IP Library Granted Patent US 9,175,945
Granted Patent B2
US 9,175,945 · App. 13/747,133 · Granted Nov 3, 2015

Evaluating fit of an earpiece based on dynamic data

Inventors: Douglas P. Hart (Charlestown, MA); Federico Frigerio (Chestnut Hill, MA); Douglas M. Johnston (Winchester, MA); Manas C. Menon (Boston, MA); Daniel Vlasic (Cambridge, MA)
Assignee: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
G01B11/02A61B5/0071A61B5/0073A61B5/0082A61B5/0088A61B5/1075A61B5/12G01B11/00G01B11/0658G01B11/14G01B11/24G01B13/16G01N21/6456G06F17/50G06F17/5009G06F19/30G06F19/3437H04R1/1058A61B2576/02G01N2021/6421G01N2021/6439G01N2021/6491
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Quick Facts
Patent No.
US 9,175,945
App. No.
13/747,133
Granted
Nov 3, 2015
Kind
B2
Abstract

The attenuation and other optical properties of a medium are exploited to measure a thickness of the medium between a sensor and a target surface. Disclosed herein are various mediums, arrangements of hardware, and processing techniques that can be used to capture these thickness measurements and obtain dynamic three-dimensional images of the target surface in a variety of imaging contexts. This includes general techniques for imaging interior/concave surfaces as well as exterior/convex surfaces, as well as specific adaptations of these techniques to imaging ear canals, human dentition, and so forth.

Claims (30)

1. A method comprising:

obtaining static data from an ear canal of a subject with a three-dimensional scanner, the static data including a three-dimensional image of a surface of the ear canal at a predetermined pressure;

obtaining dynamic data from the ear canal of the subject with a three-dimensional scanner, the dynamic data including data from the ear canal characterizing changes in a shape of the ear canal related to a compliance of the ear canal to changes in pressurization and a shape change of the ear canal in response to a musculoskeletal movement of a head of the subject;

providing a three-dimensional model of an earpiece;

evaluating a fit of the three-dimensional model of the earpiece to the ear canal with a simulation executing on a processor based on the static data and the dynamic data; and

modifying a characteristic of the three-dimensional model to improve the fit based on the evaluation of the fit by the processor.

2. The method of claim 1 wherein the fit is evaluated according to pressure applied by the earpiece to the ear canal.

3. The method of claim 1 wherein the fit is evaluated according to size of the earpiece relative to the size of the ear canal in one or more regions of low compliance.

4. The method of claim 1 wherein the fit is evaluated according to an acoustic seal of the earpiece.

5. The method of claim 1 wherein the fit is evaluated to identify one or more deformation modes of the earpiece when placed for use in the ear canal.

6. The method of claim 5 wherein the one or more deformation modes includes deformation of the earpiece by the ear canal when the earpiece is placed for use in the ear canal.

7. The method of claim 5 wherein the one or more deformation modes includes deformations caused by the shape change of the ear canal in response to the musculoskeletal movement of the head of the subject.

8. The method of claim 5 wherein the one or more deformation modes includes deformation of the earpiece during an insertion of the earpiece into the ear canal.

9. The method of claim 1 wherein modifying the characteristic includes positioning an articulating joint within the three-dimensional model.

10. The method of claim 1 wherein modifying the characteristic includes adjusting a material profile of the three-dimensional model.

11. The method of claim 1 wherein modifying the characteristic includes modifying an elasticity of a portion of the three-dimensional model.

12. A computer program product comprising computer executable code embodied in a non-transitory computer readable medium that, when executing on one or more computing devices, performs the steps of:

receiving static data for an ear canal of a subject from a three-dimensional scanner, the static data including a three-dimensional image of a surface of the ear canal at a predetermined pressure;

receiving dynamic data for the ear canal of the subject from the three-dimensional scanner, the dynamic data including data from the ear canal characterizing changes in a shape of the ear canal related to a compliance of the ear canal to changes in pressurization and a shape change of the ear canal in response to a musculoskeletal movement of a head of the subject;

providing a three-dimensional model of an earpiece;

evaluating a fit of the three-dimensional model of the earpiece to the ear canal based on the static data and the dynamic data; and

modifying a characteristic of the three-dimensional model to improve the fit.

13. The computer program product of claim 12 wherein the fit is evaluated according to pressure applied by the earpiece to the ear canal.

14. The computer program product of claim 12 wherein the fit is evaluated according to size of the earpiece relative to the size of the ear canal in one or more regions of low compliance.

15. The computer program product of claim 12 wherein the fit is evaluated according to an acoustic seal of the earpiece.

16. The computer program product of claim 12 wherein the fit is evaluated to identify one or more deformation modes of the earpiece when placed for use in the ear canal.

17. The computer program product of claim 16 wherein the one or more deformation modes includes deformation of the earpiece by the ear canal when the earpiece is placed for use in the ear canal.

18. The computer program product of claim 16 wherein the one or more deformation modes includes deformations caused by the shape change of the ear canal in response to the musculoskeletal movement of the head of the subject.

19. The computer program product of claim 16 wherein the one or more deformation modes includes deformation of the earpiece during an insertion of the earpiece into the ear canal.

20. The computer program product of claim 12 wherein modifying the characteristic includes positioning an articulating joint within the three-dimensional model.

Assignments (2)
SECURITY INTEREST Recorded Dec 31, 2015
From: LANTOS TECHNOLOGIES, INC.
To: HORIZON TECHNOLOGY FINANCE CORPORATION
Reel/Frame 037406/0732 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2013
From: HART, DOUGLAS P.; FRIGERIO, FEDERICO; JOHNSTON, DOUGLAS M.; MENON, MANAS C.; VLASIC, DANIEL
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 030186/0274 →
Continuity (5)
Continuation 13169972 · Jun 27, 2011
Continuation In Part 12508804 · Jul 24, 2009
Provisional Application 61083394 · Jul 24, 2008
Provisional Application 61165708 · Apr 1, 2009
Related Publication 20130191084A1 · Jul 25, 2013