The control of temperature during photothermal therapy is key to preventing unwanted damage in surrounding tissue or post-treatment inflammatory responses. Lack of accurate thermal control is indeed one of the main limitations that hyperthermia techniques present to allow their translation into therapeutic applications. We developed a nanoprobe that allows controlled local heating, combined with in situ nanothermometry. The design of the probe follows a practical rationale that aims at simplifying experimental requirements and exploits exclusively optical wavelengths matching the first and second biological windows in the near-infrared
The development of new effective cancer treatment methods has attracted much attention, mainly due t...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
The design and development of non-contact luminescence nanothermometers is important for many applic...
Temperature monitoring is useful in medical diagnosis, and essential during hyperthermia treatments ...
Measuring temperature in biological environments is an ambitious goal toward supporting medical trea...
The emergence of luminescence nanothermometry in bio and nanomedicine has enabled achievements outsi...
The emergence of luminescence nanothermometry in bio and nanomedicine has enabled achievements outsi...
Measuring temperature in biological environments is an ambitious goal toward supporting medical trea...
Light interaction of nanoparticles embedded in a tissue decides the amount of thermal energy absorbe...
Photothermal hyperthermia is proven to be an effective diagnostic tool for cancer therapy. The effic...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
The development of new effective cancer treatment methods has attracted much attention, mainly due t...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
The design and development of non-contact luminescence nanothermometers is important for many applic...
Temperature monitoring is useful in medical diagnosis, and essential during hyperthermia treatments ...
Measuring temperature in biological environments is an ambitious goal toward supporting medical trea...
The emergence of luminescence nanothermometry in bio and nanomedicine has enabled achievements outsi...
The emergence of luminescence nanothermometry in bio and nanomedicine has enabled achievements outsi...
Measuring temperature in biological environments is an ambitious goal toward supporting medical trea...
Light interaction of nanoparticles embedded in a tissue decides the amount of thermal energy absorbe...
Photothermal hyperthermia is proven to be an effective diagnostic tool for cancer therapy. The effic...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
This article demonstrates how controlled hyperthermia at the cellular level can be achieved.The meth...
The development of new effective cancer treatment methods has attracted much attention, mainly due t...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
The design and development of non-contact luminescence nanothermometers is important for many applic...