| Patent application number | Description | Published |
| 20100305655 | METHODS AND APPARATUS FOR TREATING GASTROINTESTINAL DISORDERS USING ELECTRICAL SIGNALS - A method of treating motility conditions, such as an arrest of intestinal peristalsis, includes introducing an electrode through the esophagus and into the digestive tract of the patient and applying an electrical impulse to the electrode to modulate one or more nerves within the digestive tract such that intestinal peristalsis function is at least partially improved. | 12-02-2010 |
| 20110000496 | Systems and Mehtods for Treating Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating wounds in patients who lack the innate ability to regulate glucose (e.g., diabetic patients). In one aspect of the invention, a method includes positioning an internal bypass device within the duodenum to inhibit contact between chyme passing therethrough and an internal wall of the duodenum and maintaining the internal bypass device within the duodenum for a sufficient period of time to decrease insulin resistance and reduce a blood glucose level in the patient. The internal bypass device increases peripheral blood flow and elevates an immune system response to accelerate healing of the wound. | 01-06-2011 |
| 20110004146 | Systems and Methods for Treating of Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, a device comprises a hollow sleeve sized and shaped for positioning within a duodenum of the patient, an anchor coupled to the proximal end of the sleeve and being sized and shaped to inhibit distal migration of the sleeve and a plurality of elastomeric objects coupled to the distal end of the sleeve and being sized and shaped to inhibit proximal migration of the sleeve through a pylorus of the patient. The bypass device can be placed and removed endoscopically through the patient's esophagus in a minimally invasive outpatient procedure and it is “self-anchoring” and does not require invasive tissue fixation within the patient's GI tract, thereby reducing collateral tissue damage and minimizing its impact on the digestive process. | 01-06-2011 |
| 20110004228 | Systems and Methods for Treating Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and/or controlling obesity and type II diabetes. In one aspect of the invention, a device for treating obesity includes a flow restrictor and an anchor coupled to the flow restrictor. The flow restrictor is movable between a first or collapsed configuration sized and shaped for endoscopic advancement through the patient's esophagus and into a distal region of the stomach and a second or operative configuration sized and shaped for inhibiting a flow of chyme from the stomach to the pyloric sphincter. It is believed that this will cause the prolongation of satiety, and result in fewer meals being eaten and/or smaller meals being ingested. The anchor is movable between a first or collapsed configuration sized and shaped for advancement through the esophagus, stomach and pyloric sphincter and into the proximal region of the duodenum and a second or operative configuration sized and shaped to inhibit proximal movement of the anchor through the pyloric sphincter. | 01-06-2011 |
| 20110004229 | Systems and Methods for Treating Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, a bypass device includes gastric and duodenal anchors coupled to each other and positioned on either side of the pylorus and a hollow sleeve designed to extend from the pylorus through at least a proximal portion of a patient's small intestine. The gastric and duodenal anchors are movable between collapsed configurations for advancement through the esophagus and an expanded configuration for inhibiting movement of the anchors through the pyloric sphincter. Thus, the bypass device can be placed and removed endoscopically through the patient's esophagus in a minimally invasive outpatient procedure and it is “self-anchoring” and does not require invasive tissue fixation within the patient's GI tract, thereby reducing collateral tissue damage and minimizing its impact on the digestive process. | 01-06-2011 |
| 20110004234 | Systems and Methods for Treatment of Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, an internal bypass device includes gastric and duodenal anchors coupled to each other and positioned on either side of the pylorus and a hollow sleeve designed to extend from the pylorus through at least a proximal portion of a patient's small intestine. The gastric and duodenal anchors are movable between collapsed configurations for advancement through the esophagus and an expanded configuration for inhibiting movement of the anchors through the pyloric sphincter. Thus, the bypass device can be placed and removed endoscopically through the patient's esophagus in a minimally invasive outpatient procedure and it is “self-anchoring” and does not require invasive tissue fixation within the patient's GI tract, thereby reducing collateral tissue damage and minimizing its impact on the digestive process. | 01-06-2011 |
| 20110004236 | Systems and Methods for Treating Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, a delivery system for deploying an implant to a target region in the GI tract of a patient comprises an enclosure and an introducer. The enclosure houses at least a portion of the implant and comprises a material designed to dissolve within the patient. The introducer is coupled to the enclosure and configured for advancing the enclosure (and the implant housed therein) through an esophagus and into a stomach of the patient. In a preferred embodiment, the enclosure comprises a biocompatible material that will dissolve in less than one hour, preferably less than 30 minutes, such as gelatin or the like. | 01-06-2011 |
