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High-simulation laparoscopic surgery simulated training device

A surgical simulation and laparoscopy technology, applied in the field of medical devices, can solve the problems of not being able to simulate the human physiological environment and real surgical scenarios, restricting wide-scale promotion and use, and insufficient operational perception feedback, so that the surgical environment is close to reality and perception. Real, shortened learning curve effects

Active Publication Date: 2014-06-25
XIAN MAGNETIC MEDICAL TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Laparoscopic simulators can only simulate basic operations such as cutting, separation, ligation, etc., but cannot simulate the physiological environment of the human body and real surgical scenarios; the virtual laparoscopy simulation system can simulate surgical scenarios, but it is not realistic enough, and can also simulate relatively complex procedures. Surgical environment, but the operation perception feedback during surgery is not enough, and the price is expensive, which limits its wide-scale promotion and use

Method used

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  • High-simulation laparoscopic surgery simulated training device
  • High-simulation laparoscopic surgery simulated training device
  • High-simulation laparoscopic surgery simulated training device

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Embodiment Construction

[0037] The implementation of the present invention will be described in detail below in conjunction with the drawings and examples.

[0038] Such as figure 1 As shown, a highly simulated laparoscopic surgery simulation trainer includes: a simulated human abdomen unit, which uses silica gel to simulate human abdominal skin, and is composed of a detachable front abdominal wall skin 5 and a back skin. The two parts of skin are connected by a sealing buckle 23, The airtightness of the whole simulated human abdomen is guaranteed; the animal liver is arranged in the simulated human abdominal unit; the simulated pipeline system is set in the simulated human abdominal unit, and the simulated pipeline system is connected with the animal liver. Includes: simulated inferior vena cava 1 for connecting to the inferior vena cava of the animal's liver; simulated hepatic artery 2 for connecting to the hepatic artery of the animal's liver; simulated portal vein 3 for connecting to the portal v...

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Abstract

A high-simulation laparoscopic surgery simulated training device comprises a simulated human abdomen unit, an animal liver and a simulated canal system, wherein the simulated human abdomen unit is used for simulating the human abdomen skin through silica gel and composed of anterior abdominal wall skin and back skin which can be separated from each other, the anterior abdominal wall skin and the back skin are connected through sealing buckles, and thus the seal performance of the whole simulated human abdomen is guaranteed; the animal liver is arranged in the simulated human abdomen unit; the simulated canal system is arranged in the simulated human abdomen unit and connected with the animal liver. According to the high-simulation laparoscopic surgery simulated training device, the abdominal skin is simulated through sealing silica gel, inflation is performed through a poking clip to form the pneumoperitoneum, the human blood circulation in the physiological state is achieved through a pumping set, the real animal liver is anastomosed with the postcava, the portal vein, the hepatic artery and the biliary tract of a human simulator training system through the postcava, the portal vein, the hepatic artery and the biliary tract, and thus various simple or complex laparoscopic surgery training items can be carried out.

Description

technical field [0001] The invention belongs to the technical field of medical devices, and relates to a laparoscopic training device, in particular to a highly simulated laparoscopic operation simulation training device. Background technique [0002] Since Philipe Mouret, a Frenchman, performed the first laparoscopic cholecystectomy in 1987, laparoscopy has experienced more than 20 years of development and has become a relatively independent discipline, and has derived minimally invasive procedures such as thoracoscopy, arthroscopy, and cranial laparoscopy. Surgical approach. [0003] Laparoscopic surgery is to make 2-5 incisions of about 1 cm in the abdomen and (or) waist of the human body, and insert a tube-shaped working channel called "trocar" into each. The operation is performed by trocar using special instruments for laparoscopy. Laparoscopic surgery has less trauma and faster recovery, which greatly reduces the pain of patients and shortens the length of hospital ...

Claims

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Application Information

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IPC IPC(8): G09B23/28
Inventor 吕毅徐向华杨桓李建辉马锋史爱华王浩华
Owner XIAN MAGNETIC MEDICAL TECH CO LTD
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