Fixing of a sensor to a body part for measurement of a body parameter
A device is for measuring a body parameter for a subject. The device comprises a sensor for measuring the body parameter, a housing element for positioning the sensor on a body part of the subject and an actuator system within the housing element for applying a pressure to the body part. The actuator system comprises two states, a first state based on the actuator system applying a first pressure to a first area of the body part and a second state based on the actuator system applying a second pressure to a second area of the body part. The device also comprises a controller configured to apply the first and second states at different times.
1 . A device for measuring a body parameter for a subject while fixing itself to a body part of the subject, the device comprising:
a sensor for measuring the body parameter;
a housing element for positioning the sensor on the body part of the subject;
an actuator system within the housing element for fixing the device to the body part of the subject by applying a pressure to a body location of the body part for fixing the housing, wherein the actuator system comprises two states:
a first state based on the actuator system applying a first pressure to a first area of the body part; and
a second state based on the actuator system applying a second pressure to a second area of the body part different to the first area, such that the first area has a relief from the first pressure while the second pressure is applied to the second area; and
a controller configured to apply the first and second states at different times such that applied pressure is alternately positioned at said different areas of the body part.
2 . The device of claim 1 , wherein the actuator system comprises at least two actuator elements, each actuator element being configured to change in volume or shape when the actuator element is stimulated, and wherein the controller is further configured to stimulate the actuator elements to define the state of the actuator system.
3 . The device of claim 2 , wherein the actuator elements are based on electro active polymers configured to expand in volume when a voltage is applied and wherein the controller is further configured to apply a voltage to the electro active polymers.
4 . The device of claim 2 , wherein the actuator elements are inflatable elements configured to expand when they are inflated.
5 . The device of claim 4 , further comprising a pump for inflating the inflatable elements and wherein the controller is further configured to actuate the pump.
6 . The device of claim 1 , wherein the controller is further configured to change the pressure applied to the body part of the subject by the actuator system.
7 . The device of claim 6 , further comprising an accelerometer for determining the position of the subject and wherein the controller is further configured to change the pressure applied to the body part of the subject by the actuator system based on the position of the subject.
8 . The device of claim 1 , wherein the sensor is a pulse oximeter which comprises an LED unit and a photodetector, wherein the photodetector is configured to obtain a signal relating to the saturation percentage of oxygen in blood.
9 . The device of claim 8 , wherein the LED unit is placed at the extremity of a first actuator element and the photodetector is placed at the extremity of a second actuator element.
10 . The device of claim 8 , wherein the controller is further configured to control the actuator system to apply a pre-determined pressure to the body part, wherein the application of the pre-determined pressure to the body part reduces the venous contribution to the signal obtained by the photodetector.
11 . The device of claim 1 , further comprising an adhesive layer at the interface between the housing element and the body part of the subject and wherein the actuator system is configured to apply a pressure between the sensor and the body part.
12 . The device of claim 1 , wherein the actuator system comprises:
a rotating element with two or more protrusions, wherein the controller is configured to rotate the rotating element when changing states; and
an elastic layer between the rotating element and the body part of the subject.
13 . The device of claim 1 , further comprising a friction enhancing layer at the interface between the device and the body part of the subject.
14 . The device of claim 1 , further comprising a moisture trapping element at the interface between the device with the body part of the subject for reducing moisture build up at said interface.
15 . A method for measuring a body parameter for a subject with a device comprising a sensor, the method comprising:
applying a first pressure to a first area of a body part using an actuator system, wherein the actuator system is within a housing element of the device and wherein the housing element is fixed thereby to the body part;
applying a second pressure to a second area of the body part, different to the first area of the body part such that the first area has a relief from the pressure while the second pressure is applied to the second area, using the actuator system at a different time to the first pressure being applied to the first area of the body part such that applied pressure is alternately positioned at said different areas of the body part; and
measuring the body parameter with a sensor which is positioned on the body part by the housing element.