Blood-absorbing mat for operation and puncture outfit system
A technology of surgical puncture device, which is applied in the field of surgical blood-absorbing pad and puncture device system, which can solve the problems affecting the cleanliness of the patient's abdominal surface, low efficiency, and tissue bleeding at the incision, so as to improve surgical accuracy and efficiency, and improve Cleanliness and the effect of reducing the amount of bleeding
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Embodiment 1
[0049] This embodiment provides a blood-sucking pad 1 for surgery, which can be used in various minimally invasive surgeries. When in use, first place the surgical blood-absorbing pad 1 on the target tissue 3 on the patient's body surface, and then use it to absorb the blood flowing out from the incision, and realize the hemostasis function on the incision, which greatly reduces the patient's pain during the operation. Reduce the amount of bleeding, so as to avoid the blood flowing out from the incision from affecting the cleanliness of the patient's body surface. Specifically, as Figure 1 to Figure 5 As shown, the blood-sucking pad 1 for surgery includes a reference layer 11 and a blood-sucking layer 13. The reference layer 11 is provided with a positioning hole 12, and the blood-sucking layer 13 is provided with a penetration hole 14. Between the reference layer 11 and the blood-sucking layer 13, a The first folding line 15 , along which the blood-sucking layer 13 can be f...
Embodiment 2
[0058] On the basis of Embodiment 1, this embodiment also provides a surgical blood-sucking pad 1, the difference between the surgical blood-sucking pad 1 and the surgical blood-sucking pad 1 in Embodiment 1 is: The blood-sucking pad 1 includes a hemostatic layer 16 in addition to the reference layer 11 and the blood-sucking layer 13 . The structures of the reference layer 11 and the blood-sucking layer 13 are the same as those in the first embodiment, and will not be repeated here.
[0059] Such as Figure 9 to Figure 13 As shown, the hemostatic layer 16 is a sheet structure connected to the top of the blood-sucking layer 13, and a second folding line 19 is arranged between it and the blood-sucking layer 13. When the hemostatic layer 16 is not required, it can be as follows: Figure 10 As shown, the hemostatic layer 16 is folded to the side of the blood-sucking layer 13 for standby use. When the hemostatic layer 16 needs to be used, the hemostatic layer 16 can be folded to t...
Embodiment 3
[0064] On the basis of the first and second embodiments, this embodiment also provides a trocar system, which can be used in various minimally invasive surgeries, such as laparoscopic minimally invasive surgeries.
[0065] Specifically, such as Figure 14 to Figure 16 As shown, the trocar system includes a trocar 2 and the surgical blood-absorbing pad 1 in the first embodiment or the second embodiment, the trocar 2 includes a puncture needle 21 and a puncture needle sleeve 22, and the puncture needle sleeve 22 is provided with a The channel through which the needle 21 passes. Before the operation, first place the surgical blood-absorbing pad 1 on the target tissue 3 on the patient's body surface; then draw an incision at the positioning hole 12, and then set the puncture needle sleeve 22 and the puncture needle 21 together The formed trocar 2 enters the patient's body through the penetration hole 14, the positioning hole 12 and the incision on the patient's body surface arran...
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