scholarly journals PERANCANGAN SISTEM INTERAKTIF BERBASIS WEB DALAM DIAGNOSA PENYAKIT INFEKSI VIRUS PADA ANAK (STUDI KASUS : UPT. PUSKESMAS KUTA UTARA)

2016 ◽  
Vol 2 (2) ◽  
Author(s):  
Wayan Riyan Hedriant

<p>ABSTRACT<br />The development of information technology is growing up into the world of health . With<br />the technology in the world will facilitate the health services to patients . Information systems can<br />help health workers to do its job quickly then if done manually .Viral diseases are very vulnerable<br />children . This disease will be easier to attack when the child's immune system decreases.<br />Increasingly evolve the viral infections in children will require a rapid handling by health<br />workers, system built to help health workers to know the types of viral infections in children by<br />providing early diagnosis based on symptoms experienced by sufferers . This interactive system<br />designed using web based programming language PHP and uses a database of MYSQL . The<br />purpose of this interactivity system design is to produce a web-based system in the early diagnosis<br />of viral infections in children. Application of this interactive system is to leave the question in the<br />form of symptoms or complaints experienced by the patient, then the system will make the process<br />of analysis based on a percentage likelihood of a diagnosis of the patient's illness. This interactive<br />system will help provide the diagnosis of viral infections in children as well as provide information<br />about the disease as well as the solution of the disease. This system will assist in the provision of<br />services more quickly to patients .<br />Keywords : Interactive Systems, Disease Diagnosis Virus Infection In Children, Web<br />ABSTRAK<br />Perkembangan teknologi informasi semakin berkembang hingga ke dunia kesehatan.<br />Dengan adanya teknologi dalam dunia kesehatan akan mempermudah dalam melakukan pelayanan<br />kepada pasien. Sistem informasi dapat membantu petugas kesehatan dalam melakukan<br />pekerjaanya dengan cepat dibandingakan jika dilakukan secara manual. Penyakit akibat virus<br />sangat rentan terjadi pada anak-anak. Penyakit ini akan mudah menyerang saat daya tahan tubuh<br />anak menurun. Semakin berkembanganya penyakit infeksi virus pada anak akan membutuhkan<br />suatu penanganan yang cepat oleh petugas kesehatan.Sebuah sistem dibangun membantu petugas<br />kesehatan untuk mengetahui jenis penyakit infeksi virus pada anak dengan memberikan diagnosa<br />awal berdasarkan gejala yang di alami oleh penderita. Sistem interaktif ini di rancang berbasis web<br />dengan menggunakan bahasa pemrograman PHP dan menggunakan database dari MYSQL.<br />Tujuan dari perancangan sistem interakif ini adalah untuk menghasilkan sistem berbasis web<br />dalam diagnosa awal penyakit infeksi virus pada anak.Penerapan sistem interaktif ini adalah<br />dengan memberikan pertanyaan berupa gejala-gejala atau keluhan yang di alami oleh pasien, lalu<br />sistem ini akan melakukan proses analisis berdasarkan presentase kemungkinan dari diagnosa dari<br />penyakit pasien tersebut. Sistem interaktif ini akan dapat membantu memberikan hasil diagnosa<br />penyakit infeksi virus pada anak serta memberikan keterangan tentang penyakit serta solusi dari<br />penyakit tersebut. Sistem ini akan membantu dalam pemberian pelayanan yang lebih cepat pada<br />pasien.<br />Kata Kunci : Sistem Interaktif, Diagnosa Penyakit Infeksi Virus pada Anak¸ Web</p>

2010 ◽  
pp. 1825-1843
Author(s):  
Gwo-Jen Hwang ◽  
Hsiang Cheng ◽  
Carol H.C. Chu ◽  
Judy C.R. Tseng ◽  
Gwo-Haur Hwang

In the past decades, English learning has received lots of attention all over the world, especially for those who are not native English speakers. Various English learning and testing systems have been developed on the Internet. Nevertheless, most existing English testing systems represent the learning status of a student by assigning that student with a score or grade. This approach makes the student aware of his/her learning status through the score or grade, but the student might be unable to improve his/her learning status without further guidance. In this paper, an intelligent English tense learning and diagnosticsystem is proposed, which is able to identify studentlearning problems on English verb tenses and to provide personalized learning suggestions in accordance with eachstudent’s learning portfolio. Experimental results on hundreds of college students have depicted the superiority of the novel approach.


India being a democracy, that too world’s largest, still conducts its elections using either Secret Ballet Voting or Electronic Voting Machines (EVM) both of which involve high costs, manual labor and are inefficient. So, the system must be optimized to be made efficient which would not leave room for unwanted means of voting. The current system requires the physical presence of every individual which is inconvenient to many people. This paper focuses on a system that uses faces to unlock the voting system just like in your phone and does not require physical presence to cast a vote as the traditional system does. The process is time-consuming as well. The entirely web-based system enables people to cast their votes from anywhere in the world. Using detection of faces decreases the chance of duplicating a vote and those who are registered prior to the election and are recognized by the system will be allowed to vote. Just like fingerprints, every face also has unique features like the distance between the eyes and eyebrows that remain unchanged with growing age which makes the system more secure. Hence, the approach makes the system the best way to vote


2019 ◽  
Author(s):  
Chih-Jen Wu ◽  
Cheng-Jui Lin ◽  
Ying-Ying Chen ◽  
Pei-Chen Wu ◽  
Chi-Feng Pan ◽  
...  

