scholarly journals ІНФОРМАЦІЙНА СИСТЕМА ДЛ Я РЕЄСТРУ ПАЦІЄНТІВ ІЗ МЕТАБОЛІЧНИМИ ЗАХВОРЮВАННЯМИ

Author(s):  
N. H. Horovenko ◽  
V. Z. Stetsyuk ◽  
N. V. Olhovych ◽  
A. Yo. Savytskyi ◽  
A. V. Malyei

<p>This article describes the problems encountered in the management of medical records of patients with metabolic diseases, and also provides a general solution to these problems through the introduction of a software product.</p><p>Objective was to reduce the burden on the healthcare registrars and medical genetics center, improving the speed and quality of patient care. In the software implementation the main features of the complex design problems are described: the programming language Java, IDE NetBeans, MySQL database server and web application to work with database server phpMyAdmin and put forward requirements. Also, medical receptionist is able to keep track of patients to form an extract, view statistics.</p><p>During development were numerous consultations with experienced doctors, medical registrars. With the convenient architecture in the future will be easy to add custom modules in the program. Development of the program management of electronic medical records of patients the center of metabolic diseases is essential, because today in Ukraine all the software that can keep track of patients who did not drawn enough attention to patients with metabolic diseases. Currently the software is installed in the center of metabolic diseases NCSH “OKHMATDYT.”</p>

Author(s):  
Andrew Georgiou

This chapter reviews what is currently known about the effect of the Electronic Medical Records (EMRs) on aspects of laboratory test ordering, their impact on laboratory efficiency, and the contribution this makes to the quality of patient care. The EMR can be defined as a functioning electronic database within a given organisation that contains patient information. Although laboratory services are expected to gain from the introduction of the EMRs, the evidence to date has highlighted many challenges associated with the implementation of EMRs, including their potential to cause major shifts in responsibilities, work processes, and practices. The chapter outlines an organisational communication framework that has been derived from empirical evidence. This framework considers the interplay between communication, temporal, and organisational factors, as a way to help health information technology designers, clinicians, and hospital and laboratory professionals meet the important challenges associated with EMR design, implementation, and sustainability.


2016 ◽  
pp. 60-76
Author(s):  
Andrew Georgiou

This chapter reviews what is currently known about the effect of the Electronic Medical Records (EMRs) on aspects of laboratory test ordering, their impact on laboratory efficiency, and the contribution this makes to the quality of patient care. The EMR can be defined as a functioning electronic database within a given organisation that contains patient information. Although laboratory services are expected to gain from the introduction of the EMRs, the evidence to date has highlighted many challenges associated with the implementation of EMRs, including their potential to cause major shifts in responsibilities, work processes, and practices. The chapter outlines an organisational communication framework that has been derived from empirical evidence. This framework considers the interplay between communication, temporal, and organisational factors, as a way to help health information technology designers, clinicians, and hospital and laboratory professionals meet the important challenges associated with EMR design, implementation, and sustainability.


Author(s):  
Stephen S. Altus ◽  
Ilan M. Kroo ◽  
Peter J. Gage

Abstract Complex engineering studies typically involve hundreds of analysis routines and thousands of variables. The sequence of operations used to evaluate a design strongly affects the speed of each analysis cycle. This influence is particularly important when numerical optimization is used, because convergence generally requires many iterations. Moreover, it is common for disciplinary teams to work simultaneously on different aspects of a complex design. This practice requires decomposition of the analysis into subtasks, and the efficiency of the design process critically depends on the quality of the decomposition achieved. This paper describes the development of software to plan multidisciplinary design studies. A genetic algorithm is used, both to arrange analysis subroutines for efficient execution, and to decompose the task into subproblems. The new planning tool is compared with an existing heuristic method. It produces superior results when the same merit function is used, and it can readily address a wider range of planning objectives.


