Ablation catheter and ablation system
An ablation catheter and an ablation system are provided. The ablation catheter includes a sheath and an ablation assembly. The ablation assembly is disposed at a distal end of the sheath for performing ablation and isolation on a target tissue area. The ablation system includes the ablation device and a mapping device, the mapping device includes a mapping electrode arranged at a distal end of the ablation catheter, and the mapping electrode is used for collecting electrophysiological signals in the target tissue area.
1 . An ablation catheter, comprising:
a sheath; and
an ablation assembly provided at a distal end of the sheath, the ablation assembly comprising an ablation element for performing ablation and isolation on a target tissue area;
wherein the ablation assembly comprises a radially expandable and compressible support, and the ablation element is provided on the support; the support is a support frame; the support frame comprises a positioning frame and a bearing frame, the positioning frame is provided at a distal end of the bearing frame, and a proximal end of the bearing frame is connected to the distal end of the sheath.
2 . The ablation catheter according to claim 1 , wherein the support in an expanded state is in a cage form, an umbrella form, a sphere form, a basket form or a flower form.
3 . The ablation catheter according to claim 1 , wherein when a radial dimension of the support frame changes, a deformation ratio of the positioning frame is smaller than that of the bearing frame.
4 . The ablation catheter according to claim 1 , wherein both the positioning frame and the bearing frame have meshes, and the mesh of the positioning frame has a smaller size than the mesh of the bearing frame.
5 . The ablation catheter according to claim 1 , wherein a rigidity of the positioning frame is greater than or equal to that of the bearing frame.
6 . The ablation catheter according to claim 1 , wherein a cross-sectional size of a strut for forming the positioning frame is greater than or equal to that of a strut for forming the bearing frame.
7 . The ablation catheter according to claim 1 , wherein the ablation element comprises a plurality of electrodes, the bearing frame is provided with a plurality of electrodes which are distributed in a plurality of electrode rings, and the plurality of electrode rings are distributed at intervals in an axial direction of the support frame.
8 . The ablation catheter according to claim 7 , wherein each of the electrode rings comprises a plurality of electrodes, and within the same electrode ring, adjacent electrodes have opposite polarities.
9 . The ablation catheter according to claim 1 , wherein the bearing frame comprises a plurality of bearing struts, and the plurality of bearing struts are circumferentially distributed around an axis of the support frame.
10 . The ablation catheter according to claim 1 , wherein the bearing strut extends helically from a proximal end to a distal end of the support frame; or the bearing strut extends in a curved and non-helical form from the proximal end to the distal end of the support frame.
11 . The ablation catheter according to claim 10 , wherein the bearing strut comprises an extension section extending outward in a radial direction of the sheath, and a bearing section connected between an end of the extension section away from the sheath and the positioning frame.
12 . The ablation catheter according to claim 11 , wherein an angle between the extension section and the bearing section is in a range of 0° to 90°.
13 . The ablation catheter according to claim 1 , wherein the support frame further comprises a connection frame connected between the bearing frame and the sheath, and when a radial dimension of the support frame changes, a deformation ratio of the connection frame is greater than a deformation ratio of the positioning frame.
14 . The ablation catheter according to claim 1 , further comprising a guide rod movably passing through the sheath, wherein a distal end of the guide rod is connected with a distal end of the support frame, so that when the guide rod axially moves relative to the sheath, an axial dimension and a radial dimension of the support frame change.
15 . The ablation catheter according to claim 9 , further comprising a guide rod movably passing through the sheath, wherein the positioning frame comprises a plurality of first primary struts and a plurality of first secondary struts from a distal end to a proximal end, and the plurality of first primary struts are circumferentially distributed around the axis of the support frame, with distal ends of the plurality of first primary struts all connected to the guide rod and proximal ends of the first primary struts each connected to corresponding first secondary struts, and wherein a distal end of each of the bearing struts is connected to corresponding first secondary struts, and the corresponding first secondary struts connected to the same bearing strut are connected to different first primary struts.
16 . The ablation catheter according to claim 7 , wherein the electrode is further configured to collect electrophysiological signals in the target tissue area.
17 . An ablation system, comprising:
the ablation catheter according to claim 1 ; and
a mapping device comprising a mapping electrode provided at a distal end of the ablation catheter, wherein the mapping electrode is configured for collecting electrophysiological signals in the target tissue area.