Anak Agung Aris Diartama
Akademi Teknik Radiodiagnostik Dan Radioterapi Bali

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THE DESIGN OF RADIOLOGY VIEWING BOX USING POTENTIOMETER SYSTEM Diartama, Anak Agung Aris; Suswaty, Susy; Priantoro, Win; Sudiyono, Sudiyono; Sugiyanto, Sugiyanto; Anwar, Muhammad Choiroel; Latifah, Leny; Santjaka, Aris; Amri, Faisal; Mulyantoro, Donny Kristanto
Proceedings of the International Conference on Applied Science and Health No 1 (2017)
Publisher : Proceedings of the International Conference on Applied Science and Health

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Abstract

Background: In the process of work to gain the maximum results, a radiologist needs a viewing box tool to read radiographs. Aims: to create a viewing box tool by using a potentiometer system. Methods: This study used applied research method by creating and using the design of viewing box tool by using a potentiometer system and testing the viewing box tool created by using a Lux meter and 15 respondents consisting of five radiologists and 10 radiographers who should fulfill the questionnaire form. Results: The mean of viewing box illumination reached 220 lux. The results of the questionnaire showed that 100% radiologist gave an A (excellent) and expressed that the viewing box tool created could be used properly and 90% radiographers provided an A (excellent) and expressed that the viewing box tool created could be used properly, while 10% radiographer gave a value of B (moderate). Conclusion: viewing box tool created could be used properly and obtained optimal results as a tool in reading radiographs. Potentiometer system contained in the viewing box was very helpful in reading radiographs because it allowed to adjust the light intensity according to user needs. 
The design of radiology viewing box using light emitting diode and potentiometer Diartama, Anak Agung Aris; Suswaty, Susy; Priantoro, Win; Sugiyanto, Sugiyanto; Sudiyono, Sudiyono; Anwar, M. Choiroel; Latifah, Leny; Santjaka, Aris; Amri, Faisal; Mulyantoro, Donny Kristanto
Global Health Management Journal Vol 1, No 1 (2017)
Publisher : Yayasan Aliansi Cendekiawan Indonesia Thailand (Indonesian Scholars' Alliance)

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Abstract

Background: In the process of work to gain the maximum results, a radiologist needs a viewing box tool to read radiographs. Therefore, the authors want to develop a viewing box tool, which in general the work if this tool resembles the factory manufactured tool. The viewing tool box made can adjust the intensity of the light produced.Objective: to create a viewing box tool by using a potentiometer system.Methods: This study used applied research method by creating and using the design of viewing box tool by using a potentiometer system and testing the viewing box tool created by using a Lux meter and 15 respondents consisting of five radiologists and 10 radiographers who should fulfill the questionnaire form.Results: The mean of viewing box illumination reached 220 lux. The results of the questionnaire showed that 100% radiologist gave an A (excellent) and expressed that the viewing box tool created could be used properly and 90% radiographers provided an A (excellent) and expressed that the viewing box tool created could be used properly, while 10% radiographer gave a value of B (moderate).Conclusion: viewing box tool created could be used properly and obtained optimal results as a tool in reading radiographs. Potentiometer system contained in the viewing box was very helpful in reading radiographs because it allowed to adjust the light intensity according to user needs.Keywords       :  Viewing box, Potentiometer Bibliography   : 1980-2011
THE DESIGN OF RADIOLOGY VIEWING BOX USING POTENTIOMETER SYSTEM Anak Agung Aris Diartama; Susy Suswaty; Win Priantoro; Sudiyono Sudiyono; Sugiyanto Sugiyanto; Muhammad Choiroel Anwar; Leny Latifah; Aris Santjaka; Faisal Amri; Donny Kristanto Mulyantoro
Proceedings of the International Conference on Applied Science and Health No. 1 (2017)
Publisher : Yayasan Aliansi Cendekiawan Indonesia Thailand (Indonesian Scholars' Alliance)

