Device and method for deploying and attaching an implant to a biological tissue
This present invention generally relates to devices and methods for repairing an aperture in a biological tissue. In certain embodiments, the invention provides a system for closing an aperture in a biological tissue including a handle, an elongate shaft connected to the handle, and a deployment scaffold connected to the shaft, in which the scaffold is configured to releasably retain a surgical implant and the scaffold is configured to deploy and attach the surgical implant to the biological tissue.
1. A surgical device comprising:
an elongate shaft defining a longitudinal axis; and
a deployment scaffold coupled to one end of the elongate shaft, the deployment scaffold transitionable between a closed configuration and an open configuration, the deployment scaffold including:
first and second arms;
a plurality of linking members coupling the first and second arms with the elongate shaft;
attachment members directly coupled to the first and second arms, the attachment members configured to releasably retain a surgical implant on the first and second arms, wherein the plurality of linking members extend substantially parallel to the longitudinal axis when the deployment scaffold is in the closed configuration and the plurality of linking members extend transverse to the longitudinal axis when the deployment scaffold is in the open configuration, the attachment members being configured to retain the surgical implant on the first and second arms in a first configuration, and the attachment members being configured to allow separation of the surgical implant from the first and second arms in a second configuration, wherein the plurality of linking members maintains the first and second arms parallel to one another as the deployment scaffold transitions between the open and closed configurations; and
at least one activation member secured to the attachment members, wherein retraction of the at least one activation member moves the attachment members from the first configuration to the second configuration.
2. The surgical device of claim 1 , wherein the attachment members are rotatable relative to the first and second arms.
3. The surgical device of claim 2 , wherein the attachment members are rotatable between the first configuration and the second configuration.
4. The surgical device of claim 1 , wherein the deployment scaffold further includes a central shaft disposed within the elongate shaft.
5. The surgical device of claim 4 , wherein the central shaft is coupled to the plurality of linking members.
6. The surgical device of claim 5 , wherein longitudinal movement of the central shaft relative to the elongate shaft transitions the deployment scaffold between the open configuration and the closed configuration.
7. The surgical device of claim 1 , further including the surgical implant.
8. The surgical device of claim 7 , wherein the surgical implant is a patch, the patch including a surgical mesh.
9. The surgical device of claim 8 , wherein the surgical implant is releasable in a direction that is radial with respect to a longitudinal axis of the elongate shaft.
10. The surgical device of claim 1 , wherein the attachment members are configured to penetrate the surgical implant.
11. The surgical device of claim 10 , wherein the attachment members each include a hook configured to penetrate the surgical implant.
12. A surgical device comprising:
an elongate body defining a longitudinal axis and including a tube and a shaft slidably disposed within the tube; and
a deployment scaffold coupled to one end of the elongate body, the deployment scaffold being transitionable between an open configuration and a closed configuration and including:
first and second arms;
a first pair of linking members pivotally connected to the tube and coupling the first and second arms with the tube; and
attachment members coupled to the first and second arms, the attachment members configured to releasably retain a surgical implant on the first and second arms, the first and second arms being substantially parallel to and laterally spaced from the longitudinal axis when the deployment scaffold is in the open configuration.
13. The surgical device of claim 12 , wherein the first and second arms are substantially parallel to the longitudinal axis when the deployment scaffold is in the closed configuration.
14. The surgical device of claim 13 , wherein the first and second arms remain parallel relative to each other as the deployment scaffold transitions between open and closed configurations.
15. The surgical device of claim 13 , further including a second pair of linking members pivotally connected to the shaft and coupling the first and second arms with the shaft.
16. The surgical device of claim 12 , wherein the attachment members are rotatable relative to the first and second arms.
17. The surgical device of claim 12 , wherein the attachment members are rotatable between a first configuration and a second configuration.
18. The surgical device of claim 17 , wherein when in the first configuration, the attachment members are configured to retain the surgical implant on the first and second arms and when in the second configuration, the attachment members are configured to allow separation of the surgical implant from the first and second arms.
19. The surgical device of claim 12 , wherein longitudinal movement of the shaft relative to the tube transitions the first and second arms between the open configuration and the closed configuration.
20. The surgical device of claim 12 , further including the surgical implant.