Absolute measurement of flats with the method of shift-rotation

2013 ◽  
Vol 20 (5) ◽  
pp. 374-377 ◽  
Author(s):  
Weihong Song ◽  
Fan Wu ◽  
Xi Hou ◽  
Wenchuan Zhao ◽  
Yongjian Wan
2018 ◽  
Vol 426 ◽  
pp. 589-597 ◽  
Author(s):  
Jinyu Du ◽  
Zhongming Yang ◽  
Zhaojun Liu ◽  
Guobin Fan

2021 ◽  
Vol 493 ◽  
pp. 127022
Author(s):  
Yuntao Wang ◽  
Lei Chen ◽  
Chenhui Hu ◽  
Chen Huang ◽  
Zhiyao Ma ◽  
...  
Keyword(s):  

Author(s):  
Da-In An ◽  
Jung-Eun Park ◽  
Chang-Hyung Lee ◽  
Soo-Yong Kim

BACKGROUD: Reliable scapular upward rotation and anterior-posterior tilt data are required for patients with subacromial impingement syndrome (SIS). Only a few studies have explored the reliability of such measurements derived using a modified inclinometer. OBJECTIVES: To determine the relative and absolute reliability of scapular upward rotation and anterior-posterior tilt measurements derived using a modified digital inclinometer in patients with SIS. METHOD: Seventeen SIS patients were assessed twice within 1 week. We determined the relative and absolute measurement reliability by calculating the intraclass correlation coefficient (ICC), standard error of measurement (SEM), and minimal clinically important difference (MCID). Both intra- and interrater reliability were determined. RESULTS: The intra-rater reliability (both measurements) was high (0.72–0.88), and the interrater ICC was high to excellent (0.72–0.98). Clinically acceptable SEM and MCID values were obtained for scapular upward rotation (SEM: 4.28–9.33∘, MCID: 5.1–11.3∘) and anterior-posterior tilt (SEM: 3.72–7.55∘, MCID: 2.5–10.8∘). CONCLUSIONS: Measurements of scapular upward rotation and anterior-posterior tilt using a modified digital inclinometer reliably reveal scapular position and kinematics in patients with SIS.


2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Albert Adibekyan ◽  
Elena Kononogova ◽  
Jacques Hameury ◽  
Marcus Lauenstein ◽  
Christian Monte ◽  
...  

Abstract The development and use of new thermal insulation products in many industrial sectors, ranging from building insulations to power generation or satellite applications, requires the accurate knowledge of the radiative properties of the investigated material, i. e. its emissivity. A major objective of the research project “Improvement of emissivity measurements on reflective insulation materials” within the framework of the European Metrology Programme for Innovation and Research was to improve and validate reference techniques for the measurement of the total hemispherical emissivity of low emissivity foils with an absolute measurement uncertainty below 0.03. The calibration and measurement procedures developed within this project shall lead to a significant benefit for industrial manufacturers of reflective foils as well as for the end-users of the industrial instruments used to characterize them.


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