IP Library Granted Patent US 11,369,262
Granted Patent B2
US 11,369,262 · App. 16/622,598 · Granted Jun 28, 2022

Device and methods for monitoring a visual field progression of a user

Inventors: Mario Schlund (Ecublens, CH); Thierry Varidel (Ecublens, CH); Raphael Fritschi (Lausanne, CH); Carlos Gustavo De Moraes (New York, NY)
Assignee: Sensimed SA
A61B3/0025A61B3/024A61B3/107A61B3/16
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Quick Facts
Patent No.
US 11,369,262
App. No.
16/622,598
Granted
Jun 28, 2022
Kind
B2
Abstract

The invention relates to a method for determining the likelihood of being at or beyond a certain rate and/or risk of visual field progression (VFP) of a user, comprising the following steps: an installing step (S 100 ) comprising placing or implanting a continuous-wear sensor on or in an eye of a user; a measuring step (S 101 ) comprising measuring ocular biomechanical properties (OBP) through the continuous-wear sensor placed on or implanted in the eye, with said measurement comprising repeated data capture at regular time intervals; a recording step (S 102 ) comprising recording the user's ocular biomechanical properties in the form of at least one OBP time series plot in a recorder; a processing step (S 103 ) wherein at least one of a plurality of OBP parameters are extracted from the at least one recorded OBP time series plot; a calculation step (S 104 ) wherein the at least one of a plurality of OBP parameters are associated to VFP; a determining step (S 105 ) wherein one determines whether the visual field progression is at or beyond a certain VFP threshold and/or the probability that the said visual field progression is comprised within a specific range; a predicting step (S 106 ) wherein based on the determined VFP, one predicts the probability of a patient to develop a glaucoma, and a judging step (S 107 ) for judging of a specific medical treatment based on the above prediction result.

Claims (15)

1. Method for determining the likelihood of a user being at or beyond a certain rate and/or risk of visual field progression (VFP), comprising the following steps: a measuring step (S 101 ) comprising measuring ocular biomechanical properties (OBP) through a continuous-wear sensor placed on or implanted in the eye, with said measurement comprising repeated data capture at regular time intervals; a recording step (S 102 ) comprising recording the user's ocular biomechanical properties in the form of at least one OBP time series plot in a recorder; a processing step (S 103 ) wherein at least one of a plurality of OBP parameters are extracted from the recorded OBP time series plot; a calculation step (S 104 ) wherein the at least one of a plurality of OBP parameters are associated to VFP, and a determining step (S 105 ) wherein one determines whether the visual field progression is at or beyond a certain VFP threshold and/or the probability that the said visual field progression is comprised within a specific range; wherein the processing step (S 103 ) extracts a first number of first order parameters which are then combined to provide a second number, lower than the first number, of second order parameters.

2. The method according to claim 1 , wherein in the determining step (S 105 ), the visual field progression threshold is 0 dB/year or less.

3. The method according to claim 1 , wherein the extracted OBP parameters are at least one taken from the group comprising amplitude, minimum, maximum, standard-deviation, number of peaks, slopes, fitted cosinor curve of a 24-hour OBP profile, number of large peaks, mean peak ratio, amplitude of the cosine curve, wake-to-sleep slope, variability from the mean and area under the curve, or a combination thereof.

4. The method according to claim 1 , wherein in the calculation (S 104 ) step, the extracted OBP parameters are combined with additional user metadata.

5. The method according to claim 4 , wherein the extracted OBP parameters and additional user metadata are combined through a logistic model.

6. The method according to claim 4 , wherein the additional user metadata are taken from the group comprising latest IOP data, age, a number of medications taken during past 5 years, latest visual field mean defect.

7. The method according to claim 1 , wherein the continuous-wear sensor is a wireless Contact Lens Sensor.

8. The method according to claim 7 , wherein the continuous-wear sensor is implanted in the eye.

9. The method according to claim 1 , further comprising an OBP data downloading step (S 106 ) comprising transferring the OBP data from the recorder to a computer.

10. The method according to claim 9 , wherein the downloading step consists in a wireless data transfer.

11. The method according to claim 1 , further comprising a cleaning step (S 107 ) prior to the processing step (S 103 ) and adapted to clean the OBP time data by deleting the bad quality measured data.

12. The method according to claim 1 , further comprising a result communicating step (S 108 ) after the determining step (S 105 ), adapted to send a signal to a receiver, said signal indicating the likelihood of being at or beyond a certain rate and/or risk of visual field progression.

13. The method according to claim 1 , characterized in that it is a computer-implemented method.

14. The method according to claim 1 , wherein the determining step (S 105 ) determines the likelihood of being at or beyond a certain rate and/or risk of BNFL progression.

15. A system for predicting visual field progression in a user by carrying out the method of claim 1 the system comprising: a continuous-wear sensor placed on or implanted in the eye adapted to measure ocular biomechanical properties with repeated data capture at regular time intervals; a recorder adapted to record the user's ocular biomechanical properties in the form of at least one OBP time series plot, a processing unit for extracting at least one of a plurality of OBP parameters from the recorded OBP time series plot; —a calculation unit for associating the at least one of a plurality of OBP parameters to VFP, and a determining unit for determining whether the visual field progression is at or beyond a certain VFP threshold and/or the probability that the said visual field progression is comprised within a specific range.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2022
From: SCHLUND, MARIO; VARIDEL, THIERRY; FRITSCHI, RAPHAEL; DE MORAES, CARLOS GUSTAVO
To: SENSIMED SA
Reel/Frame 060900/0860 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2020
From: SCHLUND, MARIO; VARIDEL, THIERRY; FRITSCHI, RAPHAEL; DE MORAES, CARLOS GUSTAVO
To: SENSIMED SA
Reel/Frame 051631/0421 →
Continuity (1)
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