Cardiac rotation is a sensitive indicator of cardiac performance. We present CardioMon, a newly developed implantable catheter equipped with a 3D MEMs gyro to provide the continuous monitoring of cardiac rotation. Preliminary lab tests on CardioMon catheter were performed to assess reliability of angular velocity signals measured by the 3D MEMs gyro included in the catheter
Abstract—Robotic catheters have the potential to revolutionize cardiac surgery by enabling minimally...
Cardiac, respiratory, and patient body motion artifacts degrade the image quality and quantitative ...
We present a novel technique for the wearable monitoring of the mechanical characteristics of the ca...
Cardiac rotation is a sensitive indicator of cardiac performance. We present CardioMon, a newly deve...
Changes in the pattern or amplitude of cardiac rotation have been associated with important cardiova...
Abstract Background Understanding cardiac mechanics is important for developing cardiac therapies. C...
Objectives: The magnitude and timing of Left Ventricular (LV) twist with respect to cardiac phases a...
Aim of this study is to develop a mechanical simulator (MS) reproducing cardiac wall kinematics [i.e...
During the cardiac cycle, contraction of the helically oriented myocardial fibres results in torsion...
To overcome the challenges presented by complex 3-dimensional shapes and tortuous vasculature in the...
An implantable accelerometer has been developed to monitor the cardiac function and the heart wall m...
Acceleration signals, collected from the inner and the outer heart wall, offer a mean of assessing c...
The improved natural hemodynamics offered by mitral valve (MV) repair strategies aims to prevent hea...
A sensor system for the acquisition of acceleration signals from different locations on the heart wa...
AbstractA sensor system for the acquisition of acceleration signals from different locations on the ...
Abstract—Robotic catheters have the potential to revolutionize cardiac surgery by enabling minimally...
Cardiac, respiratory, and patient body motion artifacts degrade the image quality and quantitative ...
We present a novel technique for the wearable monitoring of the mechanical characteristics of the ca...
Cardiac rotation is a sensitive indicator of cardiac performance. We present CardioMon, a newly deve...
Changes in the pattern or amplitude of cardiac rotation have been associated with important cardiova...
Abstract Background Understanding cardiac mechanics is important for developing cardiac therapies. C...
Objectives: The magnitude and timing of Left Ventricular (LV) twist with respect to cardiac phases a...
Aim of this study is to develop a mechanical simulator (MS) reproducing cardiac wall kinematics [i.e...
During the cardiac cycle, contraction of the helically oriented myocardial fibres results in torsion...
To overcome the challenges presented by complex 3-dimensional shapes and tortuous vasculature in the...
An implantable accelerometer has been developed to monitor the cardiac function and the heart wall m...
Acceleration signals, collected from the inner and the outer heart wall, offer a mean of assessing c...
The improved natural hemodynamics offered by mitral valve (MV) repair strategies aims to prevent hea...
A sensor system for the acquisition of acceleration signals from different locations on the heart wa...
AbstractA sensor system for the acquisition of acceleration signals from different locations on the ...
Abstract—Robotic catheters have the potential to revolutionize cardiac surgery by enabling minimally...
Cardiac, respiratory, and patient body motion artifacts degrade the image quality and quantitative ...
We present a novel technique for the wearable monitoring of the mechanical characteristics of the ca...