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Background: In the process of work to gain the maximum results, a radiologist needs a viewing box tool to read radiographs. Aims: to create a viewing box tool by using a potentiometer system. Methods: This study used applied research method by creating and using the design of viewing box tool by using a potentiometer system and testing the viewing box tool created by using a Lux meter and 15 respondents consisting of five radiologists and 10 radiographers who should fulfill the questionnaire form. Results: The mean of viewing box illumination reached 220 lux. The results of the questionnaire showed that 100% radiologist gave an A (excellent) and expressed that the viewing box tool created could be used properly and 90% radiographers provided an A (excellent) and expressed that the viewing box tool created could be used properly, while 10% radiographer gave a value of B (moderate). Conclusion: viewing box tool created could be used properly and obtained optimal results as a tool in reading radiographs. Potentiometer system contained in the viewing box was very helpful in reading radiographs because it allowed to adjust the light intensity according to user needs. 
THE DESIGN OF RADIOLOGY VIEWING BOX USING POTENTIOMETER SYSTEM Anak Agung Aris Diartama; Susy Suswaty; Win Priantoro; Sudiyono Sudiyono; Sugiyanto Sugiyanto; Muhammad Choiroel Anwar; Leny Latifah; Aris Santjaka; Faisal Amri; Donny Kristanto Mulyantoro
Proceedings of the International Conference on Applied Science and Health No. 1 (2017)
Publisher : Yayasan Aliansi Cendekiawan Indonesia Thailand (Indonesian Scholars' Alliance)

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Background: In the process of work to gain the maximum results, a radiologist needs a viewing box tool to read radiographs. Aims: to create a viewing box tool by using a potentiometer system. Methods: This study used applied research method by creating and using the design of viewing ox tool by using a potentiometer system and testing the viewing box tool created by using a Lux meter and 15 respondents consisting of five radiologists and 10 radiographers who should fulfill the questionnaire form. Results: The mean of viewing box illumination reached 220 lux. The results of the questionnaire showed that 100% radiologist gave an A (excellent) and expressed that the viewing box tool created could be used properly and 90% radiographers provided an A (excellent) and expressed that the viewing box tool created could be used properly, while 10% radiographer gave a value ofB (moderate). Conclusion: viewing box tool created could be used properly and obtained optimal results as a tool in reading radiographs. Potentiometer system contained in the viewing box was very helpful in reading radiographs because it allowed to adjust the light intensity according to user needs.
Teknik Pemeriksaan CT Scan Abdomen Pada Kasus Tumor Intra Abdomen Di Instalasi Radiologi Rumah Sakit X Dewi Rahmawati; Anak Agung Aris Diartama; Rahmat Widodo
Jurnal Ilmu Kesehatan dan Gizi Vol. 2 No. 1 (2024): Januari : Jurnal Imu Kesehatan dan Gizi
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jikg.v2i1.2093

Abstract

CT-Scan (Computed Tomography Scanner) is a diagnostic support tool that has universal application for examining all body organs, such as the central nervous system, muscles and bones, throat and abdominal cavity. CT-Scan (Computed Tomography Scanner) was first used in early 1970s for medical diagnosis. This diagnostic technique is carried out by passing a collimated X-ray beam (±2 mm wide) over the patient's body and the radiation beam is captured by a detector system. The X-ray source and detector move in a plane around the patient's body.
Analisis Pengaruh Variasi Rekonstruksi Slice Thickness Dan Rekonstruksi Increment Terhadap Informasi Citra Anatomi Pemeriksaan MSCT Scan Sinus Paranasal Potongan Coronal Pada Kasus Rhinosinusitis Kronis Di RSUP Prof. Dr. I.G.N.G Ngoerah Gabrila Febyolla Pajeko; Anak Agung Aris Diartama; I Made Purwa Darmita
Journal of Educational Innovation and Public Health Vol. 1 No. 4 (2023): Oktober : Journal of Educational Innovation and Public Health
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/innovation.v1i4.1996

