ABSTRAKDigitally reconstructed radiographs (DRRs) merupakan citra hasil rekonstruksi
data set citra CT simulator yang digunakan untuk verifikasi dalam perencanaan
radioterapi eksternal. Penelitian ini mencoba untuk mengimplementasikan
algoritma ray casting dan hardware texture mapping sehingga dapat
menghasilkan citra DRR. Akuisisi citra CT simulator dilakukan terhadap fantom
modifikasi, fantom Catphan, dan fantom RANDO. Citra CT simulator kemudian
dikomputasi dengan menggunakan algoritma yang digunakan serta algoritma di
dalam treatment planning system (TPS). Evaluasi hasil citra DRR dilakukan
secara kuantitatif dan kualitatif. Evaluasi kuantitatif meliputi evaluasi keakurasian
geometri, evaluasi kontras tinggi, evaluasi kontras rendah, evaluasi uniformitas,
dan evaluasi running time. Evaluasi kualitatif berupa kuesioner yang berisi
pendapat praktisi radioterapi mengenai kualitas citra DRR dalam hal kontras,
resolusi, dan uniformitas. Hasil evaluasi kuantitatif menunjukkan kualitas citra
DRR dari algoritma dalam penelitian ini hampir sama dengan algoritma di dalam
TPS dan hasil tersebut didukung oleh hasil evaluasi kualitatif.
ABSTRACTDigitally reconstructed radiographs (DRRs) are the CT simulator image
reconstruction that used for verification in external radiotherapy planning. This
thesis aims to implementation of ray casting and hardware texture mapping
algorithm to produce DRR images. CT image acquisition is made to modification
phantom, Catphan phantom, and RANDO phantom. These images then computed
become DRR images using ray casting and hardware texture mapping algorithm,
as well as the algorithm used in the treatment planning system (TPS) . Evaluation
of the DRR images conducted quantitatively and qualitatively. Quantitative
evaluation includes evaluation of geometric accuracy, high contrast, low contrast,
grey scale uniformity running time. Qualitative evaluations are questionnaires
which contain the opinion of radiotherapy practitioners regarding DRR image
quality in terms of contrast, resolution, and grey scale uniformity. Quantitative
evaluation shows that there are some similarities of DRR image quality between
algorithm used in this thesis study is similar to the algorithm in the TPS. This also
supported by the results of a qualitative evaluation.