Influence of Pixel Size Difference on Imaging Plate Computed Radiography on the Quality of Digital Images in Intraoral Dental Radiography Examination
DOI:
https://doi.org/10.58344/jws.v2i11.472Keywords:
Imaging Plate, Pixel, PIQE Score, Mean Square Error, Peak Signal to Noise RatioAbstract
This research aims to determine the assessment of digital image quality from 18 x 24 cm Imaging Plates of the ST (Standard) and HR (High-Resolution) types by engineering the dimensions on intraoral dental radiographic examinations so that we can determine the differences in image quality for each type of imaging. Plate Computed Radiography. The research method took the form of an experiment using the subjective quality assessment method of digital images in intraoral dental radiographic examinations using the object of patients who carried out the examination and brought a referral letter for 60 patients. Analyze image quality by measuring MSE (Mean et al.), PSNR (Peak Signal to Noise) and PIQE (Perception-based Image Quality Evaluator) score. The results of the research show that the analysis of differences in IP FCR ST and HR types with the Mann-Whitney Test shows the significance values of all digital images (< 0.05), namely: MSE (0.041), PSNR (0.041), PIQE score (0.012), meaning that there is a difference in digital image quality between IP FCR ST and HR, while with subjective analysis the respondents gave IP FCR HR results of 57.14% and IP FCR ST 42.86%. The difference in the results of the two types shows that IP FCR HR can be used as the main alternative in selecting IP FCR in intraoral dental radiographic examinations).
References
Alshqaqeeq, F., McGuire, C., Overcash, M., Ali, K., & Twomey, J. (2020). Choosing radiology imaging modalities to meet patient needs with lower environmental impact. Resources, Conservation and Recycling, 155, 104657.
Amtha, R., Gunardi, I., Dewanto, I., Widyarman, A. S., & Theodorea, C. F. (2020). Panduan dokter gigi dalam era new normal. Monograph Press, 1(1).
Gigi, I. I. R. S., & Padang, M. R. B. (2015). Abimanyu, Adi, dkk. 2013. Modifikasi Surveymeter Dengan Penambahan Fasilitas Pesan Singkat (SMS). Batan. Yogyakarta: Seminar Nasional VIII SDM Teknik Nuklir. Akhadi, Mukhlis. 1996. Dasar–Dasar Proteksi Radiasi. Jakarta: Rineka Cipta. Akhadi, M. 2000. Dasar-Dasar Proteksi Radiasi. Jakarta: PT. Rineka Cipta. Buletin Alara, 2(2), 7–12.
Gijbels, F., Debaveye, D., Vanderstappen, M., & Jacobs, R. (2005). Digital radiographic equipment in the Belgian dental office. Radiation Protection Dosimetry, 117(1–3), 309–312.
Kamburo?lu, K., Samunahmeto?lu, E., Eratam, N., Sönmez, G., & Karahan, S. (2022). Clinical comparison of intraoral CMOS and PSP detectors in terms of time efficiency, patient comfort, and subjective image quality. Imaging Science in Dentistry, 52(1), 93.
Kashima, I., Sakurai, T., Matsuki, T., Nakamura, K., Aoki, H., & Ishii, M. (1994). Intraoral computed radiography using the Fuji computed radiography imaging plate: Correlation between image quality and reading condition. Oral Surgery, Oral Medicine, Oral Pathology, 78(2), 239–246.
Kuramoto, T., Takarabe, S., Okamura, K., Shiotsuki, K., Shibayama, Y., Tsuru, H., Akamine, H., Tatsumi, M., Kato, T., & Morishita, J. (2020). Effect of differences in pixel size on image characteristics of digital intraoral radiographic systems: a physical and visual evaluation. Dentomaxillofacial Radiology, 49(6), 20190378.
Ma, L. (2019). Research on distance education image correction based on digital image processing technology. EURASIP Journal on Image and Video Processing, 2019(1), 1–9.
Mun, S. K., Wong, K. H., Lo, S.-C. B., Li, Y., & Bayarsaikhan, S. (2021). Artificial intelligence for the future radiology diagnostic service. Frontiers in Molecular Biosciences, 7, 614258.
Ningtias, D. R., Suryono, S., & Susilo, S. (2016). Pengukuran Kualitas Citra Digital Computed Radiography Menggunakan Program Pengolah Citra. Jurnal Pendidikan Fisika Indonesia, 12(2), 161–168.
Nuraisya, O. (2023). BAB 3 PELAYANAN ASUHAN KESEHATAN GIGI DAN MULUT TAHAP EVALUASI DAN DOKUMENTASI. Pelayanan Asuhan Kesehatan Gigi Dan Mulut Individu, 29.
Setyawan, H. T., & Suryono, S. (2014). Uji Resolusi Spasial Pada Perangkat Lunak Computed Radiography Menggunakan Pengolahan Citra Digital. Youngster Physics Journal, 3(4), 311–316.
Sudin, A., Widyandari, H., & Muhlisin, Z. (2015). Studi pengaruh ukuran pixel imaging plate terhadap kualitas citra radiograf. Youngster Physics Journal, 4(3), 225–230.
Watanabe, K., Imanishi, Y., Kato, M., Kimoto, H., Sekiguchi, T., Amemiya, T., Dezawa, K., Matsumoto, K., Arai, Y., & Honda, K. (2022). Preliminary evaluation of dual imaging plate intraoral radiography. Journal of Oral Science, 64(1), 69–73.
Yudha, S., Kes, M. T., Dewilza, N., Rad, A. M., & Kes, M. T. (2023). Radiografi Digital. Deepublish.
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 Journal of World Science

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution-ShareAlike 4.0 International. that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work.
















