RESPIRATORY THERAPY APPARATUS AND METHODS
Respiratory therapy apparatus includes device ( 100 ) with a rocker arm ( 12 ) supporting a valve ( 11 ) that opens and closes an expiration opening ( 10 ) so that an oscillating resistance to flow is produced accompanied by an alternating sound at the frequency of oscillation. The apparatus also includes a sensor ( 20 ) with a microphone ( 21 ) that detects sound from the device ( 100 ) transmitted through air. The sensor ( 20 ) computes the frequency of the detected sound and represents this on a display ( 23 ).
1 . A method of evaluating use of a respiratory therapy device having a valve opened and closed by breathing of a user through the respiratory therapy device to cause a rocker arm in the respiratory therapy device to effect an oscillating movement that produces an audible sound, comprising:
placing a sensor unit including a microphone connected to a processing and memory unit close to the respiratory therapy device to pick up the audible sound from the respiratory therapy device when the user begins a therapy session by breathing though the respiratory therapy device;
processing the audible sound to measure parameters including at least the duration of exhalation and the number of exhalations by the user during the therapy session;
calculating at least the oscillation frequency of the exhalations by the user during the therapy session;
presenting the user a feedback as to whether the user has achieved a target oscillation frequency.
2 . The method of claim 1 , further comprising:
turning on the sensor unit when the user starts the therapy session;
identifying the user by means of a profile of the user stored in a memory of the processing and memory unit when the user begins the therapy session.
3 . The method of claim 2 , further comprising:
providing an on/off switch on the sensor unit to enable the user to turn the device on to start the therapy session.
4 . The method of claim 1 , further comprising:
providing a display at the sensor unit to present the user with at least a representation of the session time and the oscillation frequency to enable the user to achieve best therapeutic effect.
5 . The method of claim 1 , further comprising:
effecting a mobile phone as the sensor unit by providing a program application for enabling a microphone in the mobile phone to pick up the audible sound from the respiratory therapy unit and a processor in the mobile phone to process the audible sound.
6 . The method of claim 1 , further comprising:
providing an input means and a data interface including a wireless interface to the sensor unit such that information can be entered into the sensor unit by the input means or via the data interface from a remote computer.
7 . The method of claim 1 , further comprising:
enabling the user to adjust the frequency of operation and the resistance to flow of air through the respiratory therapy device to maximize benefit for the user;
entering the frequency of operation of the respiratory therapy device adjusted by the user into the sensor unit;
arranging the sensor unit to compute a measure of flow rate and pressure generated from the measured oscillation frequency and from the frequency of operation entered into the sensor unit.
8 . The method of claim 1 , further comprising:
mounting the sensor unit to the respiratory therapy device.
9 . A method of evaluating use of a respiratory therapy device having a valve opened and closed by breathing of a user through the respiratory therapy device to cause a rocker arm in the respiratory therapy device to effect an oscillating movement that produces an audible sound, comprising:
placing a sensor unit including a microphone adapted to pick up the audible sound close to the respiratory therapy device, the senor unit including a processing unit connected to the microphone;
turning the sensor unit on to pick up the audible sound as the user starts a therapy session breathing through the respiratory therapy device;
presenting a target oscillation frequency to the user during the therapy session;
utilizing the processing unit to measure at least the duration of exhalation and the number of exhalations by the user from the audible sound picked up by the microphone, and to calculate the oscillation frequency of the exhalations by the user during the therapy session.
10 . The method of claim 9 , further comprising:
identifying a profile of the user stored in the sensor unit when the user begins the therapy session.
11 . The method of claim 9 , further comprising:
providing an on/off switch on the sensor unit to enable the turning on of the sensor unit when the user starts the therapy session.
12 . The method of claim 9 , further comprising:
providing a display at the sensor unit to present the user with a representation of the session time and the oscillation frequency as the user breathes through the respiratory therapy device;
presenting the target oscillation frequency on the display.
13 . The method of claim 9 , further comprising:
providing a program application to a mobile phone to enable the mobile phone to act as the sensor unit.
14 . The method of claim 9 , further comprising:
providing an input means and a data interface including a wireless interface to the sensor unit such that information can be entered into the sensor unit by the input means or via the data interface from a remote computer.
15 . The method of claim 9 , further comprising:
providing an adjustment means at the respiratory therapy device to enable the user to adjust the frequency of operation and the resistance to flow of air through the respiratory therapy device for the therapy session.