Renkli manyetik parçacık görüntüleme ile kanser görüntüleme ve tedavi ı̇zleme
2021
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Advisor: Doç. Dr. Emine Ülkü Sarıtaş Çukur
Abstract (EN)
Magnetic particle imaging (MPI) is emerging as a highly promising non-invasive tomo- graphic imaging modality for cancer research. Superparamagnetic iron oxide nanopar- ticles (SPIONs) are used as imaging tracers in MPI. By exploiting the relaxation be- havior of SPIONs, the capabilities of MPI can also be broadened to functional imaging applications that can distinguish different nanoparticles and/or environments. One of the important applications of functional MPI is viscosity mapping, since certain can- cer types are shown to have increased cellular viscosity levels. MPI can potentially detect these cancerous tissues through estimating the viscosity levels of the tissue en- vironment. Another important application area of MPI is temperature mapping, since SPIONs are also utilized in magnetic fluid hyperthermia (MFH) treatments and MPI enables localized application of MFH. To achieve accurate temperature estimations, however, one must also take into account the confounding effects of viscosity and temperature on the MPI signal. This dissertation studies relaxation-based viscosity and temperature mapping with MPI, covering the biologically relevant viscosity range (<5 mPa·s) and the therapeutically applicable temperature range (25-45◦C). The char- acterization of the SPION relaxation response was performed on an in-house arbitrary- waveform magnetic particle spectrometer (MPS) setup, and the imaging experiments were performed on an in-house MPI scanner. Both the MPS setup and the MPI scanner were designed and developed as parts of this thesis. The effects of viscosity and tem- perature on relaxation time constant estimations were investigated, and the sensitivities of MPI to these functional parameters were determined at a wide range of operating points. The relaxation time constants, τ's, were estimated with a technique called TAURUS (TAU, τ, estimation via Recovery of Underlying mirror Symmetry), which is based on a linear relaxation equation. Although the nonlinear relaxation behaviors of the SPIONs are highly dependent on the excitation field parameters, SPION type, and the hardware configuration, the results suggest that one-to-one relation between the estimated τ and the targeted functional parameters (i.e., viscosity or temperature) can iii iv be obtained. According to these results, MPI can successfully map viscosity and tem- perature, with higher than 30%/mPa/s sensitivity for viscosity mapping and approxi- mately 10%/◦C sensitivity for temperature mapping, at 10 kHz drive field frequency. In addition, the results suggest that the simultaneous mapping of viscosity and tem- perature can be achieved by performing multiple measurements at different drive field frequencies and/or amplitudes. Overall, these findings show that hybrid MPI-MFH systems offer a promising approach for real-time monitored and localized thermal ab- lation treatment of cancer. The viscosity and temperature mapping capabilities of MPI via relaxation time constant estimation can provide feedback for high accuracy ther- mal dose adjustment to the cancerous tissues, thereby, increasing the efficacy of the treatment
Author
Dr. Mustafa Ütkür
Institution
How to Cite
Mustafa Ütkür (Doctorate thesis). Renkli manyetik parçacık görüntüleme ile kanser görüntüleme ve tedavi ı̇zleme, 2021, Bilkent University.
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