[PDF][PDF] Implications of digital image processing in the paraclinical assessment of the partially edentated patient

ME Antohe, D Forna Agop, CG Dascalu, NC Forna - Rev. Chim.(Bucharest), 2018 - bch.ro
Rev. Chim.(Bucharest), 2018bch.ro
The application of certain digital processing techniques offers the possibility of extra
accuracy in the interpretation of paraclinical examinations of this type, with profound
implications in the diagnosis as well as in the hierarchy of the treatment plan. The purpose of
this study is to identify the type of imaging processing for the identification of pathological
elements from orthopantomographies and articular tomographies. A number of 20
orthopantomographies and 15 temporo-mandibular joint tomography have undergone …
The application of certain digital processing techniques offers the possibility of extra accuracy in the interpretation of paraclinical examinations of this type, with profound implications in the diagnosis as well as in the hierarchy of the treatment plan. The purpose of this study is to identify the type of imaging processing for the identification of pathological elements from orthopantomographies and articular tomographies. A number of 20 orthopantomographies and 15 temporo-mandibular joint tomography have undergone through various image enhancement techniques. Various methods of image enhancement (enhancement) have been used for those procedures whereby it becomes more useful in the following aspects: specific details are highlighted; noise is eliminated; the image becomes more visually attractive. The workings were done in Corel PhotoPaint 7.0, using the automatic procedures available. The choice of a particular type of image enhancement technique has been selected for each type of pathology found in orthopantomographies or articular tomography, providing the best accuracy for an optimal imaging interpretation that underpins a precision diagnosis. Of the most useful imaging processing in the optimization of the orthopantomographic image accuracy the point-to-point transformations are to be noted. The image processing proposed in this article focused primarily on improving the radiological image attributes to highlight specific anatomical structures, and secondly, the contour detection, where it was necessary for the diagnostic purposes as well.
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