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Arthur E. Uber, Iii, Pittsburgh US

Arthur E. Uber, Iii, Pittsburgh, PA US

Patent application numberDescriptionPublished
20080294096Delivery of Agents Such as Cells to Tissue - A system for delivering a fluid comprising cells to tissue of a patient, includes: a least a first container for holding an injection fluid in which the agent is carried; a first powered drive in operative connection with the container, the first powered drive being operable to pressurize contents of the container; a control system in operative connection with the first powered drive and operative to control the first powered drive; a fluid path in fluid connection with the container, the fluid path including a patient interface adapted to deposit the cells within tissue of the patient; a sensor system; and a communication system in connection with at least the control system and the sensor system. The communication system is adapted to provide information to the control system. The control system in adapted to transmit a control signal to at least the first powered drive based at least in part on information provided to the control system. The cells can for example be pregenitor cells or stem cells.11-27-2008
20090012497SYSTEMS AND METHODS OF DELIVERING A DILATED SLURRY TO A PATIENT - A system for delivering a slurry to a patient includes a fluid, a material that is non-dissolvable or immiscible in the fluid, thereby forming a slurry, a container adapted to contain the slurry and a supernate of the slurry, the container defining an outlet through which the slurry is delivered to the patient, a fluidizing system associated with the container, a pressurizing mechanism adapted to create a pressure to cause the slurry contained within the container to flow for delivery to the patient and a control unit in communication with and adapted to control the fluidizing system and the pressurizing mechanism. The fluidizing system is adapted to effect dilation of the slurry while maintaining at least a portion of the supernate.01-08-2009
20090070342SYSTEM AND METHOD FOR AUTOMATED BENCHMARKING FOR THE RECOGNITION OF BEST MEDICAL PRACTICES AND PRODUCTS AND FOR ESTABLISHING STANDARDS FOR MEDICAL PROCEDURES - A system for the collection, management, and dissemination of information relating at least to a medical procedure is disclosed. The system includes a user interface adapted to provide raw data information at least about one of a patient, the medical procedure, and a result of the medical procedure. A medical device communicates with the user interface, receives the raw data information from the user interface, and generates operational information during use. A central database communicates at least with the medical device and receives data from the medical device. The central database is used to create related entries based on the raw data information and the operational information and optionally transmits the related entry to the medical device or the medical device user. The related entry includes information that provides guidance based on previously tabulated, related medical procedures. A system for the iterative analysis of medical standards is also disclosed along with methods for the evaluation of medical procedures and standards.03-12-2009
20090177050INTEGRATED MEDICAL IMAGING SYSTEMS - An image acquisition system operable to obtain an image of at least a portion of a body, includes an imaging system including at least one energy sensor to measure energy from the body, an image creating system adapted to create an image based at least in part from a signal from the at least one energy sensor, an image display in operative connection with the image creating system and a user interface in operative connection with the image creating system. The image acquisition system further includes a fluid injector system including at least one source of a first fluid, a pressurizing system in operative connection with the source of the first fluid, and a user interface in operative connection with the pressurizing system. The imaging system and the injector system are operatively integrated in at least two of the following and/or other aspects: physical connection, data input via at least one common user interface, displaying of information via at least one common display, electrical connection to at least one common power conditioning system, receipt of common data from at least one patient physiological sensor, at least one common communication port to at least one information system, and a common control system (including any common portion of a control system).07-09-2009
20090247866DATA COMMUNICATION AND CONTROL FOR MEDICAL IMAGING SYSTEMS - A method of coordinating an imaging procedure and an injection procedure, the method comprising the steps of providing an injector system having first and second pressurizing units for pressurizing a contrast medium and a diluent for injection into a patient; providing an imaging system for producing an image of an internal region of the patient from a signal resulting from energy applied to the patient; and providing a data interface interconnecting the injector and imaging systems for enabling exchange of digital information therebetween such that the digital information transmitted between the systems is usable to enable closed loop control of at least one of the injection and the imaging procedures during which the contrast medium and the diluent injected into the patient is adjustable so as to achieve a desired level of enhancement within the internal region of the patient of which the images are acquired during the imaging procedure.10-01-2009
20090326370INTERFACE UNIT FOR USE WITH INJECTORS AND IMAGING SYSTEMS AND RELATED DEVICES - A system for producing a contrast-enhanced medical image of a patient includes a source of a contrast or enhancement medium, a pressurizing unit in fluid connection with the source of contrast or enhancement medium, an energy source operable to apply energy to a region of the patient, an imaging unit providing a visual display of an internal view of the patient based upon a signal resulting from the energy applied to the region of the patient, and a control unit. In an embodiment, the signal is affected by a condition of the contrast or enhancement medium in the patient. To control the procedures, the control unit adjusts the condition of the contrast or enhancement medium in the patient based upon the signal. A communication interface preferably enables information between an injector subsystem and an imaging subsystem.12-31-2009
20100114064MITIGATION OF CONTRAST-INDUCED NEPHROPATHY - A system, includes a pressurizing mechanism to pressurize a fluid including a contrast enhancement agent for delivery to a patient; and a control system in operative connection with the pressurizing mechanism. The control system includes a system to adjust control of fluid injection based upon a measurement of renal function of the patient.05-06-2010
20100174183MULTIPLE LUMEN DIFFUSION CATHETER - A method and device for the simultaneous or sequential introduction of multiple fluids into the bloodstream including a multiple lumen catheter with corresponding multiple hole sets. By introducing a second fluid such as saline, the concentration and bolus of a first fluid, such as a contrast agent, can be controlled and optimized.07-08-2010
20100185040FLUID DELIVERY SYSTEMS, DEVICES AND METHODS FOR DELIVERY OF HAZARDOUS FLUIDS - A system for injecting a patient, includes a container enclosing a hazardous pharmaceutical; a first pump to deliver a hazardous pharmaceutical to a patient and a fluid path operably connected to the first pump, the container, and the patient. The system further includes a hazardous material containment suitable to confine the hazardous pharmaceutical during connection of the hazardous pharmaceutical container to the fluid path.07-22-2010
20110028908SYSTEM FOR PROCESSING CELLS AND CONTAINER FOR USE THEREWITH - A system for processing cells (and/or other injectate components) includes a container and a plunger adapted to be slidably positioned within the container. The system includes at least one inlet port through which a fluid can enter the system and at least one effluent port through which an effluent can exit the system. The plunger section forms a sealing engagement with the inner wall of the container such that rearward motion of the plunger is adapted to draw fluid into the system via the inlet and forward motion of the plunger is adapted to force effluent out of the system via the effluent port.02-03-2011

Patent applications by Arthur E. Uber, Iii, Pittsburgh, PA US