Apparatus and method for providing improved health care
A system for acquiring physiological data from a patient, the system comprising: a smartphone configured for wireless communication; an adapter for releasably mounting to the smartphone; a sensor module for releasably mounting to the adapter, the sensor module comprising at least one sensor for acquiring physiological data from the patient; and a software app running on the smartphone for (i) wirelessly controlling operation of the sensor module and wirelessly receiving the physiological data from the sensor module, and (ii) wirelessly communicating with a remote location.
1. A system for acquiring physiological data from a patient, the system comprising:
a smartphone configured for wireless communication;
an adapter for releasably mounting to the smartphone;
a sensor module for releasably mounting to the adapter, the sensor module comprising a gyroscope, an accelerometer and at least one physiological sensor for acquiring physiological data from the patient; and
a software app running on the smartphone for (i) using data acquired from the gyroscope, the accelerometer and the physiological sensor to confirm that the sensor module is in the correct orientation for acquiring physiological data from the patient, (ii) prompting a user to change at least one of the orientation of the sensor module and the orientation of the user when the sensor module is not in the correct orientation, (iii) wirelessly controlling operation of the sensor module and wirelessly receiving the physiological data from the sensor module, and (iv) wirelessly communicating the physiological data acquired from the patient to a remote location.
2. The system according to claim 1 wherein the software app running on the smartphone is configured to process the physiological data acquired by the sensor module and communicate the results of such processing to at least one of (i) a display screen on the smartphone, and (ii) a remote location.
3. The system according to claim 1 wherein the sensor module comprises at least one of an IR thermometer, a single lead ECG, a stethoscope, a pulse oximeter unit and an ultrasound unit.
4. The system according to claim 1 further comprising a wireless blood pressure cuff for wirelessly communicating with the smartphone.
5. The system according to claim 1 wherein the sensor module comprises an ultrasound unit and a pressure transducer unit configured to measure the pressure applied by the ultrasound unit against tissue.
6. The system according to claim 1 wherein the adapter comprises an adapter body, the sensor module comprises a sensor body, and the sensor module is releasably mounted to the adapter body by at least one of mechanical connector pins and magnets.
7. A system for acquiring physiological data from a patient, the system comprising:
an adapter for releasably mounting to a smartphone;
a sensor module for releasably mounting to the adapter, the sensor module comprising a gyroscope, an accelerometer and at least one physiological sensor for acquiring physiological data from the patient; and
a software app running on a smartphone for (i) using data acquired from the gyroscope, the accelerometer and the physiological sensor to confirm that the sensor module is in the correct orientation for acquiring physiological data from the patient, (ii) prompting a user to change at least one of the orientation of the sensor module and the orientation of the user when the sensor module is not in the correct orientation, (iii) wirelessly controlling operation of the sensor module and wirelessly receiving the physiological data from the sensor module, and (iv) wirelessly communicating the physiological data acquired from the patient to a remote location.
8. A method for acquiring physiological data from a patient, the method comprising:
providing a system comprising:
an adapter for releasably mounting to a smartphone;
a sensor module for releasably mounting to the adapter, the sensor module comprising a gyroscope, an accelerometer and at least one physiological sensor for acquiring physiological data from the patient; and
a software app running on the smartphone for (i) using data acquired from the gyroscope, the accelerometer and the physiological sensor to confirm that the sensor module is in the correct orientation for acquiring physiological data from the patient, (ii) prompting a user to change at least one of the orientation of the sensor module and the orientation of the user when the sensor module is not in the correct orientation, (iii) wirelessly controlling operation of the sensor module and wirelessly receiving the physiological data from the sensor module, and (iv) wirelessly communicating the physiological data acquired from the patient to a remote location;
using the software app to control operation of the sensor module so as to acquire physiological data from the patient and transfer the physiological data from the sensor module to the smartphone.
9. The method according to claim 8 wherein the software app running on the smartphone is configured to process the physiological data acquired by the sensor module and communicate the results of such processing to at least one of (i) a display screen on the smartphone, and (ii) a remote location.
10. The method according to claim 8 wherein the sensor module comprises at least one of an IR thermometer, a single lead ECG, a stethoscope, a pulse oximeter unit and an ultrasound unit.
11. The method according to claim 8 wherein the system further comprises a wireless blood pressure cuff for wirelessly communicating with the smartphone.
12. The method according to claim 8 wherein the sensor module comprises an ultrasound unit and a pressure transducer unit configured to measure the pressure applied by the ultrasound unit against tissue.
13. The method according to claim 8 wherein the adapter comprises an adapter body, the sensor module comprises a sensor body, and the sensor module is releasably mounted to the adapter body by at least one of mechanical connector pins and magnets.