Abstract:
In order to provide an easy-to-use technique for measuring blood pressure and/or other vital signs of a subject, a sensor for detecting the passing of a pulse wave from a subject's arterial system is suggested, the sensor being adapted to be located at a sensing position on the exterior of the subject's body, characterized in that the sensor comprises a number of electrical coils for generating an inductive coupling to the subject's body in a way that the properties of said inductive coupling change if a pulse wave passes a screened volume underneath the sensing position, and a circuit connected to the number of electrical coils, said circuit being adapted to detect said property changes of the inductive coupling.
Abstract:
The present invention relates to a wound care system for treating a wound (14) of a patient comprising: a bathing unit (16) being designed to limit a volume (18) surrounding the wound (14) and sealing said volume (18) against the outer atmosphere, the bathing unit (16) comprising at least one gas inlet (28) and one gas outlet (30) being in fluid communication with said volume (18), a source (20) for nitric oxide being connectable to said gas inlet (28), a vacuum unit (34) being connectable to said gas outlet (30) for creating a negative pressure inside said volume (18), and a sponge (36) being placeable inside said volume (18).
Abstract:
For obtaining a sequence of mutually comparable measurement results, it is desirable to position a number of electrodes on a patient body (10) at substantially the same position for each measurement. As such measurements may be performed every day, it is desirable for a patient to be able to perform the measurement at home, for example. The present invention provides a method and system (100) for enabling a not medically trained person to position the electrodes at substantially the same position for each measurement. The method comprises capturing an image (126) of the patient (10) and comparing the image (126) with a reference image (128). In the reference image (128), the electrode positions (130) are indicated. The electrode positions (130) of the reference image (128) are superimposed on the image (126) of the patient (10). An indicator system (134) indicates the position (130) of the electrodes such that the patient (10) may position the electrodes correctly.
Abstract:
The invention relates to a monitoring device (105) for remotely monitoring a heartbeat of a subject, the monitoring device comprising a remote sensor (102) for receiving a monitored signal (103) indicative of a movement of the subject's thoracic wall (101) induced by the subject's heartbeat. In an embodiment of the invention, the monitoring device (105) further comprises a triggering device (401) arranged to access the monitored signal (403) to generate a triggering signal (402) representative of a phase of the heartbeat. The invention further relates to an imaging or spectroscopy system (901), for example a magnetic resonance or computed tomography system or a cardiac 3D X-ray angiography system, arranged to acquire data from a subject, the system comprising such a monitoring device (105), wherein the system is further arranged to utilize the triggering signal (402) to synchronize the acquisition of the data to the phase of the subject's heartbeat.
Abstract:
The present application relates to a user- friendly monitoring system with an improved measurement quality that is suitable for home use. A monitoring system for monitoring a physiological activity of a recipient is provided, the system comprising at least one dry electrode (1) having a working surface (5) that is to be brought into a contact with the recipient's skin, wherein the at least one electrode comprises a flexible conductive shell (2) that is to be integrated into a textile or a garment (6) and an electronic circuit (13) embedded in the shell. The invention is preferably used in the field of personal health care for continuous monitoring of electro -physiological parameters outside hospitals at maximum comfort.
Abstract:
The present invention relates to a device and method for measuring a user's heart rate. In order to provide a reliable and inexpensive heart rate measuring technique, a device (1) and a method for measuring a user's heart rate is suggested in which the relative movement between a heart rate sensor (2) and the user is detected to generate a correction signal for removing motion artifacts caused by a user' s movement.
Abstract:
The invention relates to a method for generating nitric oxide, in particular for therapeutic applications, which comprises the steps of: guiding a process gas into a reaction chamber 3, wherein the process gas comprises nitrogen and oxygen, heating the process gas to a temperature which is sufficiently high to enable a reaction of oxygen and nitrogen to form nitric oxide, thereby forming a gas which comprises nitric oxide, and extracting the nitric oxide comprising gas from the reaction chamber 3, wherein oxygen is present in the process gas in the reaction chamber in an amount of
Abstract:
A method comprising the step of using a plurality of doppler radars disposed on the seat belt or integrated into the seat belt for monitoring vital body signs of a person seated in a seat of a motor vehicle is disclosed. The disclosed method unobtrusively monitors vital body signs like heart rate and respiration of the person seated in the motor vehicle. A number of safety applications as well as wellness applications can be enabled. Examples are detection of momentary sleep of the driver, vital sign monitoring in case of an accident as well as relaxation exercise using biofeedback to reduce stress for drivers.