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Browsing School of Engineering and Digital Sciences by Author "3d091f08-fd9a-498f-8e62-fc3eda8ab48d"
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Ashikbayeva, Zhannat; Aitkulov, Arman; Jelbuldina, Madina; Issatayeva, Aizhan; Beisenova, Aidana; Molardi, Carlo; Saccomandi, Paola; Blanc, Wilfried; Inglezakis, Vassilis J.; Tosi, Daniele
(Nature Research, 2020-07-28)
The high demand in effective and minimally invasive cancer treatments, namely thermal ablation, leads to the demand for real-time multi-dimensional thermometry to evaluate the treatment effectiveness, which can be also ...
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Beisenova, Aidana; Issatayeva, Aizhan; Ashikbayeva, Zhannat; Jelbuldina, Madina; Aitkulov, Arman; Inglezakis, Vassilis; Blanc, Wilfried; Saccomandi, Paola; Molardi, Carlo; Tosi, Daniele
(Sensors, 2021-01-27)
Thermal ablation is achieved by delivering heat directly to tissue through a minimally
invasive applicator. The therapy requires a temperature control between 50–100 ◦C since the mortality of the tumor is directly connected ...
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Beisenova, Aidana; Issatayeva, Aizhan; Ashikbayeva, Zhannat; Jelbuldina, Madina; Aitkulov, Arman; Inglezakis, Vassilis; Blanc, Wilfried; Saccomandi, Paola; Molardi, Carlo; Tosi, Daniele
(Sensors, 2021-01-27)
Thermal ablation is achieved by delivering heat directly to tissue through a minimally invasive applicator. The therapy requires a temperature control between 50–100 °C since the mortality of the tumor is directly connected ...
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Jelbuldina, Madina
(Nazarbayev University School of Engineering and Digital Sciences, 2021-10-05)
High-temperature tumor ablation, or hyperthermia, is a minimally invasive therapy applied to treat benign and malignant tumors in different organs, most commonly for small and mid-size hepatic tumors.
The modern clinical ...
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Beisenova, Aidana; Issatayeva, Aizhan; Sovetov, Sultan; Korganbayev, Sanzhar; Jelbuldina, Madina; Ashikbayeva, Zhannat; Blanc, Wilfried; Schena, Emiliano; Sales, Salvador; Molardi, Carlo; Tosi, Daniele
(OSA Publishing, 2019)
We propose a setup for multiplexed distributed optical fiber sensors capable of resolving temperature distribution in thermo-therapies, with a spatial resolution of 2.5 mm over multiple fibers interrogated simultaneously. ...