Abstract:
The present invention involves systems and methods for determining nerve proximity, nerve direction, and pathology relative to a surgical instrument based on an identified relationship between neuromuscular responses and the stimulation signal that caused the neuromuscular responses.
Abstract:
The present invention provides an implantable electrode device, a medical device/system thereof, and a diagnostic and/or therapeutic method using the medical device/system. The implantable electrode device includes a flexible non-conductive flap, one or more electrodes integrated with the flap, and one or more wires embedded within the flap and connected to the one or more electrodes. The invention exhibits numerous technical merits such as stable fixation of the electrode to a biological target in a patient.
Abstract:
The present invention provides an implantable electrode device, a medical device/system thereof, and a diagnostic and/or therapeutic method using the medical device/system. The implantable electrode device includes a flexible non-conductive flap, one or more electrodes integrated with the flap, and one or more wires embedded within the flap and connected to the one or more electrodes. The invention exhibits numerous technical merits such as stable fixation of the electrode to a biological target in a patient.
Abstract:
The present invention provides a method for treating overactive bladder (OAB) and secondary fecal incontinence. The method includes (i) providing a neurostimulator or a neurostimulating system with two neurostimulation leads; (ii) delivering the two neurostimulation leads to two nerve sites respectively; and (iii) neurostimulating the two nerve sites in a coordinated manner with the two neurostimulation leads.
Abstract:
The present disclosure involves an electronic apparatus for programming an implantable medical device to provide a stimulation therapy for a patient. The electronic apparatus includes a user interface configured to communicate with a user, a memory storage configured to store executable instructions, and a computer processor configured to execute the instructions to implement a plurality of safety controls. The safety controls include: starting/stopping the stimulation therapy by starting the stimulation therapy after a predefined time delay but stopping the stimulation therapy instantaneously; disabling programming of the electronic apparatus and terminating any existing stimulation therapy in response to a low-battery status of the electronic apparatus; adjusting a value of a stimulation parameter of the stimulation therapy one predetermined step at a time, each adjustment corresponding to a separate user input; and restricting a range in which the user can set an upper limit and a lower limit of the stimulation parameter.
Abstract:
A stimulation system, such as a spinal cord stimulation (SCS) system, having a programmer and a patient feedback device for establishing a protocol to treat a patient. The programmer uses a computer assisted stimulation programming procedure for establishing the protocol. Also described are methods of treating a patient with a spinal cord stimulation system including the programmer and the patient feedback device.
Abstract:
A system for operating a medical device, the system comprises a medical device associated with a machine-readable representation of data and a medical programmer. The medical programmer includes a sensor configured to detect the machine-readable representation of data and a display configured to graphically display a digital image of the medical device associated with the machine-readable representation of data.
Abstract:
The present disclosure involves a medical system. The medical system includes a medical device configured to deliver a medical therapy to a patient, a clinician programmer configured to program the medical device, and a manufacturing database configured to store and maintain an electronic inventory of a plurality of types of medical devices. The clinician programmer is configured to acquire a visual representation of the medical device, generate an electronic ticket identifying the medical device based on the visual representation, and send the electronic ticket to the manufacturing database. The manufacturing database is configured to receive the electronic ticket from the clinician programmer and perform at least one of the following tasks in response to the received electronic ticket: updating the electronic inventory, analyzing a usage trend of the medical device, predicting a potential shortage of the medical device, and suggesting a production schedule for the medical device.
Abstract:
A surgical access system including a tissue distraction assembly and a tissue refraction assembly, both of which may be equipped with one or more electrodes for use in detecting the existence of (and optionally the distance and/or direction to) neural structures before, during, and after the establishment of an operative corridor to a surgical target site.