This study investigates the application of broadband capacitive micromachined ultrasonic transducers (CMUT) to ionoacoustics (i.e., the thermoacoustic emissions induced by the energy deposition of ion beam) over a wide frequency range from hundreds of kHz to a few MHz. A water tank was irradiated by a 20 MeV pulsed proton beam. The frequency and amplitude of the ionoacoustic waves were modulated by adding material before to penetrate into the water tank to change the beam energy and its spatial dimensions. The measurements were performed with a 12 MHz CMUT prototype and compared to ones obtained from a commercial 3.5 MHz piezoeletric transducer as well as to in silico studies employing the k-Wave Matlab toolbox in combination with FLUKA Mon...
One of the leading causes of death in the western world today is heart diseases, and atherosclerotic...
The Capacitive Micromachined Ultrasonic Technology (CMUT) has emerged as a promising alternative to ...
In proton therapy high energy protons are used to irradiate a tumor. Ideally, the delivered proton d...
This study investigates the application of broadband capacitive micromachined ultrasonic transducers...
PURPOSE: Range verification in ion beam therapy relies to date on nuclear imaging techniques which r...
Proton therapy has the potential to deposit its energy in tissue with high conformity to the tumor a...
Abstract The characteristic depth dose deposition of ion beams, with a maximum at the end of their r...
Purpose: The Bragg peak located at the end of the ion beam range is one of the main advantages of io...
Investigations into the characteristics of water-coupled ultrasonic capacitance transducers have bee...
An in vivo range verification technology for proton beam cancer therapy, preferably in real-time and...
Capacitive micromachined ultrasonic tranducers (cMUTs) have recently emerged as an alternative to co...
[EN] Hadrontherapy makes it possible to deliver high doses of energy to cancerous tumors by using th...
Thermoacoustic emissions induced by 2450 MHz microwave pulses in water, tissue-simulating phantoms a...
Capacitive micromachined ultrasonic transducers (CMUT:s) are often used in medical imaging and they ...
Proton beam therapy has shown great promise for cancer treatment due to its high precision in irradi...
One of the leading causes of death in the western world today is heart diseases, and atherosclerotic...
The Capacitive Micromachined Ultrasonic Technology (CMUT) has emerged as a promising alternative to ...
In proton therapy high energy protons are used to irradiate a tumor. Ideally, the delivered proton d...
This study investigates the application of broadband capacitive micromachined ultrasonic transducers...
PURPOSE: Range verification in ion beam therapy relies to date on nuclear imaging techniques which r...
Proton therapy has the potential to deposit its energy in tissue with high conformity to the tumor a...
Abstract The characteristic depth dose deposition of ion beams, with a maximum at the end of their r...
Purpose: The Bragg peak located at the end of the ion beam range is one of the main advantages of io...
Investigations into the characteristics of water-coupled ultrasonic capacitance transducers have bee...
An in vivo range verification technology for proton beam cancer therapy, preferably in real-time and...
Capacitive micromachined ultrasonic tranducers (cMUTs) have recently emerged as an alternative to co...
[EN] Hadrontherapy makes it possible to deliver high doses of energy to cancerous tumors by using th...
Thermoacoustic emissions induced by 2450 MHz microwave pulses in water, tissue-simulating phantoms a...
Capacitive micromachined ultrasonic transducers (CMUT:s) are often used in medical imaging and they ...
Proton beam therapy has shown great promise for cancer treatment due to its high precision in irradi...
One of the leading causes of death in the western world today is heart diseases, and atherosclerotic...
The Capacitive Micromachined Ultrasonic Technology (CMUT) has emerged as a promising alternative to ...
In proton therapy high energy protons are used to irradiate a tumor. Ideally, the delivered proton d...