IP Library Granted Patent US 10,765,530
Granted Patent B2
US 10,765,530 · App. 14/339,508 · Granted Sep 8, 2020

Surgical implant devices incorporating porous surfaces

Inventors: John C. Steinmann (Redlands, CA); Scott Rucker (Austin, TX); Tim Rasmussen (Redlands, CA); John P. Steinmann (Redlands, CA); Trace Cawley (Boca Raton, FL); Thomas Ross (Austin, TX); Ernesto Rios (Austin, TX); Andrew Olcese (Austin, TX)
Assignee: Renovis Surgical Technologies, Inc.
A61F2/447A61F2/30907A61F2/34A61F2/4465B22F3/1055B23K15/00A61B17/86A61F2002/30011A61F2002/3093A61F2002/30507A61F2002/30517A61F2002/30593A61F2002/30774A61F2002/30777A61F2002/30784A61F2002/30785A61F2002/30787A61F2002/30909A61F2002/30911A61F2310/00023A61F2310/00796B22F2005/005Y02P10/295
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Quick Facts
Patent No.
US 10,765,530
App. No.
14/339,508
Granted
Sep 8, 2020
Kind
B2
Abstract

A surgical implant device, comprising: a body portion; and one or more surfaces comprising a plurality of protruding structures; wherein the body portion and the one or more surfaces comprising the plurality of protruding structures are integrally formed. The one or more surfaces comprising the plurality of protruding structures are formed by an additive manufacturing process. The plurality of protruding structures comprise a plurality of needles. Optionally, the surgical implant device comprises one of an anterior lumbar interbody fusion cage, a posterior lumbar interbody fusion cage, a transforaminal lumbar interbody fusion cage, an oblique lumbar interbody fusion cage, a cervical cage, and a bone screw.

Claims (13)

1. A method for manufacturing a surgical implant device, comprising:

providing a metallic body portion;

forming one or more metallic surfaces comprising a metallic osteo-porous or osteo-derived layer to approximate a scanned three-dimensional spongy bone surface, said osteo-porous or osteo-derived layer comprising an irregular lattice having randomized intersecting strut locations and cross-sectional diameters on an exterior portion of the metallic body portion; and

forming a plurality of protruding metallic structures on the metallic body portion and on the one or more metallic surfaces comprising the metallic osteo-porous or osteo-derived layer comprising the irregular lattice having randomized intersecting strut locations and cross-sectional diameters, wherein the plurality of protruding metallic structures comprising a plurality of needles that increase the coefficient of friction of the one or more metallic surfaces;

wherein the one or more metallic surfaces comprising the metallic osteo-porous or osteo-derived layer comprising the irregular lattice having randomized intersecting strut locations and cross-sectional diameters and the plurality of protruding metallic structures are integrally formed by an additive manufacturing process in which metallic material of the metallic osteo-porous or osteo-derived layer comprising the irregular lattice having randomized intersecting strut locations and cross-sectional diameters is disposed on the metallic body portion forming an integral body of the surgical implant; and wherein:

(1) some of the plurality of protruding metallic structures comprising a plurality of needles are relatively longer needles and are coupled directly to the metallic body portion and coupled through and directly to the irregular lattice and (2) some intervening of the plurality of protruding metallic structures comprising a plurality of needles are relatively shorter than the relatively longer needles and are coupled directly only to the irregular lattice and not coupled directly to the metallic body portion;

Wherein the plurality of protruding metallic structures comprising a plurality of needles comprise at least two different shapes and are disposed in at least two different orientations with respect to the metallic body portion; and

Fabricating and finishing any external surfaces of the one or more metallic surfaces comprising a metallic osteo-porous or osteo-derived layer and the plurality of protruding metallic structures comprising a plurality of needles using an abrasive blast to create microtexture in any of the external surfaces.

2. The method of claim 1 , wherein the plurality of needles are disposed substantially perpendicular to the body portion.

3. The method of claim 1 , wherein the plurality of needles are disposed at an angle to the body portion.

4. The method of claim 1 , wherein the plurality of needles comprise titanium.

5. The method of claim 1 , wherein the body portion defines a hollow interior cavity.

6. The method of claim 1 , wherein the body portion defines one or more ports that are configured to receive a bone screw.

Assignments (3)
ASSET PURCHASE AGREEMENT Recorded Oct 8, 2020
From: RENOVIS SURGICAL TECHNOLOGIES, INC.
To: KYOCERA MEDICAL TECHNOLOGIES, INC.
Reel/Frame 054023/0571 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRESPONDENCE DATA PREVIOUSLY RECORDED AT REEL: 034796 FRAME: 0618. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 29, 2015
From: STEINMANN, JOHN C.; RUCKER, SCOTT; STEINMANN, JOHN P.; CAWLEY, TRACE; ROSS, THOMAS; RIOS, ERNESTO; OLCESE, ANDREW
To: RENOVIS SURGICAL TECHNOLOGIES, INC.
Reel/Frame 034842/0756 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2015
From: STEINMANN, JOHN C.; RUCKER, SCOTT; STEINMANN, JOHN P.; CAWLEY, TRACE; ROSS, THOMAS; RIOS, ERNESTO; OLCESE, ANDREW
To: RENOVIS SURGICAL TECHNOLOGIES, INC.
Reel/Frame 034796/0618 →
Continuity (5)
Continuation In Part 13530048 · Jun 21, 2012
Provisional Application 61916469 · Dec 16, 2013
Provisional Application 61885778 · Oct 2, 2013
Provisional Application 61857824 · Jul 24, 2013
Related Publication 20150018956A1 · Jan 15, 2015
Cited By (4)
US 12,186,200 US 12,208,011 US 12,303,400 US 12,447,025