Patent classifications
A61B2018/00779
ARTHROSCOPIC DEVICES AND METHODS
An electrosurgical probe for ablating tissue includes an elongated shaft having an axis and a distal end. An electrically insulating housing at the distal end of the shaft has a window, and an interior channel in the shaft extends through the housing to the window. The window faces laterally relative to the axis, and a moveable member with a blade-like electrode edge is disposed within the window. A motor drives the energized electrode edge axially in the window to ablate tissue.
SURGICAL INSTRUMENT COMPRISING END EFFECTOR WITH LONGITUDINAL SEALING STEP
Disclosed is an electrosurgical instrument including an end effector with a cartridge having an asymmetric cartridge body.
SURGICAL SYSTEMS CONFIGURED TO COOPERATIVELY CONTROL END EFFECTOR FUNCTION AND APPLICATION OF THERAPEUTIC ENERGY
Disclosed is a surgical system for tissue treatment using therapeutic energy and stapling.
STAPLE CARTRIDGE COMPRISING FORMATION SUPPORT FEATURES
A staple cartridge comprising a cartridge body including staple formation features is disclosed.
Systems and methods for calculating tissue impedance in electrosurgery
An electrosurgical generator and associated methods determine a real part of the impedance of treated tissue. The electrosurgical generator includes an output stage, a plurality of sensors, and a controller that controls the output stage. The controller includes a signal processor that determines an RMS voltage, an RMS current, an average power, and a real part of the impedance of the treated tissue based on measured voltage and current by using a plurality of averaging filters. The controller controls the output stage to generate electrosurgical energy based on at least the determined real part of the impedance.
Controlled irrigation for neuromodulation systems and associated methods
Neuromodulation catheter systems with controlled irrigation capabilities and methods for using such systems are disclosed herein. One such method includes, for example, positioning an irrigated neuromodulation catheter at a treatment site within a renal blood vessel of a human patient, delivering neuromodulation energy at the treatment site, and delivering irrigation fluid to the treatment site having characteristics coordinated with the delivered energy. The characteristics can be adjusted to maintain an energy delivery element and/or tissue of the blood vessel at a constant temperature as power is increased. The method can further include monitoring at least one parameter of the tissue and/or of the energy delivery element, and adjusting the neuromodulation energy and/or the characteristics of the irrigation fluid if the at least one parameter falls outside of a treatment range of values.
Surgical instruments and systems incorporating machine learning based tissue identification and methods thereof
A surgical system includes an end effector assembly having first and second jaw members, a generator, and one or more machine learning applications. The first and/or second jaw member is movable relative to the other from a spaced-apart position to an approximated position for grasping tissue therebetween. The jaw members are configured to conduct energy therebetween and through tissue grasped therebetween. The generator includes an energy output configured to supply energy to the jaw members, a main controller configured to control the energy output, and sensor circuitry configured to sense impedance and/or power. The machine learning application(s) is configured to determine a type of tissue grasped between the first and second jaw members based upon the impedance and/or power sensed by the sensor circuitry.
CHARACTERIZING TISSUE USING FLUORESCENCE EMISSION
A method for determining a characteristic of material at a target is provided. A target is illuminated with a pulsed light source. A fluorescence signal from the target when the pulsed light source is an “off” state is then sensed. Based on analysis of the fluorescence signal, a characteristic of material at the target is identified. A device can then be controlled based on the identified characteristic of the material at the target.
Galvanic Electrolysis Unit for Hair Follicle Ablation
A power supply unit for a direct-current galvanic electrolysis device has a housing configured to be held in a hand of a patient and having a conductive outer surface forming a first electrode that is adapted to make electrical contact with the hand of the patient while the housing is being held. In addition, the power supply unit has an electrical power source, an electrical connector supported for detachably coupling to a second electrode in the form of a needle handpiece, a regulating circuit coupled to the power source and having positive and negative output nodes. The regulating circuit positive output node is electrically coupled to the first electrode and the negative output node is electrically coupled to the connector and thereby, in use, to the second electrode of the needle handpiece.
ELECTRODES AND METHODS FOR USE WITH A MULTI-LAYER CLAMP ARM PAD TO ENHANCE THE PERFORMANCE OF A SURGICAL DEVICE
A surgical device, is disclosed herein. The surgical device can include an end effector including a clamp jaw, a trigger configured to open and close the clamp jaw, a sensor configured to detect a relative position of the trigger, and a control circuit communicably coupled to the sensor and a generator, wherein the control circuit is configured to cause the generator to administer energy associated with a surgical operation to be performed on the tissue, receive a signal from the sensor, determine that the clamp jaws are not positioned to administer the energy associated with the surgical operation, and cause the generator to administer energy configured to release the tissue from an ultrasonic blade, wherein the energy configured to release the tissue from the clamp jaw is different than the energy associated with a surgical operation to be performed on the tissue.