IP Library Patent Application 12181293
Patent Application
App. No. 12/181,293

METHOD AND APPARATUS FOR RESPIRATORY MONITORING

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Quick Facts
Patent No.
US None
App. No.
12/181,293
Abstract

The method and the apparatus are used for monitoring a patient's breathing. A respiratory movement of the patient is detected by means of a thoracic expansion sensor that is placed near the rib cage and by means of an abdominal expansion sensor that is placed near the abdomen. Moreover, a phase difference is detected between a thoracic measuring signal delivered by the thoracic expansion sensor and an abdominal measuring signal delivered by the abdominal expansion sensor. The phase difference thus detected is monitored to determine whether it exceeds at least a phase threshold or whether it increases over time, and the presence of a disorder in the respiratory tract of the monitored patient is recognized on the basis of an increasing phase difference.

Claims (41)

1 . A method of monitoring a patient ( 2 ), the method comprising

a) detecting a respiratory movement of the patient ( 2 ) by means of a thoracic expansion sensor ( 4 ) that is placed near the rib cage and by means of an abdominal expansion sensor ( 5 ) that is placed near the abdomen;

b) detecting a phase difference (PD) between a thoracic measuring signal (MT) delivered by the thoracic expansion sensor ( 4 ) and an abdominal measuring signal (MA) delivered by the abdominal expansion sensor ( 5 );

c) monitoring the detected phase difference (PD) to determine whether it fulfills at least one of the following conditions:

the phase difference (PD) exceeds at least a phase threshold;

the phase difference (PD) increases over time;

e) recognizing the presence of a disorder in the respiratory tract of the monitored patient ( 2 ) on the basis of a phase difference (PD) that fulfills at least one of the following conditions:

the phase difference (PD) exceeds the phase threshold;

the phase difference (PD) increases.

2 . A method according to claim 1 , wherein the phase difference (PD) is monitored continuously.

3 . A method according to claim 2 , wherein the phase difference (PD) is monitored to determine a variation over time thereof.

4 . A method according to claim 1 , wherein the phase difference (PD) is monitored continuously to detect whether a time curve of the phase difference (PD) shows a section ( 13 ) of increasing phase difference (PD) that is immediately followed by a section ( 14 ) of decreasing phase difference (PD).

5 . A method according to claim 1 , wherein a period of time is recorded in which the phase difference (PD) exceeds the phase threshold.

6 . A method according to claim 1 , wherein the severity of the disorder is determined on the basis of a value of the phase difference (PD).

7 . A method according to claim 1 , wherein a position of the patient's ( 2 ) body is recorded.

8 . A method according to claim 1 , wherein amplitudes of the thoracic measuring signal (MT) and of the abdominal measuring signal (MA) are checked to determine whether they fall below an amplitude threshold.

9 . A method according to claim 1 , wherein a respiratory flow of the patient ( 2 ) is recorded that is taken into account when assessing the disorder.

10 . A method according to claim 1 , wherein a counter measure is taken when a disorder is recognized in the respiratory tract.

11 . A method according to claim 10 , wherein the counter measure that is taken is an increase of a ventilation pressure.

12 . An apparatus for monitoring a patient ( 2 ), comprising

a) a thoracic expansion sensor ( 4 ) to be placed near the rib cage and an abdominal expansion sensor ( 5 ) to be placed near the abdomen, each of which being used to detect a respiratory movement of the patient ( 2 ), and

b) an evaluation and control unit ( 3 ) to which the thoracic expansion sensor ( 4 ) and the abdominal expansion sensor ( 5 ) are connected, wherein

c) the evaluation and control unit ( 3 ) is designed such as to

c1) determine a phase difference (PD) between a thoracic measuring signal (MT) delivered by the thoracic expansion sensor ( 4 ) and an abdominal measuring signal (MA) delivered by the abdominal measuring sensor ( 5 );

c2) check the determined phase difference (PD) to determine whether it fulfills at least one of the following conditions:

the phase difference (PD) exceeds at least a phase threshold;

the phase difference (PD) increases over time; and

c3) recognize the presence of a disorder in the respiratory tract of the monitored patient ( 2 ) on the basis of a phase difference (PD) that fulfills at least one of the following conditions:

the phase difference (PD) exceeds the phase threshold;

the phase difference (PD) increases.

13 . An apparatus according to claim 12 , wherein the evaluation and control unit ( 3 ) is designed such as to continuously monitor the phase difference (PD).

14 . An apparatus according to claim 13 , wherein the evaluation and control unit ( 3 ) is designed such as to monitor the phase difference (PD) to determine a variation over time thereof.

15 . An apparatus according to claim 14 , wherein the evaluation and control unit ( 3 ) is designed such as to monitor the phase difference to determine an increase over time thereof.

16 . An apparatus according to claim 12 , wherein the evaluation and control device ( 3 ) is designed such as to continuously monitor the phase difference (PD) to determine whether a time curve of the phase difference (PD) shows a section ( 13 ) of increasing phase difference (PD) that is immediately followed by a section ( 14 ) of decreasing phase difference (PD).

17 . An apparatus according to claim 12 , wherein the evaluation and control unit ( 3 ) is designed such as to record a period of time in which the phase difference (PD) exceeds the phase threshold.

18 . An apparatus according to claim 12 , wherein the evaluation and control unit ( 3 ) is designed such as to determine the severity of the disorder on the basis of a value of the phase difference (PD).

19 . An apparatus according to claim 12 , wherein a position sensor ( 7 ) is provided for recording a position of the patient's ( 2 ) body, the position sensor ( 7 ) being connected to the evaluation and control unit ( 3 ).

20 . An apparatus according to claim 12 , wherein the evaluation and control unit ( 3 ) is designed such as to monitor amplitudes of the thoracic measuring signal (MT) and of the abdominal measuring signal (MA) to determine whether they fall below an amplitude threshold.

21 . An apparatus according to claim 12 , wherein a flow sensor ( 6 ) is provided to detect the respiratory flow, the flow sensor ( 6 ) being connected to the evaluation and control unit ( 3 ), and wherein the evaluation and control unit ( 3 ) is designed such as to take into account the recorded respiratory flow when assessing the disorder.

22 . An apparatus according to claim 12 , wherein the evaluation and control unit ( 3 ) is designed such as to take a counter measure when a disorder is recognized.

23 . An apparatus according to claim 22 , wherein the counter measure taken by the evaluation and control unit ( 3 ) is an increase of a ventilation pressure.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2010
From: SOMNOMEDICS GMBH
To: KUCHLER, GERT
Reel/Frame 024103/0994 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2008
From: KUCHLER, GERT
To: SOMNOMEDICS GMBH
Reel/Frame 021306/0816 →