CARDIOPULMONARY RESUSCITATION (CPR) FEEDBACK SYSTEMS AND METHODS
Systems and methods for cardiopulmonary resuscitation feedback are disclosed. According to an aspect, a method includes obtaining input parameters. The method also includes, in response to obtaining the input parameters, acquiring a spatial orientation data and a compression data; and calculating output displacement characteristics.
1 . A method of cardiopulmonary resuscitation feedback, the method comprising:
obtaining input parameters; and
in response to obtaining the input parameters:
acquiring a spatial orientation data and a compression data; and
calculating output displacement characteristics.
2 . The method of claim 1 , wherein the input parameters comprise at least one of an acceleration, an angular rotation rate, a magnetic field intensity, and a force.
3 . The method of claim 1 , wherein acquiring the spatial orientation data and the compression data comprises using one of an accelerometer and a magnetometer.
4 . The method of claim 1 , wherein calculating the output displacement characteristics comprises calculating at least one of a double integration value, a drift correction value, a compression direction value, and a compression displacement value.
5 . The method of claim 1 , further comprising wirelessly communicating the spatial orientation data, the compression data, and the output displacement characteristics to a computing device.
6 . The method of claim 1 , further comprising utilizing a time series algorithm and a spectral algorithm to determine the spatial orientation data, the compression data, and the output displacement characteristics.
7 . A system of cardiopulmonary resuscitation feedback, the system comprising:
at least one processor and memory configured to:
obtain input parameters; and
a communication component configured to:
acquire a spatial orientation data and a compression data; and
calculate output displacement characteristics.
8 . The system of claim 7 , further comprising an accelerometer configured to determine the force.
9 . The system of claim 7 , further comprising one of an accelerometer and a magnetometer configured to acquire the spatial orientation data and the compression data.
10 . The system of claim 7 , wherein the communication component is a wireless transmission component configured to wirelessly communicate the spatial orientation data, the compression data, and the output displacement characteristics.
11 . The system of claim 7 , wherein the communication component is a wireless transmission component configured to communicate the spatial orientation data, the compression data, and the output displacement characteristics to a computing device.
12 . The system of claim 7 , wherein the communication component is a wireless transmission component configured to communicate data indicating at least one of an acceleration, an angular rotation rate, a magnetic field intensity, and a force to a computing device.
13 . The system of claim 7 , wherein the at least one processor and memory is configured to utilize a time series algorithm and a spectral algorithm to determine the spatial orientation data, the compression data, and the output displacement characteristics