A61B2017/00553

Insertable endoscopic instrument for tissue removal

An improved flexible endoscopic instrument to precisely and efficiently obtains samples of flat polyps and multiple polyps from a patient by debriding one or more polyps and retrieving the debrided polyps without having to alternate between using a separate cutting tool and a separate sample retrieving tool and may be used with an endoscope. In one aspect, the cutting tool is coupled to a flexible torque coil or torque rope that is configured to transfer rotational energy from a powered actuator through the length of the endoscope onto the cutting tool.

Atherectomy Devices and Methods

Rotational atherectomy devices and systems can remove or reduce stenotic lesions in blood vessels by rotating an abrasive element within the vessel. The abrasive element can be attached to a distal portion of an elongate flexible drive shaft that extends from a handle assembly. In particular embodiments, the handle assembly includes a compressed gas driven turbine member that drives rotation of the drive shaft. The turbine member can be rotatably attached to a carriage that is longitudinally translatable in relation to a housing of the handle assembly. The handle assembly can include a latch mechanism that when actuated allows the carriage to translate to a proximal-most position. While the carriage is in the proximal-most position, an open pathway is created so that a guidewire can be slidably passed through the handle assembly and a lumen of the drive shaft.

Atherectomy Devices and Methods

Rotational atherectomy devices and systems can remove or reduce stenotic lesions in blood vessels by rotating an abrasive element within the vessel. The abrasive element can be attached to a distal portion of an elongate flexible drive shaft that extends from a handle assembly. In particular embodiments, the handle assembly includes a compressed gas driven turbine member that drives rotation of the drive shaft. The turbine member can be rotatably attached to a carriage that is longitudinally translatable in relation to a housing of the handle assembly. The handle assembly can include a latch mechanism that when actuated allows the carriage to translate to a proximal-most position. While the carriage is in the proximal-most position, an open pathway is created so that a guidewire can be slidably passed through the handle assembly and a lumen of the drive shaft.

Medical device
10117976 · 2018-11-06 · ·

A medical device and method are disclosed which can facilitate maintenance work of a filter for capturing a capturing target, and which can improve operability or convenience in the maintenance work. The medical device has an accommodation unit, an impeller holding unit, and a filter. The accommodation unit accommodates a capturing target which is present inside a living body. The impeller holding unit includes an impeller which causes a fluid to flow from a distal side toward a proximal side inside the living body so as to cause the accommodation unit to aspirate the capturing target together with the fluid. Here, the impeller holding unit is configured to be attachable to and detachable from the accommodation unit on a proximal side of the accommodation unit. The filter is arranged in the accommodation unit and/or the impeller holding unit, and captures at last one or more of the capturing target.

Lithotripsy Angioplasty Devices and Methods

Medical devices and method for making and using medical devices are disclosed. An example method for treating a blood vessel may include disposing a medical device within the blood vessel at a position adjacent to a lesion. The medical device may include an elongate shaft having a distal end region, a balloon coupled to the distal end region, and a cavitation member disposed within the balloon. The method may also include inflating the balloon to a first pressure, activating the cavitation member, and inflating the balloon to a second pressure greater than the first pressure.

Atherectomy devices and methods

Rotational atherectomy devices and systems can remove or reduce stenotic lesions in blood vessels by rotating an abrasive element within the vessel. The abrasive element can be attached to a distal portion of an elongate flexible drive shaft that extends from a handle assembly.

FLUID-DRIVEN TISSUE RESECTING INSTRUMENTS, SYSTEMS, AND METHODS
20180250029 · 2018-09-06 ·

A tissue resecting instrument includes a housing, a shaft rotatable relative to the housing and defining a proximal end portion disposed within the housing and a distal end portion distally-spaced from the housing, a cutting member operably associated with the distal end portion of the shaft, a turbine disposed within the housing and operably associated with the proximal end portion of the shaft, and a fluid outflow tube operably associated with the housing. The fluid outflow tube is adapted to connect to a suction source to enable the suctioning of fluid and resected tissue proximally through a lumen of the shaft, an interior of the housing, and into the fluid outflow tube. The turbine is configured such that proximal fluid flow across the plurality of fins of the turbine urges the turbine to rotate, thereby rotating the shaft relative to the housing to enable tissue resection with the cutting member.

Selective tissue removal tool for use in medical applications and methods for making and using

The present disclosure relates generally to the field of tissue removal and more particularly to methods and devices for use in medical applications involving selective tissue removal. One exemplary method includes the steps of providing a tissue cutting instrument capable of distinguishing between target tissue to be removed and non-target tissue, urging the instrument against the target tissue and the non-target tissue, and allowing the instrument to cut the target tissue while automatically avoiding cutting of non-target tissue. Various tools for carrying out this method are also described.

Method for removing calculus from an access sheath
10064636 · 2018-09-04 · ·

A method involves introducing a gathering part into a lumen in an ureteral access sheath in which is located calculus, wherein at least a part of the ureteral access sheath is located in an ureter in a living body. The gathering part is moved along the lumen in the ureteral access sheath in a forward direction toward the calculus, and then movement of the gathering part in the forward direction is stopped to position the gathering part adjacent the calculus so that the calculus is positioned between the distal end of the ureteral access sheath and the gathering part. The gathering part is expanded while the gathering part is positioned adjacent the calculus, and the calculus is then introduced into the gathering part.

ENDOSCOPIC TOOL FOR DEBRIDING AND REMOVING POLYPS
20240341578 · 2024-10-17 · ·

An improved endoscopic tool easily and efficiently obtains samples of multiple polyps from a patient by debriding one or more polyps and retrieving the debrided polyps without having to alternate between using a separate cutting tool and a separate sample retrieving tool and may be used with an endoscope.