Visual puncturing device for vagina sting operation to treat pressure urinary incontinence
A technology for stress and urinary incontinence, applied in the direction of puncture needles, fixers, tourniquets, etc., can solve problems such as undetectable, unable to meet treatment needs, invisible puncture process, etc., to facilitate cleaning, realize visualization, and avoid cross-infection Effect
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[0032] Example 1
[0033] In Figures 1, 2, and 3, the visual puncture device for the treatment of stress urinary incontinence with vaginal sling in this embodiment consists of eyepiece glass 1, eyepiece cover 2, main lens barrel 3, image stick chuck 4, and limit nut 5. , Beam chuck 6, beam takeover 7, beam transmission 8, main lens body 9, locking cap 10, cone 11, main body 12, puncture head 13, inner tube 14, outer tube 15, mirror tube 16, positioning pin 17 , The transition sleeve 18, the image rod 19, the optical lens 20, the water inlet valve 21, the water return valve 22, the front end 23, the objective lens 24, and the objective lens glass 25 are connected together, which are composed of the main body 12, the outer tube 15, the water inlet valve 21, The water return valve 22 is connected into a puncture tube, and other parts except the puncture head 13 are connected into an endoscope.
[0034]A main lens barrel 3 is installed on the rear side of the main lens body 9 through ...
Example Embodiment
[0038] Example 2
[0039] In this embodiment, the radius R of the center lines of the outer tube 15 and the mirror tube 16 is 250 mm. The skeleton is composed of the front end of the main skeleton 13-3 and the front end of the auxiliary skeleton 13-2 perpendicularly intersecting each other with laser welding. The shape of the main skeleton 13-3 and the auxiliary skeleton 13-2 is that the front end is arc and the rear end is open rectangular Frame structure, the thickness of the main frame 13-3 and the auxiliary frame 13-2 is 0.1mm, the radius R of the front end of the arc is 6mm, the angle between the two inner sides of the front end of the main frame 13-3 and the auxiliary frame 13-2 is 60°, the inner front end of the main frame 13-3 is axially machined with a through groove with a width of 0.1mm, and the outer side of the auxiliary frame 13-2 is axially machined with a through groove with a width of 0.1mm. The main frame 13-3 and auxiliary The other geometric shapes and geometri...
Example Embodiment
[0040] Example 3
[0041] In this embodiment, the radius R of the center lines of the outer tube 15 and the mirror tube 16 is 500 mm. The skeleton is composed of the front end of the main skeleton 13-3 and the front end of the auxiliary skeleton 13-2 perpendicularly intersecting each other, and the shape of the main skeleton 13-3 and the auxiliary skeleton 13-2 is a rectangular frame with a circular arc at the front end and an open rear end. Structure, the thickness of the main frame 13-3 and the auxiliary frame 13-2 is 0.5mm, the radius R of the front end is 8mm, the angle between the two inner sides of the front end of the main frame 13-3 and the auxiliary frame 13-2 is 150 °, the front end of the main frame 13-3 is axially machined with a through groove with a width of 0.5mm, and the auxiliary frame 13-2 is axially machined with a through groove with a width of 0.5mm on the outside of the front end, the main frame 13-3 and the auxiliary frame The other geometric shapes and geom...
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