Patent classifications
A61N1/36564
SYSTEM FOR PROVIDING STIMULATION PATTERN TO MODULATE NEURAL ACTIVITY
According to an embodiment of a method for providing neural stimulation, activity is sensed, and neural stimulation is automatically controlled based on the sensed activity. An embodiment determines periods of rest and periods of exercise using the sensed activity, and applies neural stimulation during rest and withdrawing neural stimulation during exercise. Other embodiments are provided herein.
METHOD FOR THE TREATMENT OF GALLSTONES
An apparatus for controlling the movement of bile and/or gallstones in the biliary duct of a patient, that comprises an implantable constriction device for gently constricting (i.e. without substantially hampering the blood circulation in the tissue wall) at least one portion of the tissue wall to influence the movement of bile and/or gallstones in the biliary duct, and a stimulation device for stimulating the wall portion of the tissue wall. A control device controls the stimulation device to stimulate the wall portion, as the constriction device constricts the wall portion, to cause contraction of the wall portion constricted by the constriction device to further influence the movement of bile and/or gallstones in the biliary duct. The apparatus can be used for actively moving the gallstones in the lumen, with a low risk of injuring the biliary duct.
HIS-BUNDLE OR BUNDLE BRANCH PACING CAPTURE VERIFICATION
Systems and methods for pacing cardiac conductive tissue are described. In an embodiment, a medical system includes an electrostimulation circuit to generate pacing pulses to stimulate a His bundle or a bunch branch. A sensing circuit senses a far-field ventricular activation, determines a cardiac synchrony indicator using the far-field ventricular activation in response to His bundle or bundle branch pacing, and verifies His-bundle capture status using the determined cardiac synchrony indicator. The system can determine a pacing threshold using the capture status under different stimulation strength values. The electrostimulation circuit can deliver stimulation pulses in accordance with the determined pacing threshold.
HYPERTENSION THERAPY
An implantable device for stimulating a heart to lower blood pressure, comprising: a stimulation unit configured to stimulate a ventricle, and a sensing unit for detecting atrial activity of the heart, wherein the stimulation unit is configured to stimulate the ventricle for at least one cardiac cycle with a predefined delay after detection of an atrial activity or to not stimulate the ventricle for at least one cardiac cycle.
INTRACARDIAC SENSORS WITH SWITCHABLE CONFIGURATIONS AND ASSOCIATED SYSTEMS AND METHODS
The present technology relates to intracardiac sensors and associated systems and methods. In some embodiments, the present technology includes a device for monitoring pressure within a patient's heart. The device can include an implantable capacitor having a capacitance value that is variable based on the pressure within the patients heart and a sensing circuit configured to measure the capacitance value. The device can also include an implantable inductor and a power circuit configured to wirelessly receive power from an external source via the inductor. When the device is in a first configuration, the capacitor can be electrically coupled to the sensing circuit and the inductor can be electrically coupled to the power circuit. When the device is in a second configuration, the capacitor can be electrically coupled to the inductor to form a resonant circuit.
IMPLANTABLE MEDICAL DEVICES FOR COMBINATION TREATMENTS
An implantable medical device configured to be planted within a subject. The medical device comprises: a first unit configured to detect pulses and output a first pulse to perform a first treatment; a second unit configured to output a second pulse to perform a second treatment; and_a control unit electrically connected to the first unit and the second unit. The control unit is configured to monitor activities of the first unit and the second unit. The control unit is also configured to prevent the first unit from mistakenly outputting the first pulses or failing to output the first pulses when a first body part of the subject needs the first pulses for the first treatment.
Methods and Systems for Lowering Blood Pressure Through Reduction of Ventricle Filling
Methods and devices for reducing ventricle filling volume are disclosed. In some embodiments, an electrical stimulator may be used to stimulate a patient's heart to reduce ventricle filling volume or even blood pressure. When the heart is stimulated in a consistent way to reduce blood pressure, the cardiovascular system may over time adapt to the stimulation and revert back to the higher blood pressure. In some embodiments, the stimulation pattern may be configured to be inconsistent such that the adaptation response of the heart is reduced or even prevented. In some embodiments, an electrical stimulator may be used to stimulate a patient's heart to cause at least a portion of an atrial contraction to occur while the atrioventricular valve is closed. Such an atrial contraction may deposit less blood into the corresponding ventricle than when the atrioventricular valve is opened throughout an atrial contraction.
CARDIAC PACING SENSING AND CONTROL
A cardiac pacing system having a pulse generator for generating therapeutic electric pulses, a lead electrically coupled with the pulse generator having an electrode, a first sensor configured to monitor a physiological characteristic of a patient, a second sensor configured to monitor a second physiological characteristic of a patient and a controller. The controller can determine a pacing vector based on variables including a signal received from the second sensor, and cause the pulse generator to deliver the therapeutic electrical pulses according to the determined pacing vector. The controller can also modify pacing characteristics based on variables including a signal received from the second sensor.
Leadless cardiac pacemaker with reversionary behavior
A ventricularly implantable medical device that includes a sensing module that is configured to detect an atrial fiducial and identify an atrial contraction based at least on part on the detected atrial fiducial. Control circuitry in the implantable medical device is configured to deliver a ventricular pacing therapy to a patient's heart based at least in part on the identified atrial contraction, and can automatically switch or revert the ventricular pacing therapies on the fly.
METHOD USING TREND ANALYSIS FOR CARDIAC TREATMENT WITH CALIBRATED AND POSITIONALLY CORRECTED BLOOD PRESSURE WATCHES, PRESSURE-PACE ALGORTIHMS, ARTIFICIAL INTELLIGENCE AND THORACIC ELECTRICAL BIOIMPEDANCE
The invention is a method of using thoracic electrical bioimpedance (TEB) as a component in a real-time closed-loop system to treat drug resistant hypertension (DRH) or diastolic heart failure (called HFpEF in patients with pacemakers using machine learning/AI and an algorithm (PressurePace—see the incorporated specifications) utilizing a “micro-interval” or continually updated trending method with the pacemaker's hardware/software as the source of the bioimpedance measurement, e.g. OptiVol. An apparatus for performing the method, and software instructions stored on a tangible medium for controlling a computer or processor to perform the method are included.