Experimental evidence on testing a non-ultrasonic-based probe for a new approach in transluminal elastography was presented. The proposed modality generated shear waves by inducing oscillatory rotation on the lumen wall. Detection of the propagated waves was achieved at a set of receivers in mechanical contact with the lumen wall. The excitation element of the probe was an electromagnetic rotational actuator whilst the sensing element was comprised by a uniform anglewise arrangement of four piezoelectric receivers. The prototype was tested in two soft-tissue-mimicking phantoms that contained lumenlike conduits and stiffer inclusions. The shear wave speed of the different components of the phantoms was characterized using shear wave elastogr...
Conventional B-mode ultrasound provides information on the anatomical features using acoustic impeda...
International audienceSupersonic shear wave imaging (SSI) is a noninvasive, ultrasound-based techniq...
Publisher Copyright: © 2022 Societatea Romana de Ultrasonografie in Medicina si Biologie. All rights...
Experimental evidence on testing a non-ultrasonic-based probe for a new approach in transluminal ela...
Shear Wave Elastography (SWE) is an ultrasound modality which can measure tissue elasticity quantita...
A torsional piezoelectric ultrasonic transducer design is proposed to measure shear moduli in soft t...
A novel torsional wave sensor designed to characterize mechanical properties of soft tissues is pres...
1. Introduction Shear Wave Elastography (SWE) is a recently developed noninvasive method for elast...
1. Introduction Shear Wave Elastography (SWE) is a recently developed noninvasive method for elastog...
Shear Wave Optical Coherence Elastography (SW-OCE) uses the speed of propagating shear waves to prov...
Ultrasound shear wave elastography (SWE) has emerged as a promising technique that enables the quant...
In the past 2 decades, sonoelastography has been progressively used as a tool to help evaluate soft-...
International audienceThis study presents the first observation of shear wave induced remotely withi...
AbstractOne of the challenges of brain elastography is the generation of the shear waves inside the ...
Supersonic shear wave imaging (SSI) is a noninvasive, ultrasound-based technique to quantify the mec...
Conventional B-mode ultrasound provides information on the anatomical features using acoustic impeda...
International audienceSupersonic shear wave imaging (SSI) is a noninvasive, ultrasound-based techniq...
Publisher Copyright: © 2022 Societatea Romana de Ultrasonografie in Medicina si Biologie. All rights...
Experimental evidence on testing a non-ultrasonic-based probe for a new approach in transluminal ela...
Shear Wave Elastography (SWE) is an ultrasound modality which can measure tissue elasticity quantita...
A torsional piezoelectric ultrasonic transducer design is proposed to measure shear moduli in soft t...
A novel torsional wave sensor designed to characterize mechanical properties of soft tissues is pres...
1. Introduction Shear Wave Elastography (SWE) is a recently developed noninvasive method for elast...
1. Introduction Shear Wave Elastography (SWE) is a recently developed noninvasive method for elastog...
Shear Wave Optical Coherence Elastography (SW-OCE) uses the speed of propagating shear waves to prov...
Ultrasound shear wave elastography (SWE) has emerged as a promising technique that enables the quant...
In the past 2 decades, sonoelastography has been progressively used as a tool to help evaluate soft-...
International audienceThis study presents the first observation of shear wave induced remotely withi...
AbstractOne of the challenges of brain elastography is the generation of the shear waves inside the ...
Supersonic shear wave imaging (SSI) is a noninvasive, ultrasound-based technique to quantify the mec...
Conventional B-mode ultrasound provides information on the anatomical features using acoustic impeda...
International audienceSupersonic shear wave imaging (SSI) is a noninvasive, ultrasound-based techniq...
Publisher Copyright: © 2022 Societatea Romana de Ultrasonografie in Medicina si Biologie. All rights...