Cryoablation catheter with heat insulation capsule
A technique for ablation of catheters and capsules, which is applied in the direction of catheters, cooling surgical instruments, and parts of surgical instruments. It can solve the problems of high cost and complex structure, and achieve the effects of preventing heat transfer, reducing damage, and accelerating rewarming.
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Embodiment 1
[0035] Such as figure 1 As shown, a cryoablation catheter with a thermal insulation capsule of the present invention includes: a cryoequipment joint 1, a control handle 2, a cryounit 3, a flexible connecting tube 4 and a tube body 5, and a tube body with a distal end and a proximal end 5 includes a cold source inlet chamber 51, a cold source air return chamber 52 and a filling chamber 53 extending along its axial direction; The cavity 51 is in fluid communication with the cold source return cavity 52 , and the thermal insulation capsule 32 is in communication with the filling cavity 53 . The thermal insulation capsule 32 is arranged outside the proximal end of the first capsule 31 . When the first bladder 31 expands, a thermal insulation medium is injected into the thermal insulation bladder 32 through the filling cavity 53, so that the area occupied by the thermal insulation bladder 32 becomes an area that isolates energy transmission, thereby preventing and The energy trans...
Embodiment 2
[0043] Such as image 3 As shown, the difference between this embodiment and Embodiment 1 is that: the proximal end portion of the first balloon body 31 is a concave structure, and the heat insulating balloon body 32 is arranged on the first balloon body 31. The concave structure described above. The concave structure of the first balloon body 31 makes the positions of the first balloon body 31 and the heat insulating balloon 34 more compact, so that the length of the freezing unit 3 is reduced, and the volume of the freezing unit 3 is controllable. Due to the concave structure of the first capsule 31 , the cryoenergy in the first capsule 31 is more concentrated on the ablation of the designated part, and the treatment effect is better. Of course, in another embodiment, the concave structure may also be provided at the distal end portion of the first balloon body 31 .
Embodiment 3
[0045] Such as Figure 4 As shown, the difference between this embodiment and the first embodiment lies in that: the heat insulating capsule 32 is arranged inside the first capsule 31 .
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