Abstract

Background: One of the modalities used to diagnose chronic rhinosinusitis is MSCT Scan. In MSCT Scan, there are several scanning parameters used, namely slice thickness and reconstruction increment. This study aims to determine the effect of variations in slice thickness reconstruction and increment reconstruction on the anatomical image information of MSCT scans of coronal paranasal sinuses in cases of chronic rhinosinusitis. Method: This type of research is quantitative research with an experimental approach carried out at the radiology installation of Prof. RSUP. Dr. I.G.N.G Ngoerah in June-July 2023. This study used 10 samples and each radiograph was reconstructed with 6 variations of slice thickness reconstruction and increment reconstruction. Results: Based on the results of the overall anatomical Friedman test, a p value of 0.000 was obtained (p value <0.05), which can be interpreted as Ho being rejected and Ha being accepted so that there is a difference in overall anatomical image information on the MSCT scan of the coronal paranasal sinuses with 6 variations of slice thickness and reconstruction. increment reconstruction in cases of chronic rhinosinusitis. Based on the Wilcoxon test, it also shows that each variation has a p value <0.05, which means there are differences in anatomical image information for each variation. Conclusion: Based on this research, it shows that there are differences in the anatomical image information of MSCT scans of paranasal sinus coronal sections with variations in slice thickness reconstruction and increment reconstruction in cases of chronic rhinosinusitis, and variation 2 produces the most optimal anatomical image information. Based on the Wilcoxon test, it also shows that each variation has different anatomical image information.
Analisis Multi Slice Computed Tomography (MSCT) Nasofaring Dengan Klinis Karsinoma Nasofaring Di Instalasi Radiodiagnostik RSUP Dr. Hasan Sadikin Bandung Destri Bestari Palimbong; Anak Agung Aris Diartama; I Kadek Sukadana
Jurnal Pengabdian Ilmu Kesehatan Vol. 3 No. 3 (2023): November: Jurnal Pengabdian Ilmu Kesehatan
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jpikes.v3i3.2672

Abstract

Background: Nasopharyngeal carcinoma is cancer that occurs in the nasopharyngeal mucosa which shows squamous cell differentiation. MSCT has become a reliable imaging technique for assessing the extent of nasopharyngeal carcinoma. Nasopharyngeal MSCT examination procedure with clinical nasopharyngeal carcinoma at the Radiodiagnostic Installation of Dr. RSUP. Hasan Sadikin Bandung uses a head protocol and slice thickness of 3-5 mm. This study aims to determine the Nasopharyngeal MSCT examination procedure for clinical nasopharyngeal carcinoma using a head protocol with manual intravenous contrast injection. Method: The type of research used is descriptive qualitative research with a case study approach. This research was conducted at the Radiodiagnostic Installation of RSUP Dr. Hasan Sadikin Bandung The subjects in this study consisted of three patients, two radiographers and three radiologists. Data collection methods are carried out through observation, interviews and documentation. The data analysis technique used is an interactive analysis model.
Evaluasi Nilai CTDIvol Dan DLP Pada Pemeriksaan MSCT Abdomen Kontras Selama Periode Januari-Maret 2023 Di RSUP Dr Hasan Sadikin Bandung : Dengan Pendekatan ALADAIP Anjelina Merry; Anak Agung Aris Diartama; I Kadek Sukadana
Jurnal Rumpun Ilmu Kesehatan Vol. 3 No. 3 (2023): November: Jurnal Rumpun Ilmu Kesehatan
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jrik.v3i3.2684

Abstract

Background: Abdominal MSCT examination is a type of radiodiagnostic examination that uses the MSCT device. Considering that the abdomen is close to organs that have radiosensitive properties such as the gonads and ovaries, it is necessary to monitor the radiation dose received so that it does not exceed the predetermined I-DRL value. The prevalence of contrast Abdominal MSCT examinations in the Radiodiagnostic Installation at Dr Hasan Sadikin Bandung Hospital was recorded during the last 3 months, there were 327 Contrast Abdominal MSCT examinations out of a total of 880 examinations with a percentage of contrast Abdominal MSCT examinations of 0.37%. This proves that contrast Abdominal MSCT examinations are often carried out but evaluation has never been carried out regarding the radiation dose received by the patient. Method: The type of research used in this research is descriptive quantitative with an observational approach by collecting data from patients with contrast Abdominal MSCT examinations during the period January-March 2023 with a sample of 128 patients. The local DRL value is calculated using the 2nd quart formula in the SPSS statistical application, then this local DRL value is compared with the I-DRL value determined by BAPETEN. Results: Calculation of the 50th percentile value of CTDIvol and DLP on 128 samples. The results show a CTDIvol value of 15.91 mGy and DLP of 740 mGy*cm. The DRL (50 percentile) values ​​based on gender are 13.71 mGy and 743 mGy*cm for men, and 17.74 mGy and 792 mGy*cm for women. Based on abdominal thickness, patients with a thickness of 10-19 cm have values ​​of 12.19 mGy and 587 mGy*cm, while patients with a thickness of 20-30 cm have values ​​of 22.57 mGy and 965 mGy*cm. For the most clinical cases (Ca Recti) the values ​​were 11.27 mGy and 586 mGy*cm. Conclusion: The 2nd quartile value (50 percentile) of CTDIvol and DLP received by patients during the Contrast Abdominal MSCT examination at the Radiodiagnostic Installation of RSUP Dr. Hasan Sadikin Bandung is in accordance with the standard values ​​set by BAPETEN/I-DRL 2021. However, special attention is needed for patients with an abdominal thickness of 20-30 cm, where the CTDIvol value exceeds the standards set by BAPETEN/I-DRL 2021.
Analisis Nilai CTDIvol Dan DLP Pada Pemeriksaan CT Scan Brain Non Kontras Dewasa Untuk Periode Januari – Desember 2022 Di Instalasi Radiologi Rumah Sakit X Jakarta Pusat Pricilia Shalry Horuoby; Anak Agung Aris Diartama; I Kadek Sukadana
Jurnal Rumpun Ilmu Kesehatan Vol. 3 No. 3 (2023): November: Jurnal Rumpun Ilmu Kesehatan
Publisher : Pusat Riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jrik.v3i3.2687

