In recent years, rapid developing information and communication technology has been changing swiftly our insight of management perspective in our country and the World. Generally, dynamic and visionary private sector enterprises could easily adapt to these changes. From the point of information systems view, local governments just like the private sector which produce services. Local governments provide services to people living within the boundaries, but they never think or act as profit-oriented private sector. In new economy, cities are becoming more interconnected economically, culturally, and infrastructural through the parallel development of global telecommunication and transportation networks. Firstly, it has been investigated what factors affect the adoption of information technologies in Izmir Metropolitan Municipality. A survey was developed to measure the factors affecting the use of information technology in municipalities. The survey questions were prepared according to the effects of the above organizational factors. Also it was conducted with the managers of the branch manager level in Izmir Metropolitan Municipality. Finally, the results of the study were discussed and give a contribution to the literature.
Üniversiteler için artan öğrenci sayıları, büyüyen binalar, değişen ve gelişen hizmetler ve bunlara bağlı olarak karmaşık hale gelen yönetimsel faaliyetler büyük sorunları da beraberinde getirmektedir. İlçe ve bazen küçük bir il nüfusuna dayanan bazı üniversitelerdeki öğrenci ve personel sayıları bir il yönetimindeki gibi hizmetlerinde sorunsuz bir şekilde yönetilmesi gerekliliğini beraberinde getirmektedir. Modern yönetim anlayışı çerçevesinde kampüs içerisindeki fiziksel mekanlarına uluslararası standartlarda koordinatlı bir şekilde teknolojik imkanlarla bilgisayar ortamına aktarılması ve bunun üzerinde değişim ve dönüşümleri kontrol edip yönetebilmelidir. Bu çalışma, kampüslerin ve içerisindeki her türlü varlığın, faaliyetin ve düzenlemelerin sağlıklı yapılabilmesi için akıllı kampüs uygulamalarına temel teşkil edecek altyapı sistemlerinin nasıl oluşturulabileceğini, bu altyapı üzerine uygulamaların nasıl yerleştirilebileceğini ortaya koymaktadır.
Background. Heterozygous intragenic mutations of the hepatocyte nuclear factor 1 homeobox b gene (HNF1B) located on chromosome 17 and microdeletion of 17q12 region (17q12MD) leads to the complete loss of this gene, which causes renal cystic disease, diabetes mellitus (MODY5), hypomagnesemia, hyperuricemia, liver enzyme abnormalities, genital tract abnormalities and exocrine pancreatic insufficiency. In addition, patients with 17q12MD also have facial dysmorphism, neuro-developmental and neuropsychiatric disorders.
Case. A 16-year-old girl with obesity and mild facial dysmorphism was admitted to the hospital with symptoms of diabetes that started two days prior to her admission. She was diagnosed with severe diabetic ketoacidosis and treated accordingly. She had been followed up with the diagnoses of multicystic renal disease, hydronephrosis, hepatosteatosis, hypomagnesemia and hyperuricemia since the age of six. She had mild intellectual disability. Her menarche started two months ago. Cranial magnetic resonance imaging revealed mild diffuse cerebral and cerebellar atrophy and a partial empty sella. Her mother had diabetes, hypomagnesemia and mild intellectual disability and her maternal grandfather and uncle had diabetes. Her grandfather also had renal cystic disease. All of them are on oral antidiabetic medication. The genetic analysis of the patient and her mother revealed a loss of 1.6 megabases in chromosome 17q12.
Conclusions. MODY5 should be kept in mind in patients with diabetes who present with extra pancreatic findings, especially with renal cystic disease, more over, a genetic analysis including the study of 17q12MD should be carried out in patients who present with additional neuropsychiatric findings. Ketoacidosis can be seen in patients with MODY5. Ketoacidosis and renal anomalies and dysfunction are factors that increase and affect the severity of each other in these patients.
ÖzGeleceğin üretim sektörünü geleneksel olandan ayırt eden otonom robotlar, nesnelerin interneti ve veri analitiği teknolojileri olacaktır. Bu hedefler doğrultusunda kurumsal dönüşüm süreçleri gerçekleştirilecektir. Buna karşılık ülkemiz de birçok küçük ve orta ölçekli üretici, üretim süreçlerinde üretim verilerini hala kâğıtlara kaydederek sakladığı görülmektedir. Bunun sonucunda tüm bu saklanan veriler karar verme süreçlerine de dâhil edilememektedir. Verilerin otomasyonlar kullanılarak dijital ortamda tutulması ve rapor edilmesine yönelik birçok çalışma bulunmasına rağmen verilerin anlık olarak analiz edilip raporlanmasına yönelik çalışma bulunmamaktadır. Anlık veri analizi kullanarak üretim süreçlerinde takip edilebilirliği arttırmak ve bu sayede üretim performansını ve verimliliğin arttırılması amaçlanmaktadır. Çalışma kapsamında üretim süreçlerinde etkinliğin artırılmasına yönelik gömülü sistemler kullanılmış ve uygulama geliştirilmiştir. Yeni sistemin verimliliğinin ölçülmesi için performans verileri ve maliyet verileri kullanılmıştır. Sonuç olarak yeni sistemin kullanıldığı tezgâh aynı özelliklere sahip diğer tezgâha göre daha yüksek bir üretim artışı göstermiştir. Elde edilen sonuçlara göre üretim sürecinde iş akışını ve zaman yönetimini ve karar alma süreçleri iyileştirilecektir.
AbstractAutonomous robots, internet of things and data-analysis technologies will be the distinguishing factors between the future manufacturing industry and the traditional one. On the other hand, many small and medium-sized production companies in Turkey seem to keep their production records on paper within their production processes. As a result, all these stored data cannot be included in the decision-making process. Although there are many studies about storing and reporting data in digital environment using automations, there is no study to analyze and report data instantaneously. This study aims to increase traceability in production processes by using instantaneous data analysis and to increase production performance and productivity as a result of this increment. In the scope of the study, embedded systems were used and an application was developed to increase efficiency in production processes. Performance data has been used to measure productivity in production processes. As a result, the machine in which the new system was used showed a higher production increase than the other machine with the same characteristics. According to these results the workflow, time management and decision making processes can be improved.
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