accommodating the patient or portion thereof in a CT device; scanning the same; placing the patient or portion thereof within an MRI device and imaging the same such that the orientation of the patient or portion thereof in the CT scanning and the MRI imaging is identical or at least spatially (2D or 3D) retrievable.
Abstract:
A neonate immobilizer that includes a lower torso segment having dorsal side and ventral side, an upper torso segment having the same, and a median navel segment in between, having a lateral side. The three segments are interconnected to form a continuous restraining shell along the dorsal side. The lower and upper segments form an access aperture around the navel when restraining the neonate. The aperture is located and configured to permit visual inspection and physical access to the neonate's navel.
Abstract:
The present invention includes a system and method for generating images of at least one Unhyperpolarized portion of a specimen by indirectly hyperpolarizing the at least one portion by irradiating the unhyperpolarized portion by radiation emitted from the de-excitation of excited nuclei of a hyperpolarized substance. The hyperpolarized substance is located in proximity to the specimen. Typically, the images are generated by an MRI/NMR device.
Abstract:
Methods of fastening a cage with a fastening system in an MRD. One method includes: assembling: a plurality of pole pieces; a plurality of side magnets, the side magnets substantially enclosing the pole pieces and thereby defining a magnetic envelope and enclosed volume therein; a plurality of side walls, the side walls substantially enclosing the side magnets; a plurality of face walls and a plurality of fastening rods; and passing a plurality of fastening rods through at least one of the side magnets and at least one of the pole pieces and fastening them in an effective measure, such that the rods physically interconnects at least one pair of side walls.
Abstract:
A system for determining the level of shielding in a magnetic resonance imaging (MRI) apparatus and for real-time reduction of noise produced during MRI data acquisition. The system includes: at least one antenna; data acquirer in communication with the at least one antenna and in communication with the RF pulse generator; and a synchronizer for synchronizing the acquisition of data by the data acquirer with MRI pulses being produced by the MRI apparatus.
Abstract:
An electrically earthed protecting sleeve that reduces the electromagnetic energy propagation from a magnetic bore to the outer environment surrounding a magnet. The sleeve has a distal portion located within an open bore of an magnetic resonance device (MRD) and a proximal portion attachable to an aperture of the MRD. The sleeve accepts a non-imaged portion of a body portion inserted within the bore while the imaged portion protrudes from the distal end of sleeve.
Abstract:
A protective cover for an open bore MRI is disclosed. The cover comprises a semi-permeable barrier, MRI shielding, and physical shielding; is at least partially transparent; and it comprises fluid connection means for providing a fluid connection between an inner open bore of said open bore MRI and an environment external to said open bore MRI.
Abstract:
An imaging system having an imaging device for imaging at least a portion of an animal. The imaging device may be of an X-ray computed tomography (CT) type, a positron emission tomography (PET) type, a single-photon emission computed tomography (SPECT) type, or a fluorescence and phosphorescence microscopy (FPM) type. The system also includes: a photon transmitter that transmits photons and that is introducible within the body of an animal; at least one imaging photon detector that detects fluorescence excited within the animal by the transmitted photons; and an image processor that superimposes an imaging device image and a photon detector image so as to yield a combined image.
Abstract:
Systems and methods for providing guided slicing of histological samples. The samples are acquired, spacially labeled with a fiducial marker, and imaged with a scanning system. The images are analyzed, either manually, semi-automatically or automatically, and likely locations of pathologies are identified. A slicing program is then generated and the sample sliced according to the slicing program, thereby ensuring that likely locations of pathologies are analyzed.
Abstract:
Generally, a system for generating a magnetic field having a desired magnetic field strength and/or a desired magnetic field direction is provided. The system can include a plurality of magnetic segments and/or a plurality of ferromagnetic segments. Each magnetic segment can be positioned adjacent to at least one of the plurality of magnetic segments. Each ferromagnetic segment can be positioned adjacent to at least one of the plurality of magnetic segments. In various embodiments, a size, shape, positioning and/or number of magnetic segments and/or ferromagnetic segments in the system, as well as a magnetization direction of the magnetic segments can be predetermined based on, for example, predetermined parameters of the system (e.g., a desired magnetic field strength, direction and/or uniformity of the magnetic field, a desired elimination of a magnetic fringe field and/or total weight of the system) and/or based on a desired application of the system (e.g., performing a magnetic resonance imaging of at least a portion of a patient and/or performing a magnetic resonance spectroscopy of a sample).