Abstract

Background: CT scans are used for various types of examinations such as examinations of the head, thorax, abdomen and so on. The most frequently performed CT scan is a CT scan of the head. However, in the medical field, especially radiology, CT scans have the highest dose compared to other radiation equipment. Efforts to reduce radiation doses and radiation effects are by estimating the correct dose given to CT Scan patients using an optimization index called DRL (Diagnostic Level Reference), namely by evaluating the values ​​of CTDIvol and DLP on CT scans of the head, which have been determined in accordance with BAPETEN/I-DRL 2021 standards. Method: This research is a descriptive quantitative study with an observational approach which aims to analyze CTDIvol and DLP values ​​based on retrospective data on non-contrast brain CT scans at the Radiology Installation at Hospital X, Central Jakarta. Results: Calculation of the 2nd quartile (50th percentile) value of CTDIvol and DLP in Adult Non-Contrast Brain CT Scan examinations for the January-December 2022 Period at the Radiology Installation at X Hospital, Central Jakarta is CTDIvol 55.51 mGy and DLP 867.00 mGy* cm. Conclusion: The 50 percentile value of CTDIvol and DLP in the Adult Non-Contrast Brain CT Scan examination for the January-December 2022 period at the Radiology Installation at X Hospital, Central Jakarta is in accordance with the standards set by BAPETEN/I-DRL 2021. Where is the value for CT Non-Contrast Head Scan, namely a CTDIvol value of 60 mGy and a DLP value of 1275 mGy*cm.
Prosedur Penggunaan Alat Fiksasi Masker Termoplastik Pada Terapi Radiasi Kasus Kanker Payudara Di Instalasi Radioterapi RSUP Dr. Hasan Sadikin Bandung Sanita Sihotang; Anak Agung Aris Diartama; Retno Laksmi Faraningrum
JURNAL RISET RUMPUN ILMU KEDOKTERAN Vol. 2 No. 2 (2023): Oktober :Jurnal Riset Rumpun Ilmu Kedokteran
Publisher : Pusat riset dan Inovasi Nasional

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55606/jurrike.v2i2.1971

Abstract

Breast cancer is a type of cancer that often occurs in women, in the treatment of breast cancer is radiotherapy and fixation tools used, namely breast boards and thermoplastic masks which are aids for patients not to move during radiation therapy. The purpose of the study was to determine the procedure and reasons for using thermoplastic mask fixation devices in radiation therapy cases of breast cancer. This research is qualitative with a case study approach, the research time is from June 7 to July 15, 2023 and the research location at the Radiotherapy Installation of Dr. Hasan Sadikin Hospital Bandung. The subjects of the study were Radiation Oncology Doctors, Medical Physicists, Radiotherapists and Patients. By collecting data, making interview transcripts and reducing data and processed with open coding, given in the form of quotations and then drawing conclusions.The results showed that the procedure for using a thermoplastic mask fixation device was inserted into a waterbath with a temperature of 65.50C until the thermoplastic mask became flexible, the reason for using fixation was a shift in smaller objects at the time of irradiation, and better aesthetic value, because concentration marks and field boundaries did not need to be drawn directly on the patient's body but were drawn on the thermoplastic mask. Using a mask does not need to be marked on the patient's chest so that by using a thermoplastic mask the shift towards the target object is smaller during irradiation.