PROBLEMS OF ENDONEUROSURGERY EDUCATION: A CASE STUDY IN TURKEY

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Date

2015

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Iated-int Assoc Technology Education & development

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Organizational Unit
Computer Engineering
(1998)
The Atılım University Department of Computer Engineering was founded in 1998. The department curriculum is prepared in a way that meets the demands for knowledge and skills after graduation, and is subject to periodical reviews and updates in line with international standards. Our Department offers education in many fields of expertise, such as software development, hardware systems, data structures, computer networks, artificial intelligence, machine learning, image processing, natural language processing, object based design, information security, and cloud computing. The education offered by our department is based on practical approaches, with modern laboratories, projects and internship programs. The undergraduate program at our department was accredited in 2014 by the Association of Evaluation and Accreditation of Engineering Programs (MÜDEK) and was granted the label EUR-ACE, valid through Europe. In addition to the undergraduate program, our department offers thesis or non-thesis graduate degree programs (MS).
Organizational Unit
Software Engineering
(2005)
Department of Software Engineering was founded in 2005 as the first department in Ankara in Software Engineering. The recent developments in current technologies such as Artificial Intelligence, Machine Learning, Big Data, and Blockchains, have placed Software Engineering among the top professions of today, and the future. The academic and research activities in the department are pursued with qualified faculty at Undergraduate, Graduate and Doctorate Degree levels. Our University is one of the two universities offering a Doctorate-level program in this field. In addition to focusing on the basic phases of software (analysis, design, development, testing) and relevant methodologies in detail, our department offers education in various areas of expertise, such as Object-oriented Analysis and Design, Human-Computer Interaction, Software Quality Assurance, Software Requirement Engineering, Software Design and Architecture, Software Project Management, Software Testing and Model-Driven Software Development. The curriculum of our Department is catered to graduate individuals who are prepared to take part in any phase of software development of large-scale software in line with the requirements of the software sector. Department of Software Engineering is accredited by MÜDEK (Association for Evaluation and Accreditation of Engineering Programs) until September 30th, 2021, and has been granted the EUR-ACE label that is valid in Europe. This label provides our graduates with a vital head-start to be admitted to graduate-level programs, and into working environments in European Union countries. The Big Data and Cloud Computing Laboratory, as well as MobiLab where mobile applications are developed, SimLAB, the simulation laboratory for Medical Computing, and software education laboratories of the department are equipped with various software tools and hardware to enable our students to use state-of-the-art software technologies. Our graduates are employed in software and R&D companies (Technoparks), national/international institutions developing or utilizing software technologies (such as banks, healthcare institutions, the Information Technologies departments of private and public institutions, telecommunication companies, TÜİK, SPK, BDDK, EPDK, RK, or universities), and research institutions such TÜBİTAK.

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Abstract

Endoneurosurgery consists of neurological operations performed using an endoscope. Unlike traditional surgery operations, natural body cavities are used as entry points, hence inflicting minimum damage to the patient. These operations are considered as minimal invasive surgeries (or MIS), where surgeons see the operation area in two-dimensional view on the monitor and perform the operation based on that view. Studies show that MIS causes minimal harm to human body and reduces the death risk and that these surgeries are at least as safe as those performed using microscopes. Despite having certain advantages, they also come with certain problems, one of which is that the endoscopic view is two-dimensional, not three; in other words, since endoneurosurgery is performed via the images from the endoscope, the surgeon's perception should enable them to transform those images seen through the endoscope and convert them mentally to their correct anatomical models. In that concern, lack of depth perception can cause serious injuries, even resulting in deaths if not dealt with in advance by training. To be successful in such an environment, the surgeon has to gain critical skills. Hence, the education programs of surgery and endoneurosurgery has unique problems. The main aim of this study is to better understand the problems of endoneurosurgery education in Turkey. For this, a survey study is conducted with 31 participants, who are either currently enrolled in endoneurosurgery education programs in Turkey or experts in the field. Supportively semi-structured individual interviews are also conducted with 5 participants. This data is collected to better understand the methods being used in these programs, their problems and the participants' preferred methods to be used. Additionally, the participants' attitudes towards are also investigated regarding the use of new technologies to enhance the current education programs. The results indicate that, in Turkey, endoneurosurgery training programs are still mostly offered in traditional ways while other educational methods are used in an extremely limited manner. Main problems of integrating new technologies into these education programs are highlighted as: the most widely used educational method for endoneurosurgery in Turkey is the traditional one, see one-do one-teach one, provided in the operating theatre on real patients with an extremely limited practice alternative for the assistants. To improve the practice educators and trainees are willing to use alternative education environments, such as virtual reality and box training. However, they are not available and there are no curriculum integration models for these technologies.

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Keywords

Technology Enhanced Surgery Education, Endoneurosurgery Education

Turkish CoHE Thesis Center URL

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0

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N/A

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Source

9th International Technology, Education and Development Conference (INTED) -- MAR 02-04, 2015 -- Madrid, SPAIN

Volume

Issue

Start Page

1410

End Page

1420

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