Semi-rigid water-cooling microwave ablation antenna

A microwave ablation and antenna technology, which is applied in the field of medical microwave technology application, can solve the problems of not being suitable for clinical operations, microwave ablation antenna cannot be popularized and applied, and cannot be bent, so as to achieve the effect of eliminating the risk of burns

Active Publication Date: 2013-10-09
陆骊工 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1 Ordinary water-cooled microwave ablation antennas are rigid needles that cannot be bent, and are not suitable for clinical operations in the above medical disciplines
[0005] 2 The existing semi-rigid microwave ablation antenna is too simple in structure and has defects, which hinder the popularization and application of microwave ablation therapy in the above medical fields. The reasons are as follows:
This brings trouble to the surgeon, and at the same time, when the self-regulation function of the patient's physiology is exceeded, it will inevitably cause surgical accidents.
[0009] The above is the fundamental defect and key technical problem that the existing microwave ablation antenna cannot be normally promoted and applied clinically.

Method used

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  • Semi-rigid water-cooling microwave ablation antenna
  • Semi-rigid water-cooling microwave ablation antenna
  • Semi-rigid water-cooling microwave ablation antenna

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] Such as Figure 1-Figure 4 As shown, the semi-rigid water-cooled microwave ablation antenna of this embodiment includes: a radiation head 1, a dielectric tube 2, a semi-rigid coaxial cable 3, a fastening ring 4, an outer guide sleeve 5, a water chamber sleeve 6, and a water inlet pipe 7 , outlet pipe 8, centering collar 9, thermoplastic pipe 10, outer sheath pipe 11, T-shaped positioning piece 12, (circular plate-shaped) bracket 13, radio frequency pin connector 14, handle tail 15, spout 16 , Water inlet 17, Huff-style handle body 18, handle end 19. Such as figure 1 As shown, the semi-rigid coaxial cable 3 passes through the axial hole of the outer guide sleeve 5, and its inner conductor is loaded into the inner hole of the tail cylinder of the radiation head 1, and is fixed by welding and riveting. The medium tube 2 is assembled on the tail cylinder of the radiation head 1 and is fixed with an adhesive. The outer guide sleeve 5 is set on the outer circle of the tail...

Embodiment 2

[0058] In this embodiment, the semi-rigid water-cooled microwave ablation antenna adopts an L-shaped gun handle with a better hand feeling, and its features are as follows: Figure 6 shown. The structure of the front part of the microwave ablation antenna is the same as that of the first embodiment, and will not be repeated here. The tail assembly process is described as follows:

[0059] First, the water inlet 17 and the water outlet 16 are welded on the cylindrical bracket 13, and then the outer circle of the shoulder of the L-shaped radio frequency pin connector 14 is matched with the end surface of the cylindrical bracket 13 and welded firmly to form a " Bracket Components". Water inlet pipe 7 is welded on the water inlet nozzle 17 and two outlet pipes 8 are welded on the water outlet nozzle 16 again. Weld the inner and outer conductors of the semi-rigid coaxial cable 3 to the inner and outer conductors of the radio frequency pin connector 14 respectively firmly, and th...

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Abstract

Provided is a semi-rigid water-cooling microwave ablation antenna. The semi-rigid water-cooling microwave ablation antenna comprises a radiation head, a medium tube, a semi-rigid coaxial cable, an outer guide sleeve and a water chamber sleeve, wherein the outer guide sleeve is installed on the tail portion of the medium tube in a sleeved mode, the water chamber sleeve is fixed at the rear end of the outer guide sleeve, the semi-rigid coaxial cable penetrates through an axis hole of the outer guide sleeve, a cavity used for water-and-heat exchange is formed by the outer guide sleeve and the water chamber sleeve, at least three small holes are formed in the end face of the tail portion of the water chamber sleeve, capillary tubes are welded on the end face of the tail portion of the water chamber sleeve, the number of the capillary tubes is equal to the number of the small holes, at least one of the capillary tubes is a cooling water inlet tube, the rest of the capillary tubes are cooling water outlet tubes, and a thermo-plastic tube is used for wrapping the capillary tubes on the periphery of the semi-rigid coaxial cable in an evenly distributed mode. Low-temperature water which flows in a single-direction circulation mode is used for cooling a high-heat structural component at the front end of the semi-rigid water-cooling microwave ablation antenna, heat energy in a microwave ablation area and heat energy, used for microwave transmission, of the semi-rigid coaxial cable are transferred to the outside of a body in time, and therefore the semi-rigid water-cooling microwave ablation antenna is a clinic surgical instrument which can be safely, efficiently and reliably applied to the microwave ablation therapy on cavities, intestinal canals, even blood vessels and the like.

Description

technical field [0001] The invention relates to a medical device for microwave ablation therapy, which belongs to the field of medical microwave technology application. Background technique [0002] Since the beginning of the 21st century, microwave ablation of tumors has rapidly developed into a major means of clinical tumor treatment. It can inactivate tumors in situ under the guidance of modern images such as B-ultrasound or CT, and has minimally invasive, precise, Notable features of high efficiency, no toxicity and little side effects. Microwave ablation is playing an increasingly important role in the treatment of solid tumors, especially for larger solid tumors, due to its outstanding advantages such as fast heating speed, high intratumoral temperature, large ablation range, and little influence from carbonization and blood flow. The popularity rate of clinical application is also increasing. [0003] In recent years, microwave ablation therapy has also rapidly expa...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B18/18
Inventor 杨兴瑞
Owner 陆骊工
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