IP Library Patent Application 13741294
Patent Application
App. No. 13/741,294

SENSOR SYSTEM FOR MONITORING A FOOT DURING TREATMENT AND REHABILITATION

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Quick Facts
Patent No.
US None
App. No.
13/741,294
Abstract

A sensor system includes a temperature sensor array that includes a plurality of temperature sensors, and a microcontroller operably connected with the temperature sensor array and an antenna for transmitting data received from the temperature sensor array. A data collection system receives the data transmitted from the microcontroller and stores it in a database operably installed in the memory of the data collection system for storing the data. A user interface program displays the data in a format suitable for determining if there is a problem with the foot based upon changes in the temperature of the foot.

Claims (45)

1 . A sensor system for monitoring a foot, the foot having an underside that includes a heel portion, an arch portion, a ball portion, and toe portions, the sensor system comprising:

a substrate layer shaped to be worn adjacent the underside of the foot;

a temperature sensor array that includes a plurality of temperature sensors disposed on the substrate layer, including toe temperature sensors disposed on the substrate layer to correspond with each of the toe portions, and a ball temperature sensor disposed on the substrate to correspond with the ball portion of the foot;

a microcontroller operably connected with the temperature sensor array and an antenna for transmitting data received from the temperature sensor array indicating the temperatures sensed by the temperature sensor array;

a data collection system having a processor and a memory for receiving the data transmitted from the microcontroller;

a database operably installed in the memory of the data collection system for storing the data; and

a user interface program operably installed in the memory of the data collection system for displaying the data in a format suitable for determining if there is a problem with the foot based upon changes in the temperature of the foot.

2 . The sensor system of claim 1 , wherein the temperature sensor array includes a plurality of resistive thermal devices operably mounted on the substrate.

3 . The sensor system of claim 1 , wherein the temperature sensor array includes a plurality of thin film resistive thermal devices operably mounted on the substrate.

4 . The sensor system of claim 1 , wherein the temperature sensor array includes a plurality of thermocouples operably mounted on the substrate.

5 . The sensor system of claim 1 , wherein the substrate is operably mounted in a slipper having an upper for operably mounting the substrate on the foot.

6 . The sensor system of claim 5 , wherein the substrate is operably mounted between an inner layer and an outer layer of the slipper.

7 . The sensor system of claim 1 , wherein the substrate includes a first layer and a second layer, and wherein the temperature sensors are operably mounted on sensor boards that are positioned in a tow recess and a heel recess within the first layer.

8 . A method for monitoring a user's foot to determine if an ulcer is forming in the foot, the method comprising the steps of:

providing a sensor system comprising:

a substrate layer shaped to be worn adjacent the underside of the foot;

a temperature sensor array that includes a plurality of temperature sensors disposed on the substrate layer;

a microcontroller operably connected with the temperature sensor array and an antenna for transmitting data;

a data collection system having a processor and a memory for receiving the data transmitted from the microcontroller; and

a database operably installed in the memory of the data collection system for storing the data;

predetermining at least one suitable time of day to record data from the temperature sensors when the temperature of the foot will be substantially unaffected by outside variables;

mounting the sensor system on the foot, at the predetermined time of day, such that the temperature sensors operably abut the foot for sensing the temperature of the foot;

determining the temperature of the foot using the temperature sensor array;

transmitting data regarding the temperature to the data collection system;

repeating these steps for a period of time at the predetermined time, to generate a temperature trend that is substantially unaffected by outside variables;

determining, based upon changes in the temperature of the foot in the temperature trend, if there is a problem with the foot.

9 . The method of claim 8 , wherein, upon determining that there is a spike in temperature, the sensor system transmits a warning of potential infection.

10 . The method of claim 8 , wherein, upon determining that there is a drop in temperature, the sensor system transmits a warning of potential restricted blood flow to the foot.

11 . A method for monitoring a user's foot to determine if an ulcer is forming in the foot, the method comprising the steps of:

providing an inductive charging station that includes an inductive charging mechanism operably mounted on a base;

providing a sensor system comprising:

a substrate layer shaped to be worn adjacent the underside of the foot;

a temperature sensor array that includes a plurality of temperature sensors disposed on the substrate layer;

a microcontroller operably connected with the temperature sensor array and an antenna for transmitting data;

a battery operably connected with the microcontroller for powering the sensor system;

an inductive charging device operably connected with the battery for recharging the battery when operably coupled with the inductive charging station;

a data collection system having a processor and a memory for receiving the data transmitted from the microcontroller; and

a database operably installed in the memory of the data collection system for storing the data;

predetermining at least one suitable time of day to record data from the temperature sensors when the temperature of the foot will be substantially unaffected by outside variables;

mounting the sensor system on the foot, at the predetermined time of day, such that the temperature sensors operably abut the foot for sensing the temperature of the foot;

determining the temperature of the foot using the temperature sensor array;

transmitting data regarding the temperature to the data collection system;

repeating these steps for a period of time at the predetermined time, to generate a temperature trend that is substantially unaffected by outside variables;

determining, based upon changes in the temperature of the foot in the temperature trend, if there is a problem with the foot; and

storing the sensor system on the inductive charging station between uses, so that the battery of the sensor system is kept in a charged state via the inductive interaction between of the inductive charging device via the inductive charging mechanism.