International audienceIn this study the design and characterization of a new technology of ultrathin AlN piezoelectric sensors able to measure micro-deformations is reported. The sensors are fabricated using a CMOS compatible clean room process in which the sensitive part is embedded into a thin bio-compatible and conformal layer of parylene (total thickness below 10 µm). That makes the sensors very flexible and sensitive to micro-deformation measurements. In this study, this technology is applied to monitor heart activity: heart rate, blood pulse wave, pulse wave velocity. Blood pulse wave could be measured with a very good accuracy; this technology could thus be used for the prediction of cardiovascular diseases by analyzing the pulse wav...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Abstract Background Piezo-resistive pressure sensors are widely used for measuring pulse waves of th...
The ability to measure subtle changes in arterial pressure using devices mounted on the skin can be ...
International audienceIn this study the design and characterization of a new technology of ultrathin...
AbstractIn this study the design and characterization of a new technology of ultrathin AlN piezoelec...
Wearable sensor devices with minimal discomfort to the wearer have been widely developed to realize ...
International audienceThis paper presents a low cost flexible sensor that has been characterized by ...
The monitoring of vital signs is used to determine human health status. Healthcare monitoring device...
Previous studies have found that the non-invasive blood pressure measurement method based on the osc...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
A flexible, patch-type strain sensor is described for continuous monitoring of pulse waves. The prop...
Self-powered, highly unobtrusive, low-cost and accurate arterial pulse wave monitoring devices need ...
The work presented in this paper concerns the design, fabrication and test of a simple portable devi...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Pulse wave monitoring is critical for the evaluation of human health. In this paper, a wearable mult...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Abstract Background Piezo-resistive pressure sensors are widely used for measuring pulse waves of th...
The ability to measure subtle changes in arterial pressure using devices mounted on the skin can be ...
International audienceIn this study the design and characterization of a new technology of ultrathin...
AbstractIn this study the design and characterization of a new technology of ultrathin AlN piezoelec...
Wearable sensor devices with minimal discomfort to the wearer have been widely developed to realize ...
International audienceThis paper presents a low cost flexible sensor that has been characterized by ...
The monitoring of vital signs is used to determine human health status. Healthcare monitoring device...
Previous studies have found that the non-invasive blood pressure measurement method based on the osc...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
A flexible, patch-type strain sensor is described for continuous monitoring of pulse waves. The prop...
Self-powered, highly unobtrusive, low-cost and accurate arterial pulse wave monitoring devices need ...
The work presented in this paper concerns the design, fabrication and test of a simple portable devi...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Pulse wave monitoring is critical for the evaluation of human health. In this paper, a wearable mult...
Continuous monitoring of an arterial pulse using a pressure sensor attached on the epidermis is an i...
Abstract Background Piezo-resistive pressure sensors are widely used for measuring pulse waves of th...
The ability to measure subtle changes in arterial pressure using devices mounted on the skin can be ...