| 20110004320 | SYSTEMS AND METHODS FOR TREATMENT OF OBESITY AND TYPE 2 DIABETES - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, an internal bypass device includes gastric and duodenal anchors coupled to each other and positioned on either side of the pylorus and a hollow sleeve designed to extend from the pylorus through at least a proximal portion of a patient's small intestine. The gastric and duodenal anchors are movable between collapsed configurations for advancement through the esophagus and an expanded configuration for inhibiting movement of the anchors through the pyloric sphincter. Thus, the bypass device can be placed and removed endoscopically through the patient's esophagus in a minimally invasive outpatient procedure and it is “self-anchoring” and does not require invasive tissue fixation within the patient's GI tract, thereby reducing collateral tissue damage and minimizing its impact on the digestive process. | 01-06-2011 |
| 20110046432 | NON-INVASIVE TREATMENT OF BRONCHIAL CONSTRICTION - Devices, systems and methods are disclosed for treating bronchial constriction related to asthma, anaphylaxis or chronic obstructive pulmonary disease. The treatment comprises transmitting impulses of energy non-invasively to selected nerve fibers that are responsible for smooth muscle dilation. The transmitted energy impulses, comprising magnetic and/or electrical, mechanical and/or acoustic, and optical and/or thermal energy, stimulate the selected nerve fibers. | 02-24-2011 |
| 20110046537 | Systems and Methods for Treatment of Obesity and Type 2 Diabetes - The present invention provides systems and methods for treating and controlling obesity and/or type II diabetes. In one aspect of the invention, a device comprises a hollow sleeve sized and shaped for positioning within a duodenum of the patient, an anchor coupled to the proximal end of the sleeve and being sized and shaped to inhibit distal migration of the sleeve and a plurality of elastomeric objects coupled to the distal end of the sleeve and being sized and shaped to inhibit proximal migration of the sleeve through a pylorus of the patient. The bypass device can be placed and removed endoscopically through the patient's esophagus in a minimally invasive outpatient procedure and it is “self-anchoring” and does not require invasive tissue fixation within the patient's GI tract, thereby reducing collateral tissue damage and minimizing its impact on the digestive process. | 02-24-2011 |
| 20110125203 | Magnetic Stimulation Devices and Methods of Therapy - Devices and systems are disclosed for the non-invasive treatment of medical conditions through delivery of energy to target tissue, comprising a source of electrical power, a magnetically permeable toroidal core, and a coil that is wound around the core. The coil and core are embedded in a continuous electrically conducting medium, which is adapted to have a shape that conforms to the contour of an arbitrarily oriented target body surface of a patient. The conducting medium is applied to that surface by any of several disclosed methods, and the source of power supplies a pulse of electric charge to the coil, such that the coil induces an electric current and/or an electric field within the patient, thereby stimulating tissue and/or one or more nerve fibers within the patient. The invention shapes an elongated electric field of effect that can be oriented parallel to a long nerve. In one embodiment, the device comprises two toroidal cores that lie adjacent to one another. | 05-26-2011 |
| 20110125213 | NON-INVASIVE TREATMENT OF BRONCHIAL CONSTRICTION - Devices, systems and methods are disclosed for treating bronchial constriction related to asthma, anaphylaxis or chronic obstructive pulmonary disease. The treatment comprises transmitting impulses of energy non-invasively to selected nerve fibers that are responsible for smooth muscle dilation. The transmitted energy impulses, comprising magnetic and/or electrical, mechanical and/or acoustic, and optical and/or thermal energy, stimulate the selected nerve fibers. | 05-26-2011 |
| 20110152967 | NON-INVASIVE TREATMENT OF NEURODEGENERATIVE DISEASES - Methods and devices are disclosed for the non-invasive treatment of neurodegenerative diseases through delivery of energy to target nervous tissue, particularly the vagus nerve. The devices include a magnetic stimulator having coils with toroidal windings, which are in contact with an electrically conducting medium that is adapted to conform to the contour of a target body surface of a patient. The coils induce an electric current and/or an electric field within the patient, thereby stimulating nerve fibers within the patient. The stimulation brings about reduction of neuroinflammation in patients suffering from conditions comprising Alzheimer's Disease, Parkinson's Disease, Multiple Sclerosis, postoperative cognitive dysfunction and postoperative delirium. Reduction in inflammation is effected by enhancing the anti-inflammatory competence of cytokines such as TGF-beta, wherein a retinoid or components of the retinoic acid signaling system provide an anti-inflammatory bias, by enhancing anti-inflammatory activity of a neurotrophic factor such as NGF, GDNF, BDNF, or MANF, and/or by inhibiting the activity of pro-inflammatory cytokines such as TNF-alpha. | 06-23-2011 |