A61B18/0206

ULTRASONIC TOOL AND METHOD FOR MANUFACTURING THE TOOL

An ultrasonic cutting tool is designed for use in an ultrasonic instrument. The tool is a blade having a flat section manufactured from at least a first blade layer and second blade layer. The first and second blade layer each being a flat metal plate arranged in parallel to one another and bonded to one another.

DEVICES AND METHODS FOR THE TREATMENT OF TISSUE

Systems, methods and devices for the treatment of tissue are disclosed. A system includes an elongate tube with a distal portion. A treatment element is positioned on the elongate tube distal portion, the treatment element constructed and arranged to treat target tissue. In one embodiment, gastrointestinal tissue is modified for the treatment of diabetes.

SELECTIVE LUNG TISSUE ABLATION
20170258509 · 2017-09-14 ·

Medical methods and systems are provided for effecting lung volume reduction by selectively ablating segments of lung tissue.

Tissue treatment system and method for tissue perfusion using feedback control

A system, ablation probe, and method is provided for treating tissue, e.g., tissue having tumors. The treatment system is configured to automatically deliver infusaid to tissue when needed and comprises an ablation probe having an ablative element and at least one perfusion exit port. The system further comprises an ablation source operably coupled to the ablative element, and a pump assembly operably coupled to the perfusion exit pots). The pump assembly is configured for pumping infusaid out through the perfusion exit port(s), preferably during the ablation process. The system further comprises a feedback device configured for controlling the amount of infusaid displaced by the pump assembly based on a sensed tissue parameter, e.g., tissue temperature or tissue impedance.

METHOD AND APPARATUS FOR PERFORMANCE OF THERMAL BRONCHIOPLASTY TO REDUCE COVID-19-INDUCED RESPIRATORY DISTRESS AND TREAT COVID-19-DAMAGED DISTAL LUNG REGIONS
20210402218 · 2021-12-30 ·

Apparatus and methods for deactivating pulmonary nerves extending along the main bronchi of a mammalian subject to reduce ARDS effects by advancing an ultrasound transducer into the right and subsequently left main bronchus. The ultrasound transducer emits circumferential ultrasound so as to heat a circumferential tissue volume encompassing the right and left main bronchus. The energy of <10 W acoustic for <5 sec will not be sufficient to cause tissue necrosis but sufficient to inactivate nerve conduction. This treatment can be performed without locating or focusing on individual pulmonary nerves.

INTEGRATED COLD THERAPY AND ELECTRICAL STIMULATION SYSTEMS FOR LOCATING AND TREATING NERVES AND ASSOCIATED METHODS

The present invention generally relates to improved medical devices, systems, and methods. In many embodiments, devices, systems, and methods for locating and treating a target nerve with integrated cold therapy and electrical stimulation systems are provided. For example, nerve stimulation and cryoneurolysis may be delivered concurrently or alternately with the cryo-stimulation device. In some embodiments, the device may be operated by a single operator or clinician. Accordingly, embodiments of the present disclosure may improve nerve targeting during cryoneurolysis procedures. Improvements in nerve localization and targeting may increase treatment accuracy, physician confidence in needle placement during treatment, and clinical efficacy and safety. In turn, such improvements may decrease overall treatment times, the number of repeat treatments, and the re-treatment rate. Further, additional improvements in nerve localization and targeting may reduce the number of needle insertions, applied treatment cycles, and may also reduce the number of cartridge changes.

DEVICES FOR COOLING A SURGICAL INSTRUMENT
20210393308 · 2021-12-23 ·

A surgical system includes a surgical instrument and a cooling module operably coupled to the surgical instrument. The surgical instrument includes a housing and an elongated portion extending from the housing and supporting an end effector. The cooling module includes a fluid reservoir retaining a cooling fluid, a thermoelectric cooler, and a pump assembly. The thermoelectric cooler has a first portion thermally coupled to the fluid reservoir and a second portion including a plurality of fins dissipating heat therefrom. The pump assembly is configured to supply the cooling fluid through at least a portion of the surgical instrument and back to the fluid reservoir, thereby defining a flow path to cool the end effector of the surgical instrument.

Implantable feedthrough assembly
11198011 · 2021-12-14 · ·

Generally discussed herein are systems, devices, and methods for providing a therapy (e.g., stimulation) and/or data signal using an implantable device. Systems, devices and methods for interacting with (e.g., communicating with, receiving power from) an external device are also provided.

ADJUSTABLE CLAMP SYSTEMS AND METHODS

Tissue treatment systems include an actuator handle assembly coupled with a clamp assembly having a first jaw mechanism and a second jaw mechanism. A first jaw mechanism includes a first flexible boot, a first flexible ablation member coupled with the first flexible boot, and a first rotatable jawbone disposed within the first flexible boot. A second jaw mechanism comprises a second flexible boot, a second flexible ablation member coupled with the second flexible boot, and a second rotatable jawbone disposed within the second flexible boot.

Tissue treatment system and method for tissue perfusion using feedback control

A system, ablation probe, and method is provided for treating tissue, e.g., tissue having tumors. The treatment system is configured to automatically deliver infusaid to tissue when needed and comprises an ablation probe having an ablative element and at least one perfusion exit port. The system further comprises an ablation source operably coupled to the ablative element, and a pump assembly operably coupled to the perfusion exit port(s). The pump assembly is configured for pumping infusaid out through the perfusion exit port(s), preferably during the ablation process. The system further comprises a feedback device configured for controlling the amount of infusaid displaced by the pump assembly based on a sensed tissue parameter, e.g., tissue temperature or tissue impedance.