Medical ultrasonic scalpels, medical ultrasonic scalpel systems, and robot-assisted ultrasonic scalpel systems

The medical ultrasonic scalpel system simplifies assembly by using a liquid flow sleeve to connect and disconnect the blade shank and handle through projections and rotational directions, reducing tool usage and enhancing assembly efficiency.

JP2026517026APending Publication Date: 2026-05-27SMTP MEDICAL CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
SMTP MEDICAL CO LTD
Filing Date
2024-06-28
Publication Date
2026-05-27

AI Technical Summary

Technical Problem

The assembly of medical ultrasonic scalpels is inconvenient due to the complex structure of wrenches required for connecting the blade shank and liquid flow sleeve to the handle, increasing the number of tools needed and complicating the process.

Method used

A medical ultrasonic scalpel design that allows the liquid flow sleeve to connect and disconnect from the blade shank and handle without the use of wrenches, utilizing projections and rotational directions to facilitate assembly and disassembly, simplifying the assembly process.

Benefits of technology

The design reduces the number of tools required and enhances assembly efficiency, making the process faster and more convenient by eliminating the need for wrenches and simplifying the structure of the liquid flow sleeve.

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Abstract

A medical ultrasonic scalpel includes a fluid flow sleeve 100 and a blade shank 200. The fluid flow sleeve includes a sleeve body 101 and a first projection 102. The sleeve body is provided with mounting cavities 111 that penetrate both ends thereof, and the first projection is located on the inner side wall of the sleeve body. The blade shank penetrates the mounting cavities and is rotatably connected to the fluid flow sleeve, and the blade shank and fluid flow sleeve are movable in the extending direction X, and a second projection 202 is provided on the outer side wall of the blade shank. When the fluid flow sleeve rotates in a first rotational direction, the first projection and the second projection are offset from each other so that the fluid flow sleeve is movable in the extending direction X. When the fluid flow sleeve rotates in a second rotational direction opposite to the first rotational direction, the first projection abuts against the second projection so as to drive the blade shank to rotate in the second rotational direction.
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