Repositionable endoluminal support structure and its applications
An endoluminal support structure includes strut members interconnected by swivel joints to form a series of linked scissor mechanisms. The structure can be remotely actuated to compress or expand its shape by adjusting the scissor joints within a range of motion. In particular, the support structure can be repositioned within the body lumen or retrieved from the lumen. The support structure can be employed to introduce and support a prosthetic valve within a body lumen.
1. A method of fabricating a support apparatus implantable within a biological lumen, comprising:
interlinking a plurality of strut members with a plurality of swivel joints, the plurality of strut members comprising a plurality of inner strut members and a plurality of outer strut members, without directly interlinking any of the inner strut members to each other by swivel joints, and wherein each of the plurality of inner strut members and each of the plurality of outer strut members is directly interlinked to three other strut members of the plurality of strut members by swivel joints, such that the swivel joints cooperate with the strut members to adjustably define a tubular shaped structure between a compressed orientation and an expanded orientation,
wherein the tubular shaped structure has a longitudinal axis, and wherein each of the plurality of inner strut members in its entirety is closer to the longitudinal axis than each of the outer strut members.
2. The method of claim 1 , further comprising coupling an actuation mechanism to the shaped structure to urge the swivel joints within a range of motion.
3. The method of claim 2 , wherein the method comprises coupling the actuation mechanism to the strut members.
4. A method of fabricating a medical stent implantable within a biological lumen, comprising:
fabricating a plurality of elongated strut members, including a plurality of outer strut members and a plurality of inner strut members; and
connecting each of the plurality of inner strut members and each of the plurality of outer strut members with three other strut members of the plurality of elongated strut members with swivel joints, without directly interlinking any of the inner strut members to each other with a swivel joint, to form a tubular shaped structure having a longitudinal axis,
wherein each of the plurality of inner strut members in its entirety is closer to the longitudinal axis than each of the outer strut members.
5. The method of claim 4 , further comprising coupling an adjustment mechanism to at least one of the inner and at least one of the outer strut members to exert a force to urge the inner and outer strut members about the plurality of swivel joints within a range of motion.