BACKGROUND Cardiovascular (CV) events are the major cause of morbidity and mortality associated with blood pressure (BP) in hemodialysis (HD) patients. BP varies significantly during HD treatment, and the dramatic variation in BP is a well-recognized risk factor for increased mortality. It is important to develop an intellectual system capable of predicting BP profiles for real-time monitory. OBJECTIVE Our aim was to build a web-based system to predict the systolic blood pressure (SBP) change during hemodialysis process. METHODS This study was based on a large stream of HD parameters collected from a dialysis equipment connected to the Vital Info Portal gateway and linked with the demographic data stored in the hospital information system. The data set was divided into three groups - training, test and new patients. The training group was useful to build a multiple linear regression model, in which the SBP change was the dependent variable and the dialysis parameters and demographic data were the independent variables. We used the test and new patient groups to evaluate the model performance using coverage rates in different thresholds. A web-based interactive system based on the model was built for visualizing the prediction performance. RESULTS A total of 542,424 BP records were used in the model building. The accuracy was greater than 80% in the prediction error range of 15%, and 20mmHg of true SBP in the test and new patient groups for the SBP change model suggested a good performance of our prediction model. In the case of absolute SBP values (5, 10, 15, 20 and 25 mmHg), the accuracy of SBP prediction increased as the threshold value augmented. CONCLUSIONS This database supported the application of our prediction model in reducing the frequency of intradialytic SBP variability, and therefore, it could aid in the clinical decision when a new patient undertakes HD treatment. Whether the introduction of SBP prediction intelligent system can lower CV events in HD patients, it needs further investigations.


Author(s):  
Humaidillah Kurniadi Wardana ◽  
Imamatul Ummah ◽  
Lina Arifah Fitriyah

Diabetes Mellitus (DM) is one of the deadliest degenerative diseases in the world. The prevalence of DM in Indonesia from year to year shows asignificant increase. The high number of these causes the need for appropriate action and anticipation for health workers, DM families and DM people themselves. In this study, a system application model was created by using informatics techniques in health for early diagnosis of DM and what calorie needs needed for DM sufferers. This system was created using a GUI application and the Mamdani fuzzy method. The purpose of creating this system is to help in making an initial decision for DM diagnosis. The results obtained, first a DM diagnosis system with 6 input variables, 3 output variables, and 155 rules with MAPE achieved 29.48%. The second is the calorie requirements system with 2 input variables, 2 output variables namely BMI with MAPE 10.57% BMR with MAPE 9.7% and 9 rules with the results achieved by 99%.


2010 ◽  
Vol 29-32 ◽  
pp. 1223-1228
Author(s):  
Xu Jing ◽  
Dong Jian He ◽  
Lin Sen Zan ◽  
Jing Yu Wang ◽  
Jing Zhao

According to actual of cow epidemic disease diagnosis, bidirectional reasoning scheme based on the symptom both characterization and autopsy is proposed, which is based on inexact reasoning of certainty factor. The process of both construction the knowledge database for cow epidemic disease diagnosis and the inexact reasoning based on certainty factor are amplified. A web-based system on the platform of Tomcat+JSP+MySQL+DWR about the cow epidemic disease diagnosis is realized base on MVC. By testing, it is shown that the monitoring 21 kinds of cow epidemic disease in China can be accurately diagnosed, basically. It can be widely used in breeding aquatics village, breeding farm, raising households and so on. It will play a positive role to prevent and control the cow epidemic disease.


2019 ◽  
Vol 5 (3) ◽  
pp. 185
Author(s):  
Muqorobin Muqorobin ◽  
Prabowo Budi Utomo ◽  
Muhammad Nafi’Uddin ◽  
Kusrini Kusrini

