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100results about How to "Facilitate ablation" patented technology

Deflectable catheter with a flexibly attached tip section

A catheter for mapping and / or ablating a region of the heart, comprises a catheter body with an intermediate section that is connected to a tip assembly by a highly flexible preshaped section. The highly flexible section presets the tip assembly at an off-axis and / or off-plane angles from the intermediate section, to provide the following: a) The intermediate section when deflected approximates the generally convex region of the cavo-tricuspid isthmus and the preset angle of the flexible section is off axis in the same plane and same direction as deflection of the intermediate section to enable the tip assembly to contact the cavo-tricuspid isthmus for ablation and / or mapping. b) The intermediate section when deflected approximates the generally concave region of the VA / RV / LA / LV and the preset angle in the same plane and opposite direction of deflection enables the tip assembly to contact the walls of the cavity for ablation and / or mapping. c) The intermediate section when deflected approximates the generally convex region of the His area and the preset off plane angle of the flexible section enable the tip assembly to contact the Bundle of His region. A high bending modulus of the flexible section enables the flexible section to absorb displacement force applied to the tip assembly, such as when the tip assembly encounters uneven tissue surface, without displacing the intermediate section. The flexible section prevents excessive force from being applied to the tip assembly, reducing the risk of any of the following: a) mechanical perforation, b) steam pop, c) burying the tip assembly in the myocardium resulting in high temperatures, low energy delivery, thrombus formation and char formation.
Owner:BIOSENSE WEBSTER INC

Electrode for radiofrequency tissue ablation

The present invention discloses an electrode for an electric operation device including a hollow electrode being formed in a hollow tube shape extended long from a closed tip, and having an insulation-coating on the outside surface except a predetermined length of the closed tip side, a refrigerant tube having a smaller diameter than a diameter of the hollow electrode, and being inserted into the hollow electrode, the refrigerant tube supplying refrigerants for cooling a living tissue contacting the closed tip and the hollow electrode into the hollow electrode, and externally discharging the heat-exchanged refrigerants from the living tissue through the gap between the refrigerant tube and the hollow electrode, at least one first hole formed on the outside surface of the hollow electrode where the insulation coating has not been formed, for externally discharging some of the refrigerants supplied through the refrigerant tube from the hollow electrode, and a flow control means formed on the outside surface of the hollow electrode where the insulation coating has not been formed, and operated as a discharge resistance to the refrigerants discharged from the first hole, for controlling a flow of the refrigerants, whereby supplying an electrode structure using both a method for water-cooling the inside of the electrode and a method for discharging the saline solution.
Owner:JUN MYONG KI

Electric spark induction controllable erosion and electrolysis compound efficient machining method

The invention discloses an electric spark induction controllable erosion and electrolysis compound efficient machining method which is characterized by comprising the steps of: with electrolyte as a working medium, immersing one end of a to-be-machined workpiece electrode and a tool electrode in the working medium, intermittently introducing air to a machining area and forming an air film between the to-be-machined workpiece electrode and the tool electrode; generating electric spark discharge between the to-be-machined workpiece electrode and the tool electrode under the action of an electric spark power supply to ensure that the to-be-machined workpiece generates an oxidation exothermic reaction with the introduced air under the action of electric spark discharge ignition and forms a burning effect so that efficient ablation is realized; in an air closed stage, carrying out electrochemical machining and surface dressing on the ablation surface under the action of an electrolysis power supply; and alternating to start an electric spark ignition pulse power supply and an electrolysis eroding power supply and moving the tool electrode until machining is finished. The invention has the advantages of high material eroding efficiency up to be several times, even tens of times of that of the conventional electric spark machining and also be higher than that of the conventional electrolysis machining under the same electrical parameters on the premise of ensuring machining quality and precision, good surface quality, precision and controllability and capability of eliminating surface residual stress.
Owner:NANJING UNIV OF AERONAUTICS & ASTRONAUTICS

Spark duration time monitoring circuit for engine ignition system

The invention relates to a spark duration time monitoring circuit for an engine electronic control ignition system. The spark duration time monitoring circuit is characterized in that a time processing unit channel of a central processing unit is connected with the grid electrode of a switching element IGBT through a drive circuit of the switching element IGBT; the collector electrode of the switching element IGBT is connected with the first end of an ignition primary coil; the second end of the ignition primary coil is connected with a vehicle-mounted direct-current power source; the collector electrode voltage of the switching element IGBT is connected to a time processing unit input port of the central processing unit after passing the spark duration time monitoring circuit, the central processing unit regulates the charging time, namely ignition energy of the primary coil in real time according to the monitored spark duration time, and the spark duration time is controlled within a certain range (please see the range in the specification). By means of feedback signals of the spark duration time monitoring circuit of the ignition system, the charging time, namely the ignition energy of the primary coil is regulated in real time, the spark duration time is controlled within a certain range, and the purposes that it is guaranteed that mixed gas in an air cylinder is completely burned every time when ignition of an engine is carried out, and the situation that erosion of electrodes of a sparking plug is accelerated due to tool much ignition energy is provided and the service life of the sparking plug is shortened is avoided are achieved.
Owner:CHINA FIRST AUTOMOBILE
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