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Minimally invasive excision device for pediatric surgical tumors

A pediatric surgery and tumor technology, applied in the medical field, can solve the problems of easily scratching the abdominal wall by the jaws, inconvenient hemostasis and suction operations, and interference effects of the excision operation, so as to ensure the effect of electrode paralysis, improve the reduction of human trauma, and ensure Efficient effect

Inactive Publication Date: 2020-10-13
SHENZHEN CHILDRENS HOSPITAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the deficiencies in the prior art, the object of the present invention is to provide a device for minimally invasive resection of pediatric surgical tumors, to solve the problem that the jaws of conventional tumor excision forceps are easy to scratch the inner wall of the abdomen, causing cell walls to fall off and capillaries to partially rupture, and The hemostasis suction operation in the later stage is inconvenient, which increases the interference effect on the resection operation in the bandha, and also causes long-term maintenance hidden dangers for the trauma repair of children's abdomen, and the local loss of organs for tumor resection is relatively large.

Method used

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  • Minimally invasive excision device for pediatric surgical tumors
  • Minimally invasive excision device for pediatric surgical tumors
  • Minimally invasive excision device for pediatric surgical tumors

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] see Figure 1-Figure 6 , the present invention provides a minimally invasive resection device for pediatric surgical tumors, the structure of which includes: an arc knife holder 1, a plasma tube 2, a telescopic sleeve 3, a relay clamp turret 4, a hoisting insert 5, The surge tank frame 6, the handle bar 7, the relay pliers turret 4 and the telescopic sleeve 3 are buckled together and the axes are collinear, and the plasma tube 2 is inserted into the telescopic sleeve 3 inside and on the same horizontal line, the arc tool holder 1 is electrically connected to the plasma tube 2, the relay clamp turntable 4 is installed on the front side of the lifting insert frame 5 and is perpendicular to each other, the hand grip The handle bar 7 is inserted under the bottom of the surge tank frame 6 and is on the same vertical plane. The surge tank frame 6 is electrically connected to the relay clamp turntable 4 through wires and the axes are collinear, so The surge tank frame 6 is nest...

Embodiment 2

[0040] see Figure 1-Figure 6 , the present invention provides a device for minimally invasive resection of pediatric surgical tumors, the other aspects are the same as in Example 1, except that:

[0041] see figure 2 , the shock absorber coil frame 4F is composed of a diagonal stay rod 4F1, a shock absorber bag groove 4F2, and a traction disc 4F3. The diagonal stay rod 4F1 is mechanically connected with the shock absorber bag groove 4F2. The front side of the guide plate 4F3 is on the same vertical plane, and the diagonal pull rod 4F1 stretches the shock-absorbing tube bag groove 4F2 to form a side-to-side diagonal traction spring boosting effect.

[0042] see Image 6 , the shock-absorbing tube bag groove 4F2 is composed of a torsion spring wire sleeve 4F21, a counterweight concave pressure plate 4F22, a flanged strut 4F23, and a short capsule groove 4F24, and the counterweight concave pressure plate 4F22 and the flanged strut 4F23 are provided with Two are respectively ...

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PUM

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Abstract

The invention discloses a minimally invasive excision device for pediatric surgical tumors. The device structurally comprises an electric arc knife rest, a plasma electric tube, a telescopic sleeve, arelay clamp disc rotating frame, a hoisting inserting frame, a surge tank frame seat and a handheld handle rod. According to the invention, the telescopic sleeve is matched with the relay tong disc rotating frame so as to achieve a minimally invasive excision effect for pediatric surgical tumor; a plasma electric tube electrocision frame stretches the electric arc knife rest to peel off a tumor connecting end so as to achieve a twisting, hanging and cutting operation effect that a terminal lug plate sliding rail seat clamp buckle rotates back, the tumor is minimally invasive to form a smoothstripping and cutting effect along cell wall gaps; and a small amount of interference of capillaries is realized after minimally invasive excision, the bleeding amount is reduced, the suturing operation after tumor extirpation of medical surgical operation is effectively improved, the high efficiency and electrode paralysis effect of mechanical ionization excision of pediatric surgical equipment are guaranteed, the success rate of tumor minimally invasive excision and the reduction degree of human body wounds are improved, and later rapid recovery of human body health is facilitated.

Description

technical field [0001] The invention relates to a minimally invasive resection device for pediatric surgical tumors, which belongs to the medical field. Background technique [0002] Abdominal tumors in pediatric surgical tumors often include abdominal neuroblastoma, hepatoblastoma, retroperitoneal neuroblastoma, teratoma, etc. These tumors are hidden dangers of genetic maternal causes in children, and minimally invasive tumor resection can To prevent tumor spread and effectively remove tumors in the abdomen, this minimally invasive medical operation usually uses medical equipment such as plasma resectoscope or tumor excision forceps to effectively operate. The disadvantages of current technologies that need to be optimized include: [0003] The jaws of conventional tumor excision forceps are easy to scratch the inner wall of the abdomen, resulting in partial rupture of capillaries with cell wall shedding, and the inconvenience of hemostatic suction in the later stage, which...

Claims

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Application Information

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IPC IPC(8): A61B18/04
CPCA61B18/042A61B2018/00601
Inventor 陈子民
Owner SHENZHEN CHILDRENS HOSPITAL
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