Rasyid Rasyid
Politeknik Kesehatan Kemenkes Semarang

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Analisis Time Repetition (TR) dan Flip Angle (FA) terhadap Informasi Anatomi pada Pemeriksaan 3D TOF MRA Brain dengan MRI 1.5 Tesla Rasyid Rasyid; Emi Murniati; Muhamad Marno Alamsyah
Jurnal Imejing Diagnostik (JImeD) Vol 3, No 1: January 2017
Publisher : Poltekkes Kemenkes Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31983/jimed.v3i1.3184

Abstract

Background: In brain MR angiography examination, there are many clinical situations where the radiologist want to optimal suppression of stasionary nuclei. So stationary nuclei and flowing nuclei will produce a good contrast. One of the most commonly used method brain MR angiography o is a 3D TOF because it can show  the blood vessels by hyperintens with more hypointens of background. Parameters TR and flip angle is one of the parameters that will determine a stationary nuclei experiencing well suppression and the flowing nuclei will still generate a signal that more hyperintens. The purpose of this study is  to determine the influence of time repetition and flip angle of the anatomical information of 3D TOF brain  MRA examination, and also to determine value the time repetition and flip angle best to display anatomical information of 3D TOF brain MRA examination.Methods: This research is an experimental approach to the pre-experimental research design and post-test only research design. This research was conducted in Bintaro Premier Hospital. The data in the form of 54 3D TOF brain MRA images of 6 volunteers with nine variations time  repetitions and flip angle. Assessment  anatomical information performed by the two respondents. The data analysis  by  testing the influence is multiple linear regression to determine the value of time repetition and flip angle optimal use Friedman mean rank test.Result: The result showed that there is the influence of time repetition and flip angle of the anatomical information on 3D TOF brain MRA examination with a significance value  p 0.001 (p 0.05). The time repetition 30 ms and flip angle 30o is and optimal value for anatomical information showing 3D TOF brain MRA examination. Application of time repetition 30 ms and flip angle 30o can be properly saturate or suppression the stationary nuclei so that is displays excellent contrast between the nuclei. Conclution: There are influence of  time repetition and flip angle to   anatomical information  of  3D TOF  brain MRA examination with a significance value of  p 0.001 (p 0.05). The time repetition 30 ms and a flip angle of 30o is an optimal value for anatomical information showing 3D TOF brain MRA examination. 
Development of an Orthanc Pacs-Based Radiology Information System (RIS) at The Ilyas Tarakan Type D Navy Hospital Nofa Rosalina; Bambang Satoto; Rasyid Rasyid; Alfisna Fajru Rohmah
Jurnal Health Sains Vol. 7 No. 8 (2026): Journal Health Sains
Publisher : Syntax Corporation Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46799/jhs.v7i8.2872

Abstract

Digital transformation in radiology management is urgently needed to improve accuracy, efficiency, and compliance with medical data retention standards. However, many type C and D hospitals in Indonesia still rely on paper- and film-based workflows because commercial Picture Archiving and Communication System (PACS) solutions are costly. This research aimed to design, develop, and evaluate an integrated Radiology Information System (RIS) based on the open-source Orthanc PACS at Ilyas Tarakan Naval Hospital, a type D hospital, to address radiology data fragmentation, limited Digital Imaging and Communications in Medicine (DICOM) storage on modality consoles, and paper-based reporting workflows. A Research and Development (R&D) approach was employed using the Rapid Application Development (RAD) model, consisting of a preliminary study, system development, expert validation through black-box testing, and limited pilot testing using a pre-test/post-test design involving ten respondents. The RIS was developed using Laravel and Bootstrap and integrated with Orthanc PACS through a Modality Worklist (MWL) mechanism. System performance was analyzed using normality, homogeneity, and Mann–Whitney statistical tests. Expert validation showed 100% validity across functionality, performance, user interface, security, compatibility, error handling, and usability aspects, while the integration aspect could not be evaluated due to hospital policy constraints. Pilot testing demonstrated a significant improvement in usability across all seven measured dimensions, with a Mann–Whitney test result of p = 0.000 (p < 0.05). The Orthanc-based RIS-PACS provided an effective and low-cost model for digitizing radiology services in budget-constrained type D hospitals and is recommended for gradual integration with the hospital information system.