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Brain model capable of being connected with liquid circulation power system

A power system and liquid circulation technology, applied in the medical field, can solve the problems of discounted training effect, inability to achieve simulation, and patient pay for nerve function, etc., to achieve the effect of convenient operation

Inactive Publication Date: 2016-12-07
NANFANG HOSPITAL OF SOUTHERN MEDICAL UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, all training can only be practiced through autopsy and computer simulation, which has a huge gap with the real clinical situation. It is impossible to predict various emergencies that may occur during the operation of real cases, and the inability to realize simulation makes the training effect greatly reduced. These exercises The final result often requires the patient to pay the price of neurological function and even life
[0004] There is currently no modular, detachable cranial model that can be connected to a fluid circulatory system

Method used

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  • Brain model capable of being connected with liquid circulation power system
  • Brain model capable of being connected with liquid circulation power system
  • Brain model capable of being connected with liquid circulation power system

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Embodiment

[0019] refer to Figure 1 to Figure 3 , a brain model that can be connected to a fluid circulation power system, including several detachable simulation modules that simulate the elasticity of living brain tissue 1, a detachable and airtight skull 2, and a cerebral artery-based vascular circulation system embedded in the simulation module through 3D printing 1. The simulation modules 1 are all installed in the skull 2. The vascular circulation system in the simulation module 1 is equipped with an interface 3 for liquid outlet and liquid inlet. The skull 2 ​​is equipped with a conversion joint 4 and a power input port. and the liquid circulation power system 5 of the power output port, wherein, the liquid outlet port of the interface 3 communicates with the power input port of the liquid circulation power system 5 through the conversion joint 4, and the liquid inlet port of the interface 3 communicates with the liquid circulation power system through the conversion joint 4 The ...

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Abstract

The invention discloses a brain model capable of being connected with a liquid circulation power system. The brain model comprises a plurality of detachable simulation modules for simulating the elasticity of brain tissue of a living body and a detachable airtight skull. Blood vessel circulation systems with the cerebral artery as the basis are embedded in the simulation modules through 3D printing, all the simulation modules are arranged in the skull, connectors provided with liquid outlets and liquid inlets are installed on the blood vessel circulation systems in the simulation modules, and adapters are arranged on the skull. The brain model further comprises the liquid circulation power system provided with a power input port and a power output port. The liquid outlet ends of the connectors are communicated with the power input port of the liquid circulation power system through the corresponding adapters, and the liquid inlet ends of the connectors are communicated with the power output port of the liquid circulation power system through the corresponding adapters. The brain model has the advantages that the brain model is connected with the liquid circulation power system, the simulation modules can pulsate, and meanwhile the simulation module with lesions can be separated out for surgery.

Description

technical field [0001] The invention relates to surgical tools in the medical field, in particular to a 3D-printed brain model with a vascular circulation system and a fluid circulation power system that can be connected. Background technique [0002] With the development of neurosurgery equipment and technology, a large number of brain operations can be carried out, and a large number of neurosurgeons need to be trained. However, for a long time, the training of neurosurgery professionals can only be completed through computer simulation and autopsy, and many trainings close to clinical needs cannot be carried out. Because neurosurgery operations are difficult and risky, and often only the chief surgeon operates alone, the training of neurosurgeons can only accumulate experience by prolonging the clinical observation time, which is also the growth experience of every neurosurgeon. Only 7-10 years of clinical observation can become the practice of the chief surgeon, which i...

Claims

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Application Information

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IPC IPC(8): G09B23/28G09B9/00
CPCG09B9/00G09B23/28
Inventor 黄广龙张喜安彭俊祥石瑾潘军殷延毅莫益萍邱晓瑜漆松涛
Owner NANFANG HOSPITAL OF SOUTHERN MEDICAL UNIV
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