Automated dynamic pressure-responsive hyperpolarized gas...

F - Mech Eng,Light,Heat,Weapons – 17 – C

Patent

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Details

F17C 9/04 (2006.01) A61K 49/06 (2006.01) A61K 49/18 (2006.01) A61K 51/12 (2006.01) F17C 5/06 (2006.01) F17C 7/00 (2006.01) F17C 9/00 (2006.01)

Patent

CA 2493109

Methods, systems and computer program products for dispensing hyperpolarized gas include or operate a plurality of spaced apart individually operable valves positioned in fluid communication with and located along a gas flow path. The gas flow path that is intermediate the spaced apart valves defines at least one meted holding space with an associated volume that can be selectively isolated from the remainder of the gas flow path. The system and methods include a pressure sensor operably associated with the gas flow path and a control module operably associated with the plurality of spaced apart valves and the pressure sensor, the control module being configured to direct the operational sequence of the opening and closing of the valves, wherein, in operation, the control module directs a plurality of capture and release cycles, the cycles being successively carried out so to temporally isolate a predetermined portion of the gas flow path to capture and then release discrete amounts of gas therein.

L'invention concerne des procédés, des systèmes et des logiciels de distribution de gaz hyperpolarisés comprenant ou faisant fonctionner plusieurs vannes espacées, à fonctionnement individuel, disposées communiquantes avec un gaz et positionnées le long d'un trajet d'écoulement de ce gaz. Le trajet d'écoulement de gaz entre les vannes espacées définit au moins un espace de retenue borné avec un volume associé qui peut être sélectivement isolé du reste du trajet d'écoulement de gaz. Le système et les procédés comprennent un capteur de pression associé, de manière fonctionnelle, au trajet d'écoulement de gaz et un module de commande associé, de manière fonctionnelle, aux vannes espacées et au capteur de pression, le module de commande étant conçu afin de diriger la séquence opérationnelle de l'ouverture et de la fermeture des vannes, et, lors du fonctionnement, de diriger plusieurs cycles de capture et de libération, ces cycles étant successivement mis en oeuvre afin d'isoler temporairement une portion déterminée du trajet d'écoulement de gaz dans le but de capter et puis de libérer des quantités discrètes de gaz à distribuer.

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