Jointed link structures exhibiting preferential bending, and related methods

US9393000B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9393000-B2
Application numberUS-201314071163-A
CountryUS
Kind codeB2
Filing dateNov 4, 2013
Priority dateFeb 14, 2011
Publication dateJul 19, 2016
Grant dateJul 19, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

In accordance with various exemplary embodiments of the present teachings, a surgical device can include a first pair of articulably coupled links, a second pair of articulably coupled links, and a tension member coupled to the first pair of links and the second pair of links such that altering tension in the tension member exerts a force tending to articulate the first pair of links and the second pair of links so as to bend the first pair of links and the second pair of links. The surgical device can be configured such that the first pair of links has a lower resistance to bending than the second pair of links upon altering the tension in the tension member.

First claim

Opening claim text (preview).

What is claimed is: 1. A medical device comprising: a first pair of articulably coupled links coupled by a first biasing element, the first pair of coupled links having a first bending resistance; a second pair of articulably coupled links having a second bending resistance, wherein the first bending resistance is greater than the second bending resistance; and a tension member coupled to the first pair of links and the second pair of links, wherein altering tension in the tension member exerts a force tending to articulate the first pair of links and the second pair of links, wherein the first and second pairs of links have a straightened configuration aligned along a central axis, each of the first pair of links having a convex protrusion in rolling contact with the other convex protrusion such that in the straightened configuration, the convex protrusions of the first pair of links are aligned with each other along an axis parallel to the central axis, each convex protrusion having a length and a width and wherein the length is not equal to the width. 2. The medical device of claim 1 further comprising: a second biasing element coupled between the second pair of articulably coupled links, wherein the first biasing element has a first spring constant and the second biasing element has a second spring constant. 3. The medical device of claim 2 wherein the first spring constant is greater than the second spring constant. 4. The medical device of claim 1 wherein the first biasing element includes a disk spring. 5. The medical device of claim 1 wherein the first biasing element includes a wave spring. 6. The medical device of claim 1 wherein the first biasing element includes a linear spring. 7. A medical device comprising: a jointed link assembly including a link member with a proximal joint having a first bending resistance and a distal joint having a second bending resistance, wherein the first bending resistance is greater than the second bending resistance; and a tension member coupled to the link member, wherein altering tension in the tension member exerts a force to actuate the proximal and distal joints, wherein the link member includes proximal and distal axial surfaces, the proximal axial surface including a proximal convex protrusion extending therefrom and the distal axial surface including a distal convex protrusion extending therefrom, the distal and proximal protrusions extending in diametrically opposite directions, and wherein the proximal joint includes the proximal convex protrusion and the distal joint includes the distal convex protrusion, and wherein at least one of the proximal convex protrusion and the distal convex protrusion has a length and a width and wherein the length is not equal to the width. 8. The medical device of claim 7 further comprising: a first biasing element at the proximal joint; and a second biasing element at the distal joint, wherein the first biasing element has a first spring constant and the second biasing element has a second spring constant. 9. The medical device of claim 8 wherein the first spring constant is greater than the second spring constant. 10. The medical device of claim 8 wherein the first biasing element includes a torsion spring. 11. The medical device of claim 8 wherein the first biasing element includes a disk spring. 12. The medical device of claim 8 wherein the first biasing element includes a wave spring. 13. The medical device of claim 8 wherein the first biasing element includes a linear spring. 14. The medical device of claim 7 wherein at least one of the proximal and distal joints includes a pin joint. 15. The medical device of claim 7 wherein the distal and convex protrusions are each in rolling contact with a respective adjacent protrusion surface. 16. A method for controlling movement of a medical device including a first pair of jointed links, a second pair of jointed links, and a tension member coupled to the first pair of jointed links and the second pair of jointed links, the method comprising: actuating the tension member to generate first degree of bending between the first pair of links and a second degree of bending between the second pair of links, wherein the first pair of jointed links has a first betiding resistance and the second pair of jointed links has a second bending resistance and wherein the first bending resistance is greater than the second bending resistance, wherein at least one link of the first and second pair of jointed links includes proximal and distal axial surfaces, the proximal axial surface including a proximal convex protrusion extending therefrom and the distal axial surface including a distal convex protrusion extending therefrom, the distal and proximal protrusions extending in diametrically opposite directions, and wherein the proximal and distal protrusions each have a length and a width and wherein the length is not equal to the width. 17. The method of claim 16 wherein the first pair of jointed links are coupled by a first biasing element and the second pair of jointed links are coupled by a second biasing element, wherein the first degree of bending is influenced by the first biasing element and the second degree of bending is influenced by the second biasing element. 18. The medical device of claim 1 , wherein the first pair of articulably coupled links is further coupled by a second biasing element, the first and second biasing elements providing different biasing forces such that the first pair of coupled links having an asymmetric first bending resistance. 19. The medical device of claim 18 , wherein second pair of articulably coupled links is coupled together by a third biasing element and a fourth biasing element, and wherein the first, second, third, and fourth biasing elements provide different biasing forces. 20. The medical device of claim 7 , wherein at least one of the first and second bending resistances is asymmetric relative to a central axis of the link assembly.

Assignees

Inventors

Classifications

  • Human Necessities · mapped topic

  • including flaccid drive element · CPC title

  • Human Necessities · mapped topic

  • A61B17/00Primary

    Surgical instruments, devices or methods (A61B18/00 takes precedence; dental tools A61C3/00; eye surgery A61F9/007; ear surgery A61F11/20) · CPC title

  • B25J18/06Primary

    flexible · CPC title

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What does patent US9393000B2 cover?
In accordance with various exemplary embodiments of the present teachings, a surgical device can include a first pair of articulably coupled links, a second pair of articulably coupled links, and a tension member coupled to the first pair of links and the second pair of links such that altering tension in the tension member exerts a force tending to articulate the first pair of links and the se…
Who is the assignee on this patent?
Intuitive Surgical Operations
What technology area does this patent fall under?
Primary CPC classification A61B17/00. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Jul 19 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).