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Electromagnetic Heating of Coated Ellipsoidal Gold Nanoparticles in Biological Tissue at Radio Frequencies
KTH, School of Electrical Engineering and Computer Science (EECS).
KTH, School of Electrical Engineering and Computer Science (EECS).
2023 (English)Independent thesis Basic level (degree of Bachelor), 10 credits / 15 HE creditsStudent thesis
Abstract [en]

Radiofrequency heating of gold nanoparticles for use in remote hyperthermia cancer treatment has seenrapidly growing interest in the last decade. While most of the focus has been on studying sphericalnanoparticles, a recent report suggests ellipsoidal particles can significantly increase heat absorption. Inthis manuscript, we therefore study the effects of adding a coating to the nanoparticles. We calculateanalytically the relative absorption ratio of coated ellipsoidal nanoparticles in biological tissue using aneffective medium model, and use this to study the impact on absorption rate for a variety of coatingmaterials. Both the case of a single nanoparticle and the case of a suspension of nanoparticles arestudied. We find that introducing a dielectric coating can increase the absorption rate for particles withlower aspect ratios and lower frequencies, improving the flexibility of particle sizes that can potentiallybe used in treatment.

Abstract [sv]

Under det senaste årtiondet har vi sett ett kraftigt ökat intresse för hypertermibehandling av cancergenom radiofrekvensuppvärmning av guldnanopartiklar som förts in i cancervävnaden. Tidigare harfokus legat på att studera sfäriska nanopartiklar, men en ny rapport visar på att ellipsoida partiklar kanöka värmeabsorptionen markant jämfört med sfäriska partiklar. Med anledning av detta har vi studerateffekten av att förse partiklarna med ett yttre lager. Vi har beräknat den relativa absorptionen av lagradeellipsoida nanopartiklar i biologisk vävnad med hjälp av en analytisk modell baserad på homogeniseringav partikeln. Detta har vi sedan använt för att studera påverkan på den relativa absorptionen för olikamaterialval på det yttre lagret. Både enskilda nanopartiklar såväl som en ansamling av partiklar harstuderats. Resultaten visar att tillförseln av ett dielektriskt lager kan öka absorptionen för vissapartikelgeometrier och för lägre frekvenser än vad som tidigare rapporterats, vilket skulle kunna ökavalfriheten av de partikelstorlekar som potentiellt kan användas vid behandling.

Place, publisher, year, edition, pages
2023. , p. 313-319
Series
TRITA-EECS-EX ; 2023:162
National Category
Electrical Engineering, Electronic Engineering, Information Engineering
Identifiers
URN: urn:nbn:se:kth:diva-341509OAI: oai:DiVA.org:kth-341509DiVA, id: diva2:1822019
Supervisors
Examiners
Projects
Kandidatexjobb i elektroteknik 2023, KTH, StockholmAvailable from: 2023-12-21 Created: 2023-12-21

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CiteExportLink to record
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