IP Library Patent Application 16410961
Patent Application
App. No. 16/410,961

METHODS AND DEVICES FOR MEASURING BODY TEMPERATURE IN A REDUCED TIME

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Patent No.
US None
App. No.
16/410,961
Abstract

Various methods and devices for reducing the time for a body-mountable temperature monitoring device to provide an accurate body temperature are disclosed. Methods are used to accurately predict the measured temperature once the monitoring device reaches thermal equilibrium. For example, in one embodiment, a method for measuring body temperature of a subject includes obtaining, by a temperature monitor attached to a body of the subject, a plurality of body temperature measurements at a plurality of times, determining parameters of a model used for predicting temperature based on the plurality of measurements, predicting a body temperature of the subject based on the model, and outputting the predicted body temperature as a current temperature reading.

Claims (60)

1 . A method for measuring body temperature of a subject, comprising:

obtaining, by a temperature monitor attached to a body of the subject, a plurality of body temperature measurements at a plurality of times for the subject;

determining, by the temperature monitor, parameters of a model used for predicting temperature, based on the plurality of measurements;

predicting, by the temperature monitor, a body temperature of the subject based on the model; and

outputting, by the temperature monitor, the predicted body temperature as a current temperature reading.

2 . The method of claim 1 , wherein the model comprises an exponential model for temperature, and wherein determining the parameters of the model comprises determining values of a plurality of parameters in the exponential model.

3 . The method of claim 1 , wherein the model comprises:

t (time)=( T e −T 0 )(1− e −αt )+ T 0 ,

where t=time, T 0 =an initial temperature, T e =a final temperature, and α=a thermal time constant, and

wherein determining the parameters of the model comprises determining values of α and T e .

4 . The method of claim 3 , wherein predicting a body temperature of the subject based on the model comprises:

determining a value of a of the model; and

inputting a time into the model.

5 . The method of claim 1 , further comprising:

continuing to obtain a plurality of body temperature measurements at a plurality of times after the predicted body temperature is outputted; and

updating the predicted body temperature based on the continued obtainment of the plurality of body temperature measurements at a plurality of times.

6 . The method of claim 1 , wherein the plurality of times comprises predetermined intervals.

7 . The method of claim 1 , further comprising activating a heating element coupled to the temperature monitor.

8 . The method of claim 7 , wherein the heating element is activated when the temperature monitor detects that the temperature monitor is attached to the body of the subject.

9 . The method of claim 7 , wherein activating the heating element comprises activating the heating element for a predetermined amount of time; and wherein obtaining the plurality of body temperature measurements comprises obtaining the plurality of body temperature measurements over a period of time that is greater than the predetermined amount of time.

10 . A temperature monitoring device for measuring body temperature of a subject, which comprises:

a thermal sensor configured to sense a body temperature and to obtain a plurality of body temperature measurements at a plurality of times for the subject; and

a microcontroller configured to:

receive the plurality of measurements from the thermal sensor,

determine parameters of a model used for predicting body temperature based on the plurality of measurements,

predict a body temperature of the subject based on the model, and

output the predicted body temperature as a current temperature reading.

11 . The temperature monitoring device of claim 10 , wherein the model comprises:

t (time)=( T e −T 0 )(1− e −αt )+ T 0 ,

where t=time, T 0 =an initial temperature, T e =a final temperature, and α=a thermal time constant, and

wherein determining the parameters of the model comprises determining values of α and T e .

12 . The temperature monitoring device of claim 10 , wherein the microcontroller is further configured to:

continue to obtain a plurality of body temperature measurement at a plurality of times after the predicted body temperature is outputted; and

update the predicted body temperature based on the continued obtainment of the plurality of body temperature measurements at a plurality of times.

13 . The temperature monitoring device of claim 10 , further comprising a thermal contact configured to contact the body of the subject and a heating element adjacent to the thermal contact, wherein the microcontroller is configured to activate the heating element.

14 . The temperature monitoring device of claim 13 , wherein the microcontroller is further configured to:

detect that the temperature monitoring device is attached to the body of the subject, and

activate the heating element upon the detection.

15 . The temperature monitoring device of claim 13 , further comprising an adhesive patch incorporating the heating element.

16 . A temperature monitoring device, which comprises:

a thermal contact configured to contact a body of the subject;

a heating element adjacent to the thermal contact and configured to heat the thermal contact;

a thermal sensor configured to sense a temperature of the thermal contact and to obtain a plurality of body temperature measurements at a plurality of times for a time greater than a predetermined amount of time; and

a microcontroller configured to:

activate the heating element for the predetermined amount of time,

receive the plurality of measurements from the thermal sensor,

determine parameters used for predicting body temperature based on the plurality of measurements,

predict a body temperature of the subject based on the parameters, and

output the predicted body temperature as a current temperature reading.

17 . The temperature monitoring device of claim 16 , wherein the parameters are part of a model, wherein the model comprises:

t (time)=( T e −T 0 )(1− e −αt )+ T 0 ,

where t=time, T 0 =an initial temperature, T e =a final temperature, and α=a thermal time constant, and

wherein determining the parameters of the model comprises determining values of a and T e .

18 . The temperature monitoring device of claim 16 , wherein the microcontroller is further configured to:

continue to obtain a plurality of body temperature measurement at a plurality of times after the predicted body temperature is outputted; and

update the predicted body temperature based on the continued obtainment of the plurality of body temperature measurements at a plurality of times.

19 . The temperature monitoring device of claim 16 , further comprising an adhesive patch incorporating the heating element.

20 . The temperature monitoring device of claim 16 , wherein the microcontroller is further configured to:

detect that the temperature monitoring device is attached to the body of the subject, and

activate the heating element upon the detection.

Assignments (2)
CHANGE OF NAME Recorded May 19, 2026
From: VERILY LIFE SCIENCES LLC
To: VERILY HEALTH INC.
Reel/Frame 075768/0309 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2019
From: BIEDERMAN, WILLIAM; FRICK, SEAN; HEITZ, ROXANA
To: VERILY LIFE SCIENCES LLC
Reel/Frame 049163/0893 →