Title :
Wearable body sensor network towards continuous cuff-less blood pressure monitoring
Author :
Espina, Javier ; Falck, Thomas ; Muehlsteff, Jens ; Jin, Yilin ; Adan, Miguel A. ; Aubert, Xavier
Author_Institution :
Philips Res. Eur., Eindhoven
Abstract :
We present a wearable IEEE 802.15.4-based Body Sensor Network (BSN) that enables continuous cuff-less blood pressure monitoring, opening up new perspectives for hypertension diagnosis and treatment, cardio-vascular event detection, and stress monitoring. Arterial blood pressure is estimated based on the Pulse Arrival Time (PAT), which is measured using a single lead electrocardiogram (ECG) patch on the chest and a photoplethysmogram (PPG) sensor at the finger or ear. Measurement context information-user posture and activity level-is extracted using a 3-D acceleration sensor. Since precise PAT measurements require the synchronization of the BSN devicespsila clocks, the Flooding Time Synchronization Protocol (FTSP) was implemented. The acquired data are stored and displayed on a PDA or a wristwatch. Our BSN can currently operate for up to eight hours and perform PAT measurements under moderate activity conditions. Future work includes higher motion tolerance, posture-corrected blood pressure estimation and on-sensor data processing and storage.
Keywords :
biomedical equipment; blood pressure measurement; electrocardiography; patient monitoring; plethysmography; sensors; synchronisation; 3D acceleration sensor; BSN device clock synchronization; FTSP; IEEE 802.15.4 based BSN; PPG sensor; arterial blood pressure; body sensor network; cardiovascular event detection; continuous cuff less blood pressure monitoring; data display; data storage; electrocardiogram; flooding time synchronization protocol; hypertension diagnosis; hypertension treatment; measurement context information; photoplethysmogram sensor; pulse arrival time; single lead ECG patch; stress monitoring; user activity level; user posture; wearable BSN; Biomedical monitoring; Blood pressure; Body sensor networks; Cardiology; Event detection; Hypertension; Pulse measurements; Stress; Synchronization; Time measurement;
Conference_Titel :
Medical Devices and Biosensors, 2008. ISSS-MDBS 2008. 5th International Summer School and Symposium on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4244-2252-4
Electronic_ISBN :
978-1-4244-2253-1
DOI :
10.1109/ISSMDBS.2008.4575008