2019 ◽  
Vol 127 ◽  
pp. 63-67 ◽  
Author(s):  
Omar Ayaad ◽  
Aladeen Alloubani ◽  
Eyad Abu ALhajaa ◽  
Mohammad Farhan ◽  
Sami Abuseif ◽  
...  

2012 ◽  
Vol 30 (34_suppl) ◽  
pp. 129-129
Author(s):  
Gregory P. Hess

129 Background: Electronic medical records (EMRs) are being increasingly adopted in part driven by reports of their positive impact on patient’s quality of care. An underlying assumption is that data recorded will be relatively complete. As a field of primary importance, this study assessed the frequency with which cancer stage was recorded within an EMR data field during a historical and recent 12-month period. A random sample of records with missing stage was assessed to identify at a qualitative level reasons that stage may be omitted. Methods: Two datasets were constructed. The first comprised of oncology EMRs from 77 practices covering 476 sites of care across 34 states from 1/1/2000-12/31/2010. The second dataset from 58 practices covering 391 sites of care across 37 states. Inclusion criteria required patients to have a valid visit (i.e., not simply ‘scheduled’) and ≥ 1 diagnosis of a primary, malignant, neoplasm (except brain or spine). All data fields utilized to record stage (stage I, II, etc.) or from which stage could be reliably derived (T, M, N fields) were defined as "recorded." Practices were not required to exist in each dataset. Recorded stage by age, gender, state, and payer type was also assessed. Results: Reasons reported for absent stage within the data field included: consult visit only, written in the progress notes, text present in a scanned report, stage X (insufficient information), continuing treatment initiated elsewhere, and missing entry error. Conclusions: A significant proportion of cancer patients may not have stage recorded in the designated, searchable, data field within an EMR. The frequency of recorded stage is increasing over time. Reasons for unpopulated stage field(s) include use of nonsearchable text entries, scanned reports, and short episodes of care. Further research is needed to validate the observations in this study, determine root causes, and employ appropriate solutions. [Table: see text]


2017 ◽  
Vol 1 (4) ◽  
pp. 111-112
Author(s):  
Elahe Gozali ◽  
Marjan Ghazisaiedi ◽  
Malihe Sadeghi ◽  
Reza Safdari

Introduction: Today, with the complexity of the process of conducting activities, the increase in diversity and the number of hospital services, and the increase in the expectations of clients - consistent with the fast technological advances - most of the hospitals in Iran have turned to mechanized systems to organize their daily activities and to register the patients' information and the care provided. One of these technologies is electronic medical records, which is known as a valuable system to evaluate patients' information in hospitals. The purpose of this paper was to examine the advantages of running electronic medical records in patient safety. Methods: This study is a review paper based on a structured review of papers published in the Google Scholar, SID, Magiran, Pubmed, and Science Direct databases (from 2007 to 2015) and the books on the benefits of implementing electronic medical records in patient safety and the related keywords. Results: Clinical information systems can have a significant effect on the quality of the outputs and patient safety. Various studies have indicated that the physicians with access to clinical guidelines and features such as computer reminders, doctors who did not have these features, presented more appropriate preventive care. Studies show that electronic medical records play a crucial role in improving the quality of patient health and safety services. Moreover, electronic medical record system is usually in connection with other technological tools: electronic drug management records,  electronic record of time and date of drug management are usually associated with bar code technology. Among the benefits of this system is the possibility to record clinical care by the treatment team, which would be especially beneficial for patient's bedside record. If the treatment personnel forgets to ask the patient a particular question, system reminds him/her. Furthermore, electronic medical record is able to remind the nurses of the patient's allergic reactions and medical history without the need for the patient to remind, which improves patient safety. Conclusion: Implementation of electronic medical records boosts up the quality of health services, patient safety, people's access to health care services, and the speed of patients treatment, leading to lower healthcare costs. Thus, considering the benefits mentioned and some other benefits of this kind, one can use this technology in clinical care provided to patients to come up with a safe and effective clinical care.


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