IP Library Patent Application 18647435
Patent Application
App. No. 18/647,435

METHODS OF DESIGNING HIGH X-RAY LUCENCY LATTICE STRUCTURES

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Patent No.
US None
App. No.
18/647,435
Abstract

The biocompatible lattice structures disclosed herein with an increased or optimized lucency are prepared according to multiple methods of design disclosed herein. The methods allow for the design of a metallic material with sufficient strength for use in an implant and that remains radiolucent for x-ray imaging.

Claims (36)

1 . A method of increasing lucency in a porous structure, steps comprising:

generate a bulk volume repeating structure in a form capable of analysis by an analysis tool; wherein the analysis tool is configured to analyze multiple variables;

propagate the bulk volume at some orientation;

calculate a uniformity of bulk thickness across the structure in a desired direction for viewing;

iterate across rotations to identify a desired uniformity of bulk thickness; and

capture the parameters and generate a final structure.

2 . The method of claim 1 , wherein the bulk thickness is visualized using a 2D heat map of the structure in the desired direction.

3 . The method of claim 1 , wherein the uniformity of the bulk thickness is calculated using a coefficient of determination.

4 . The method of claim 1 , wherein the unit cell structure comprises a lattice structure.

5 . The method of claim 4 , wherein the lattice structure is selected from a group of geometries consisting of radial dodeca-rhombus, rhombic dodecahedron, modified rhombic dodecahedron, diamond, dodecahedron, square, pentagonal, hexagonal, octagonal, sctet struts, trunic octa, diagonal struts and rounded, reinforced, weakened, or simplified versions of each geometry.

6 . The method of claim 4 , wherein the method further comprises the step of selecting a focal length.

7 . The method of claim 1 , wherein the analysis tool is selected from a group consisting of a computer implemented program or application and a person.

8 . The method of claim 1 , further comprising the step of sectioning the bulk volume to the approximate dimensions of a selected implant type.

9 . The method of claim 1 , wherein the desired uniformity of bulk thickness is selected from a group consisting of relative dispersion and relative disparity.

10 . The method of claim 1 , further comprising the step of translating the structure from its original orientation.

11 . A method of increasing lucency in a porous structure, steps comprising:

identify approximate implant dimensions for the porous structure;

run a multivariable analysis for uniformity of bulk thickness for a porous structure of the approximate implant dimensions from a desired direction; wherein the porous structure is rotated from an origin orientation by at least 90 degrees about x, y and z axes; and

use the multivariable analysis to determine a rotation from the origin orientation that produces a specific lucency characteristic in the desired direction.

12 . The method of claim 11 , further comprising the step of identifying predetermined structural requirements for the porous structure and selecting a lattice structure, comprising a repeating unit cell, and a material that meets the structural requirements.

13 . The method of claim 12 , further comprising the step of selecting an origin orientation for the porous structure.

14 . The method of claim 11 , wherein the specific lucency characteristic is selected from a group consisting of relative disparity and relative dispersion.

15 . The method of claim 11 , wherein the multivariable analysis is completed in an analysis tool.

16 . The method of claim 11 , wherein the repeating geometric structure comprises a lattice structure.

17 . The method of claim 11 , wherein the repeating geometric structure comprises a lattice structure selected from a group of geometries consisting of radial dodeca-rhombus, rhombic dodecahedron, modified rhombic dodecahedron, diamond, dodecahedron, square, pentagonal, hexagonal, octagonal, sctet struts, trunic octa, diagonal struts and rounded, reinforced, weakened, or simplified versions of each geometry.

18 . The method of claim 11 , wherein the method further comprises the step of selecting a focal length.

19 . The method of claim 11 , wherein the structure is rotated from its origin orientation by 90 degrees in the positive and negative directions about the x, y and z axes in the multivariable analysis for uniformity of bulk volume.

20 . A method of increasing lucency in a porous structure, steps comprising:

generate a bulk volume repeating structure in a form capable of analysis by an analysis tool, wherein the bulk volume is sectioned into the approximate dimensions of an implant type; wherein the analysis tool is configured to analyze multiple variables;

propagate the bulk volume at some orientation;

calculate a uniformity of bulk thickness across the structure in a first desired direction for viewing;

calculate a uniformity of bulk thickness across the structure in a second desired direction for viewing;

iterate across rotations to identify a desired uniformity of bulk thickness in the first desired direction for viewing and the second desired direction for viewing;

wherein the desired uniformity of bulk thickness in the first direction for viewing is selected from a group consisting of relative disparity and relative dispersion;

wherein the desired uniformity of bulk thickness in the second direction for viewing is selected from a group consisting of relative disparity and relative dispersion; and

capture the parameters and generate a final structure.

Assignments (1)
SECURITY INTEREST Recorded Sep 10, 2025
From: NANOHIVE MEDICAL LLC
To: EV LENDING LLC
Reel/Frame 072212/0859 →