Penelitian ini dilakukan berdasarkan kebutuhan akan adanya alat bantu bagi peternak maupun penyuluh dalam mendiagnosis penyakit pada ayam. Basis pengetahuan sepenuhnya diambil dari pengetahuan pakar yang dapat mendiagnosa dan menentukan nama penyakit yang diderita oleh ayam. Penelitian ini dibuat berdasarkan hasil analisis dengan membandingkan 4 jurnal internasional yang berjudul “Expert system of quail disease diagnosis using forward chaining method, An Expert System for Management of Poultry Diseases, Developling Mobile Expert Web-based System Using Brainstroming Method, Disease Diagnosis System”. Berdasarkan keempat jurnal tersebut dapat dikembangkan inovasi baru berupa Sistem pakar diagnosa penyakit ayam menggunakan metode Certainty Factor. Metodologi penelitian menggunakan wawancara dan studi literature sehigga dapat menggumpulkan data yang lebih lengkap. Sistem Pakar ini akan di implementasikan kedalam sebuah aplikasi mobile berbasis android dengan harapan memudahkan user dalam menggunakan karena dibuat kedalam aplikasi android sehingga bisa di install dalam handphone. Hasil akhir berupa suatu informasi data penyakit dengan nilai Certainty Factor/kepastian.Kata Kunci — Diagnosa Penyakit Ayam, Sistem Pakar, Android, Certainty FectorThis study was conducted based on the need for tools for farmers and extension workers in diagnosingdiseases in chickens. The knowledge base is completely drawn from the expert knowledge that can diagnose and determine the name of the disease suffered by chickens. This study was based on the results of the analysis by comparing four international journals entitled "Expert system of quail disease diagnosis using forward chaining method, An Expert System for Management of Poultry Diseases, Developing Mobile Expert Web-based System Using Brainstroming Method, Disease Diagnosis System". Based on the four journals can be developed a new innovation in the form of expert system of chicken disease diagnosis using Certainty Factor method. The research methodology uses interviews and literature studies so that it can collect more complete data. Expert System will be implemented into an android-based mobile application with the hope of facilitating the user in using because it is made into the android application that can be installed in the mobile phone. The final result is an information of disease data with Certainty Factor value/certainty.Keywords — Diagnosis of Chicken Disease, Expert System, Android, Certainty Fector


2021 ◽  
Vol 8 ◽  
Author(s):  
Ali Al-Hemoud ◽  
Manar AlSaraf ◽  
Mariam Malak ◽  
Musab Al-Shatti ◽  
Meshael Al-Jarba ◽  
...  

This study aimed at the development of an analytic web-based system for the assessment of animal health in Kuwait. The data sources were based on the World Organization for Animal Health (OIE) and the World Animal Health Information System (WAHIS) repository with data gathered for the period (2005–2020). An on-line web-based system using TABLEAU Creator was developed for monitoring and surveillance of animal disease outbreaks. Five animal diseases were identified in Kuwait; namely, HPAI, FMD, glanders, LSD and MERS-CoV. The highest numbers of outbreaks were recorded for HPAI, followed by FMD. Examples of spatio-temporal visualizations of the web based mappings are presented and include disease cases, number of outbreaks and farm locations, among other features. The web-based system can serve as a monitoring tool to easily display the status of animal health in Kuwait. It can also serve to quickly identify and track disease outbreaks and monitor the spread patterns of new or emerging animal diseases between neighboring countries.


Author(s):  
Olufemi Moses Oyelami

Medicine is one of the areas that has benefited from the use of artificial intelligence since the advent of machine intelligence. Different expert systems for diagnosing diseases have been developed; however, they are either standalone or Web-based systems. This puts a vast majority of Africans in general and Nigerians in particular at a disadvantage, because of computer literacy, accessibility, and usage are very low in this region of the world. Recent advances in the capabilities of mobile phones and increased usage, however, have opened up new opportunities for innovative and complex applications that can be accessed via mobile phones. This chapter presents a disease diagnosis system that can be accessed via mobile phones to cater to the needs of the vast majority of users in places where healthcare is inadequate.


Sensi Journal ◽  
2020 ◽  
Vol 6 (2) ◽  
pp. 236-246
Author(s):  
Ilamsyah Ilamsyah ◽  
Yulianto Yulianto ◽  
Tri Vita Febriani

The right and appropriate system of receiving and transferring goods is needed by the company. In the process of receiving and transferring goods from the central warehouse to the branch warehouse at PDAM Tirta Kerta Raharja, Tangerang Regency, which is currently done manually is still ineffective and inaccurate because the Head of Subdivision uses receipt documents, namely PPBP and mutation of goods, namely MPPW in the form of paper as a submission media. The Head of Subdivision enters the data of receipt and mutation of goods manually and requires a relatively long time because at the time of demand for the transfer of goods the Head of Subdivision must check the inventory of goods in the central warehouse first. Therefore, it is necessary to hold a design of information systems for the receipt and transfer of goods from the central warehouse to a web-based branch warehouse that is already database so that it is more effective, efficient and accurate. With the web-based system of receiving and transferring goods that are already datatabed, it can facilitate the Head of Subdivision in inputing data on the receipt and transfer of goods and control of stock inventory so that the Sub Head of Subdivision can do it periodically to make it more effective, efficient and accurate. The method of data collection is done by observing, interviewing and studying literature from various previous studies, while the system analysis method uses the Waterfall method which aims to solve a problem and uses design methods with visual modeling that is object oriented with UML while programming using PHP and MySQL as a database.


2020 ◽  
Vol 53 (1) ◽  
pp. 98-104
Author(s):  
Halima Krausen

In our plural society, interfaith marriages and multicultural families have become a new normal and are either considered problematic for the religious communities or welcomed as a contribution to a secular and more peaceful world. In the course of my work with European Muslims, I could accompany such families through a few generations. In this article, I am going to outline some typical challenges and crises in such relationships and their effects on young people growing up in mixed families, adding my observations of how they can be dealt with. Ultimately, there is a chance that, through dialogue, it provides a meaningful learning environment that prepares young people for the diverse reality of the world today.


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