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Brian Kelleher

Brian Kelleher, Del Mar, CA US

Patent application numberDescriptionPublished
20090270901Degradable detachment mechanisms for implantable devices - Described herein are degradable detachment mechanisms for implantable devices and assemblies comprising these devices. Also provided are methods of using the detachment mechanisms and assemblies.10-29-2009
20090275971Energy activated preloaded detachment mechanisms for implantable devices - Described herein are energy-activated preloaded detachment mechanisms for implantable devices and assemblies comprising these detachment mechanisms. Also provided are methods of using the detachment mechanisms and assemblies.11-05-2009
20110098730Soft Tissue Anchoring Methods and Devices - Novel devices (04-28-2011

Patent applications by Brian Kelleher, Del Mar, CA US

Brian Kelleher, Ramona, CA US

Patent application numberDescriptionPublished
20100160934Device and Method for Endoluminal Therapy - A device and method for selectively engaging or penetrating a layer of a luminal organ wall where the luminal organ wall has a plurality of layers including an outermost layer and an innermost layer adjacent to the lumen of the organ. The device and method select one of the plurality of layers of the organ wall other than the innermost layer and deploy from within the lumen of the organ a tissue device through the innermost layer to a specific depth to engage or penetrate the selected one of the plurality of layers. The device and method may be employed to create luminal pouches or restrictive outlets. In a stomach organ, the device and methods may be employed to treat obesity by forming a gastric pouch with or without a restrictive outlet.06-24-2010

Brian Kelleher, San Diego, CA US

Patent application numberDescriptionPublished
20090093767Devices and methods for endolumenal therapy - The present invention is directed generically to a means for altering the ability of the mammalian body to absorb nutritive content from ingested foodstuffs, and more specifically to an apparatus and method of use for an endolumenal sleeve (referred to also as an “intragastrointestinal device” or “gastrointestinal device”) positioned in the mammalian gastrointestinal (GI) tract. A suitable endolumenal sleeve is comprised of an anchor element and an opening at a proximal end, an elongate lumen or hollow open-ended tube having a transverse dimension, and a distal orifice. Optionally, an exterior aspect of the elongate lumen may include additional modes of attachment to the tissues walls of the GI tract through the use of one or more means for promoting tissue in-growth. The endolumenal sleeve is retained in the GI tract such that a substantial fraction of the food and liquids passing through the GI tract is channeled into the proximal opening and through an interlumenal space defined within the interior space of the endolumenal sleeve. Within the endolumenal sleeve there may be one or more restrictive means to constrain, impede or otherwise control the operative flow of material through the device. An individual restrictive means can either be of a fixed geometry or such means may include one or more elements which are adjustable in nature or function. The elongate lumen of the endolumenal sleeve is formed of a polymer composition suitable for controlled ingress of biological secretions, egress of certain selected nutritional elements, and may comprise either a single tubular structure or a multi-section (i.e. articulated and/or multiple lumen) assembly. When the endolumenal sleeve is in situ within the mammalian gastro-intestinal system, ingested foodstuffs are conveyed from the proximal end to said distal orifice. In typical applications, the proximal end of the endolumenal sleeve is positioned within the physiological region extending from the lower esophagus to the duodenum and the distal orifice is positioned within the physiological region extending from the upper duodenum to the lower jejunum, though further extension into the lower intestine is possible. Through proper selection of position for the endolumenal sleeve proximal and distal ends, combined by selection of the composition used in the fabrication of the elongate lumen, it is possible to finitely control the degree of nutritive absorption performed by the gastrointestinal tract.04-09-2009
20090093839Devices and methods for augmenting extragastric banding - The present invention is directed generically to a means for altering the ability of the mammalian body to absorb nutritive content from ingested foodstuffs, and more specifically to an apparatus and method of use for an endolumenal sleeve (referred to also as an “intragastrointestinal device” or “gastrointestinal device”) positioned in the mammalian gastrointestinal (GI) tract. A suitable endolumenal sleeve is comprised of an anchor element and an opening at a proximal end, an elongate lumen or hollow open-ended tube having a transverse dimension, and a distal orifice. Optionally, an exterior aspect of the elongate lumen may include additional modes of attachment to the tissues walls of the GI tract through the use of one or more means for promoting tissue in-growth. The endolumenal sleeve is retained in the GI tract such that a substantial fraction of the food and liquids passing through the GI tract is channeled into the proximal opening and through an interlumenal space defined within the interior space of the endolumenal sleeve. Within the endolumenal sleeve there may be one or more restrictive means to constrain, impede or otherwise control the operative flow of material through the device. An individual restrictive means can either be of a fixed geometry or such means may include one or more elements which are adjustable in nature or function. The elongate lumen of the endolumenal sleeve is formed of a polymer composition suitable for controlled ingress of biological secretions, egress of certain selected nutritional elements, and may comprise either a single tubular structure or a multi-section (i.e. articulated and/or multiple lumen) assembly. When the endolumenal sleeve is in situ within the mammalian gastro-intestinal system, ingested foodstuffs are conveyed from the proximal end to said distal orifice. In typical applications, the proximal end of the endolumenal sleeve is positioned within the physiological region extending from the lower esophagus to the duodenum and the distal orifice is positioned within the physiological region extending from the upper duodenum to the lower jejunum, though further extension into the lower intestine is possible. Through proper selection of position for the endolumenal sleeve proximal and distal ends, combined by selection of the composition used in the fabrication of the elongate lumen, it is possible to finitely control the degree of nutritive absorption performed by the gastrointestinal tract.04-09-2009
20100114124Method and apparatus for partioning an organ within the body - The preferred methods and devices described herein relate to devices and methods for joining segments of soft tissue together. More particularly this invention relates to partitioning a body cavity or organ by joining together portions of the organ interior walls. This securement is particularly useful in gastric volume reduction surgery whereby the volume of the stomach is reduced by partitioning the stomach into a smaller pouch.05-06-2010

Patent applications by Brian Kelleher, San Diego, CA US

Brian S. Kelleher, Ramona, CA US

Patent application numberDescriptionPublished
20100036226NERVE SURVEILLANCE CANNULAE SYSTEMS - An expandable tip cannula system, comprising: a hollow cannula shaft having a proximal end and a distal end; and an expandable tip mounted at the distal end of the hollow cannula shaft, the expandable tip comprising a plurality of generally-triangular shaped petals held together in a radially-inwardly tapered arrangement between adjacent petals, each petal comprising a nerve sensing electrode disposed therein. 02-11-2010

Patent applications by Brian S. Kelleher, Ramona, CA US

Brian Kelleher, Palo Alto, CA US

Patent application numberDescriptionPublished
20110145468AGGREGATING UNOCCUPIED PCI-E LINKS TO PROVIDE GREATER BANDWIDTH - Embodiments of the claimed subject matter are directed to systems and a method that allows the aggregation of multiple interfaces of a single data communication bus to provide greater bandwidth for communication between a peripheral device and system memory within a computing system. In one embodiment, a system is provided wherein the unoccupied interfaces of the data communication bus is aggregated with an occupied interface coupled to a peripheral device to increase the bandwidth of data transfer requests between the peripheral device and the system memory.06-16-2011