In this combined experimental and theoretical research, magnetic nano-particle (mNP) mediated energy transfer due to high intensity-focused ultrasound (HIFU) sonication has been evaluated. HIFU sonications have been performed on phantoms containing three different volume percentages (0%, 0.0047%, and 0.047%) of mNPs embedded in a tissue mimicking material (TMM). A theoretical model has been developed to calculate the temperature rise in the phantoms during HIFU sonication. It is observed from theoretical calculation that the phonon layer at the interface of the mNPs and TMM dominates the attenuation for higher (0.047%) concentration. However, for a lower concentration (0.0047%) of mNPs, intrinsic absorption is the dominating mechanism. Atte...
High intensity focused ultrasound (HIFU) is an early-stage therapeutic technology that allows for no...
AbstractAlthough high intensity focused ultrasound beams (HIFU) have found rapid agreement in clinic...
Light-absorbing nanoparticles can be used to improve the signal-to-noise ratio of the thermoelastic ...
In this combined experimental and theoretical research, magnetic nano-particle (mNP) mediated energy...
<p>Temperature variation with time at focus in tissue phantoms with 0%, 0.0047%, and 0.047% mNPs con...
Ultrasound hyperthermia is a medical treatment used to increase temperature of tissues. It can be us...
Magnetic nanoparticle’s different applications in nanomedicine, due to their unique physical propert...
Collateral damage and long sonication times occurring during high-intensity focused ultrasound (HIFU...
Focused ultrasound therapy, also known as high intensity focused ultrasound (HIFU), is a new energy-...
Hyperthermia treatment is the heating of tumor tissue up to temperatures between 41 ºC and 45 ºC, wh...
Ultrasound hyperthermia is a medical treatment used to increase temperature of tissues. It can be us...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Magnetic Drug Targeting (MDT) is a cancer treatment technique that enables a local chemotherapy. In ...
Ultrasonic hyperthermia is a method of cancer treatment in which tumors are exposed to an elevated c...
In cancer hyperthermia, ultrasound is considered as an appropriate source of energy to achieve desir...
High intensity focused ultrasound (HIFU) is an early-stage therapeutic technology that allows for no...
AbstractAlthough high intensity focused ultrasound beams (HIFU) have found rapid agreement in clinic...
Light-absorbing nanoparticles can be used to improve the signal-to-noise ratio of the thermoelastic ...
In this combined experimental and theoretical research, magnetic nano-particle (mNP) mediated energy...
<p>Temperature variation with time at focus in tissue phantoms with 0%, 0.0047%, and 0.047% mNPs con...
Ultrasound hyperthermia is a medical treatment used to increase temperature of tissues. It can be us...
Magnetic nanoparticle’s different applications in nanomedicine, due to their unique physical propert...
Collateral damage and long sonication times occurring during high-intensity focused ultrasound (HIFU...
Focused ultrasound therapy, also known as high intensity focused ultrasound (HIFU), is a new energy-...
Hyperthermia treatment is the heating of tumor tissue up to temperatures between 41 ºC and 45 ºC, wh...
Ultrasound hyperthermia is a medical treatment used to increase temperature of tissues. It can be us...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Magnetic Drug Targeting (MDT) is a cancer treatment technique that enables a local chemotherapy. In ...
Ultrasonic hyperthermia is a method of cancer treatment in which tumors are exposed to an elevated c...
In cancer hyperthermia, ultrasound is considered as an appropriate source of energy to achieve desir...
High intensity focused ultrasound (HIFU) is an early-stage therapeutic technology that allows for no...
AbstractAlthough high intensity focused ultrasound beams (HIFU) have found rapid agreement in clinic...
Light-absorbing nanoparticles can be used to improve the signal-to-noise ratio of the thermoelastic ...