measuring technique
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2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Eerika Kalliomäki ◽  
Argyro J. Bizaki-Vallaskangas ◽  
Olli Valtonen ◽  
Markus Rautiainen

AbstractOur aim was to evaluate the effects of balloon sinuplasty on the size of the ostium in the maxillary sinuses in patients with chronic rhinosinusitis from cone beam computer tomography (CBCT) scans of the sinus. This is a blinded retrospective trial in patients who had undergone balloon sinuplasty of the maxillary sinus. CBCT scans were taken and SNOT-22 Quality of Life questionnaire completed before and 12 months after the operation. The size of the maxillary ostium was measured from the CBCT scans three-dimensionally. The association of changes in the SNOT-22 scores of the ostium was analysed. We discovered that the balloon sinuplasty increased the size of the maxillary ostium in all dimensions. The changes were statistically significant (p<0.05) in the axial diameter and the ostium area. The number of patent ostia increased after the intervention. The association between SNOT-22 score and ostium patency were statistically significant before the operation. Our conclusion is that the threedimensional measuring technique provides a reliable method to evaluate ostium dimensions. Balloon sinuplasty increased the size of the maxillary ostium and the result was maintained for 12 months after the operation.


2021 ◽  
Vol 2005 (1) ◽  
pp. 012227
Author(s):  
Yang Feili ◽  
Zheng Ke ◽  
Cheng Yingying ◽  
Guo Xun ◽  
Zhang Yuting

2021 ◽  
Author(s):  
Krzysztof Stepien ◽  
Urszula Kmiecik-Sołtysiak ◽  
Anna Zawada-Tomkiewicz ◽  
Uros Zuperl

Abstract One of the most universal measuring techniques in contemporary industry is a coordinate measuring technique. This paper focuses on a problem of measurements of form deviations with the use of coordinate measuring machines (CMMs). Nowadays, such measurements are usually carried out using a scanning probe-heads. The paper discusses the problem of measurements of roundness deviations by a scanning probe-head. Authors conducted an experiment aiming at the study of the influence of the number of probing points and the scanning speed on parameters of roundness error. The results were compared to the reference values obtained from the radius change instrument for highly accurate roundness and cylindricity measurements. The paper presents the introduction to the problem, the methodology of the study, the results of the experiment, discussion and final conclusions including the plan of further research.


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