We investigate the feasibility of using iron oxide nanoparticles as a contrast agent for radiofrequency (RF) induced thermoacoustic tomography. Aqueous colloids of iron oxide (Fe3O4) nanoparticles have been synthesized and characterized. The synthesis method yielded citrate-stabilized, spherical particles with a diameter of approximately 10 nm. The complex permittivity of the colloids was measured with a coaxial probe and vector network analyzer, and the microwave absorption properties were calculated by using a relationship between the complex permittivity and absorption coefficients. Using our pulsed thermoacoustic imaging system at 3 GHz, the time-resolved thermoacoustic responses of those colloids were measured and compared to that of d...
Thermally modulated photoacoustic imaging (TMPI) is reported here for contrast enhancement when usin...
In cancer hyperthermia, ultrasound is considered as an appropriate source of energy to achieve desir...
After introducing the principles of thermoacoustic tomography and pure microwave imaging, we summari...
We investigate the feasibility of using iron oxide nanoparticles as a contrast agent for radiofreque...
We investigate the use of energy delivery using microwave radiation for both synthesis of nanopartic...
In recent years, nanotechnology has become indispensable in our lives, especially in the medical fie...
Here, we present a comprehensive review on the use of microwave chemistry for the synthesis of iron-...
Modulatable magnetically mediated thermoacoustic imaging with magnetic nanoparticles is reported her...
Magnetic nanoparticle’s different applications in nanomedicine, due to their unique physical propert...
Thermoacoustic emissions induced by 2450 MHz microwave pulses in water, tissue-simulating phantoms a...
Existing imaging modalities like microwave- or radiofrequency (RF) induced thermoacoustic tomography...
In recent years, nanotechnology has become indispensable in our lives, especially in the medical fie...
Microwave-induced thermoacoustic tomography was explored to image biological tissue. Short microwave...
Scanning thermoacoustic tomography was explored in the microwave region of the electromagnetic spect...
Thermoacoustic tomography in the microwave region is explored to image biological tissue. When short...
Thermally modulated photoacoustic imaging (TMPI) is reported here for contrast enhancement when usin...
In cancer hyperthermia, ultrasound is considered as an appropriate source of energy to achieve desir...
After introducing the principles of thermoacoustic tomography and pure microwave imaging, we summari...
We investigate the feasibility of using iron oxide nanoparticles as a contrast agent for radiofreque...
We investigate the use of energy delivery using microwave radiation for both synthesis of nanopartic...
In recent years, nanotechnology has become indispensable in our lives, especially in the medical fie...
Here, we present a comprehensive review on the use of microwave chemistry for the synthesis of iron-...
Modulatable magnetically mediated thermoacoustic imaging with magnetic nanoparticles is reported her...
Magnetic nanoparticle’s different applications in nanomedicine, due to their unique physical propert...
Thermoacoustic emissions induced by 2450 MHz microwave pulses in water, tissue-simulating phantoms a...
Existing imaging modalities like microwave- or radiofrequency (RF) induced thermoacoustic tomography...
In recent years, nanotechnology has become indispensable in our lives, especially in the medical fie...
Microwave-induced thermoacoustic tomography was explored to image biological tissue. Short microwave...
Scanning thermoacoustic tomography was explored in the microwave region of the electromagnetic spect...
Thermoacoustic tomography in the microwave region is explored to image biological tissue. When short...
Thermally modulated photoacoustic imaging (TMPI) is reported here for contrast enhancement when usin...
In cancer hyperthermia, ultrasound is considered as an appropriate source of energy to achieve desir...
After introducing the principles of thermoacoustic tomography and pure microwave imaging, we summari...