IP Library › Granted Patent US 11,045,131
Granted Patent B1
US 11,045,131 · App. 16/891,419 · Granted Jun 29, 2021

Truncated icosahedral neural sensor net and modular elements therefor

Inventors: Don M. Tucker (Eugene, OR); Phan Luu (Eugene, OR); Roman Shusterman (Eugene, OR)
A61B5/291A61B5/6814A61B2560/0412A61B2560/0443
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Quick Facts
Patent No.
US 11,045,131
App. No.
16/891,419
Granted
Jun 29, 2021
Kind
B1
Abstract

A truncated icosahedral neural sensor net and modular elements therefor. The neural sensor net comprises a plurality of substantially pentagonally shaped elements connected to each other with elongate elastic tension lines at their respective vertices, the tension lines defining therebetween a plurality of substantially hexagonally shaped elements. The neural sensor net may be assembled from a plurality of modular elements.

Claims (16)

1. A neural sensor net comprising a plurality of substantially regular pentagonal shaped elements connected to each other with elongate elastic tension lines at their respective vertices, wherein three tension lines form, in combination with three respective sides of three substantially regular pentagonally shaped elements, a substantially regular hexagonal shaped element.

2. A modular element for a neural sensor net for wearing on a head surface, comprising a body formed of a sheet material that defines a plurality of nodes and a plurality of tension lines, wherein the tension lines are elongate segments of the material that join the nodes so as to define legs of triangles of which the nodes define vertices, wherein there are more than fifteen nodes and wherein, with the modular element laid flat, five of the more than fifteen nodes are connecting nodes that define the vertices of a substantially regular pentagon, for connecting the modular element to one or more other modular elements, and ten of the more than fifteen nodes are closely spaced pairs of warping nodes disposed substantially mid-way between the vertices, wherein the nodes of each pair of warping nodes are separated by respective slits in the body of the modular element, the warping nodes and slits for warping the element into a 3D domed configuration for fitting to the head surface.

3. The modular element of claim 2 , further comprising at least one additional node that is a bridging node, adjacent and corresponding to one of the connecting nodes, to provide for sharing at least one of the tension lines between the modular element and one other modular element.

4. The modular element of claim 3 , wherein there are five of the bridging nodes.

5. The modular element of claim 4 , wherein the nodes are annular.

6. The modular element of claim 3 , wherein the nodes are annular.

7. The modular element of claim 2 , wherein the nodes are annular.

8. A modular element for a neural sensor net for wearing on a head surface, comprising a body formed of a sheet material that defines a plurality of nodes and a plurality of tension lines, wherein the tension lines are elongate segments of the material that join the nodes so as to define legs of triangles of which the nodes define vertices, wherein there are more than fifteen nodes and wherein, with the modular element laid flat, five of the more than fifteen nodes are connecting nodes that define the vertices of a substantially regular pentagon, for connecting the modular element to one or more other modular elements, and ten of the more than fifteen nodes are closely spaced pairs of warping nodes disposed substantially mid-way between the vertices, wherein the nodes of each pair of warping nodes are separated by respective slits in the body of the modular element, the warping nodes and slits for warping the element into a 3D domed configuration for fitting to the head surface, and wherein the modular element is surrounded by an outer substantially regular hexagonal tessellating structure.

9. The modular element of claim 8 , in combination with two other substantially identical modular elements, joined together so that the outer substantially regular hexagonal tessellating structure of the three modular elements defines a substantially regular hexagonal shaped element between the three modular elements.

10. The combination of modular elements of claim 9 , wherein at least two of the three modular elements further comprises at least one additional node that is a bridging node, adjacent and corresponding to an associated one of the connecting nodes of the at least two of the three modular elements, to provide for sharing at least one of the tension lines between the at least two of the three modular elements.

11. The combination of modular elements of claim 10 , where there are five of the bridging nodes for each of the at least two modular elements.

12. The combination of modular elements of claim 11 , wherein all three of the modular elements comprise a bridging node.

13. The combination of modular elements of claim 12 , wherein there are five of the bridging nodes for each of the three modular elements.

14. The combination of modular elements of claim 13 , wherein the nodes are annular.

15. A neural sensor net comprising a plurality of substantially identical, flat modular elements connected to each other so as to cause the otherwise flat modular elements to be warped into respective 3D domed configurations, and so as to define at least one set of three substantially regular pentagonally shaped elements, wherein the three substantially regular pentagonally shaped elements are spaced apart from each other by a corresponding substantially regular hexagonally shaped element.

16. A process for forming a neural sensor net, comprising forming a plurality of substantially identical, flat modular substantially regular pentagonally shaped elements and connecting the modular elements together so as to cause the otherwise flat modular elements to be warped into respective 3D domed configurations, and so as to define at least one set of three substantially regular pentagonally shaped elements, wherein the three substantially regular pentagonally shaped elements are spaced apart from each other by a corresponding substantially regular hexagonally shaped element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2022
From: TUCKER, DON M.; LUU, PHAN; SHUSTERMAN, ROMAN
To: BRAIN ELECTROPHYSIOLOGY LABORATORY COMPANY, LLC
Reel/Frame 060858/0086 →