Telescopic prepuce ligation cutting device
A telescopic and foreskin technology, which is applied in medical science and surgery, can solve the problem that the foreskin cutter cannot expand, and achieve the effect of simple structure, low cost, and less pain for patients
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Embodiment approach 1
[0025] Implementation mode one: if figure 1 As shown, the telescopic foreskin binding cutter of the present invention comprises a binding cutting ring 1 and an elastic binding object 2, the binding cutting ring 1 has a certain elasticity, and an annular groove 3 is provided on its outer circumference, and the foreskin can be bound in the annular concave In the groove 3, the characteristic is that the tie-cut ring 1 is evenly divided into two arc-shaped segments 4 . The joints of the two arc sections 4 are connected by elastic nylon bands 5 . The joint part 9 between the elastic nylon band 5 and the arc segment 4 is fixed by sewing, glue bonding or ultrasonic heat fusion, and there is a stretchable separation part 10 between the ends of the arc segment.
[0026] The cutting ring 1 is made of antibacterial and antiviral nanomaterials, its axial thickness is between 4-10.0mm, and its radial thickness is between 2-4.0mm; the cross section of the annular groove 2 is " U", "V" or ...
Embodiment approach 2
[0027] Implementation mode two: if figure 2 Shown: the tie-cut ring 1 is evenly divided into three arc-shaped segments 4 . The elastic nylon band 5 forms an inner ring 6 inside the tie-cut ring 1 , and the arc section 4 is evenly fixed on the outer side of the inner ring 6 . Other structures are as described in Embodiment 1.
Embodiment approach 3
[0028] Implementation mode three: if image 3 , 4 Shown: the elastic binding object 2 is an elastic rubber ring made of antibacterial and antiviral nanomaterials. The tie-cut ring 1 is evenly divided into three arc segments 4, wherein: one arc segment 4 protrudes an arc arm 7 toward the other arc segment 4, and the arc arm 7 is embedded in the other arc segment 4 in the dovetail groove 8, and can expand and contract in the dovetail groove 8. The cross section of the arc arm 7 is trapezoidal, and the cross section of the dovetail groove 8 is compatible. Other structures are as described in Embodiment 1.
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