Anti-displacement tube type ductus venosus
A venous catheter and catheter technology, applied in the direction of catheters, etc., can solve the problems of large infusion resistance, increase the workload of patients suffering from medical staff, and the tube body falls off, and achieve the effect of preventing repeated punctures, ensuring life and health, and reducing workload.
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Embodiment 1
[0036] as attached Figure 1~4 ,and Figure 8 As shown, 1 is the catheter fixing wing of the anti-running tubular venous catheter of the present invention, 2 is the connecting seat, 3 is the extension tube, 4 is the catheter, 5 is the buoy, 6 is the gap, 7 is the adhesive layer, and 8 is the protective layer , 9 is an inner lip, 10 is an outer lip, 11 is a fixed ferrule, 12 is an opening, 13 is a clamping part, 14 is a sleeve body, 15 is a second adhesive layer, and 16 is a second protective layer.
[0037] The anti-running tube type venous catheter of the present invention sequentially includes a connected and communicated catheter 4, a connecting seat 2, an extension tube 3, and a fixed ferrule 11 used in conjunction with the catheter 4; the catheter 4 is a needle at the opening of the connecting seat 2. Seat structure, the puncture needle is inserted into the catheter 4 through the needle seat structure; the extension tube 3 communicates with the connection seat 2 and the ...
Embodiment 2
[0040] as attached Figure 1~3 and Figure 5 , 9 As shown, 1 is the catheter fixing wing of the anti-running tubular venous catheter of the present invention, 2 is the connecting seat, 3 is the extension tube, 4 is the catheter, 5 is the buoy, 6 is the gap, 7 is the adhesive layer, and 8 is the protective layer , 9 is an inner lip, 10 is an outer lip, 11 is a fixed ferrule, 12 is an opening, 13 is a clamping part, 14 is a sleeve body, 15 is a second adhesive layer, and 16 is a second protective layer.
[0041] The difference between this embodiment and Embodiment 1 is that in the fixed ferrule 11, the opening 12 on the sleeve wall of the sleeve body 14 has an angle of θ with the sleeve center as the center and the sleeve wall as the circumference, θ=90°; There are two gaps 6, which are correspondingly arranged on the end pipe body wall of the catheter 4; the corresponding two inner lips 9 are arranged on the same side pipe body wall, and the corresponding two outer lips 10 are...
Embodiment 3
[0044] as attached Figure 1~3 and Figure 6 , 10 As shown, 1 is the catheter fixing wing of the anti-running tubular venous catheter of the present invention, 2 is the connecting seat, 3 is the extension tube, 4 is the catheter, 5 is the buoy, 6 is the gap, 7 is the adhesive layer, and 8 is the protective layer , 9 is an inner lip, 10 is an outer lip, 11 is a fixed ferrule, 12 is an opening, 13 is a clamping part, 14 is a sleeve body, 15 is a second adhesive layer, and 16 is a second protective layer.
[0045] The difference between this embodiment and Embodiment 1 is that in the fixed ferrule 11, the opening 12 on the sleeve wall of the sleeve body 14 has an angle of θ with the sleeve center as the center and the sleeve wall as the circumference, θ=120°; There are two notches 6, which are correspondingly arranged on the end pipe body wall of the catheter 4; the corresponding two inner lips 9 are respectively arranged on the pipe body walls on both sides.
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