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20篇 您的检索式:作者名="Stoyanoff"
    题名 作者 年代 出处 被引量
1Tacoma Narrows 50 years later-wind engineering investigations for parallel bridges 显示文摘Irwin P A Stoyanoff S Xie J M 2005Bridge Structures: Assessment Design and Construction2005,1,1:1
2Tacoma narrows 50 years later-Wind engineering investigations for parallel bridges 显示文摘Irwin P A Stoyanoff S Xie J M 2005Bridges Structures2005,1,1:1
3Temporal and spatial analysis of electrogenerated Ru(bpy)33+chemiluminescent reactions in flowing streams显示文摘SHULTZ L L STOYANOFF J S NIEMAN T A 1996Anal Chem1996,68,2:1
4Temporal and spatial analysis of electrogenerated Ru(bpy) 3^3+ chemiluminescent reactions in flowing streams显示文摘SHULTZ L L STOYANOFF J S NIEMAN T A 1996Anal Chem1996,,68:1
5Amelioration of lipopolysaccharide-induced acute kidney injury by erythropoietin: involvement of mitochondria-regulated apoptosis 显示文摘STOYANOFF TR TODARO JS AGUIRRE MV 2014Toxicology2014,6318,:1
6Examing Success Factors Related to ERP Implementations In Higher Education Shared Services Projects显示文摘STOYANOFF D G P 2012Capella University2012,,:1
7Error assessment for wind for wind historier generated by auto-regressive method 显示文摘Novak D Stoyanoff Herda H 1995Structural Safety1995,17,2:1
8Amelioration oflipopolysaccharide-induced acute kidney injury by erythropoietin :involvement of mitochondria-regulated apoptosis 显示文摘Stoyanoff TR Todaro JS Aguirre MV 2014Toxicology2014,318,318:1
9Error assessment for wind histories generated by autoregressive method显示文摘Novak D Stoyanoff S Herda H 1995Structural Safety1995,17,2:1
10Tacoma narrows 50 years later-wind engineering investigations for parallel bridges显示文摘Irwin P A Stoyanoff S Xie J M 2005Bridges Structures2005,1,1:1
11A Unified Approach for 3D Stability and Time Do- main Response Analysis with Application of Quasi - Steady Theory 显示文摘Stoyan Stoyanoff 2001Journal of Wind Engineering and Industrial Aerodynamics2001,89,:1
12Tacoma Narrows 50 years later-wind engineering investigations for parallel bridges 显示文摘Irwin R A Stoyanoff S Xie J 2005Bridge Structures: Assessment Design and Construction2005,1,1:1
13A Unified Approach for 3D Stability and Time Domain Response Analysis with Application of Quasi-Steady Theory显示文摘Stoyan Stoyanoff 2001Journal of Wind Engineering and Industrial Aerodynamics2001,89,:1
14Tacoma narrows 50 years later-Wind engineering investigations for parallel bridges 显示文摘Irwin P A Stoyanoff S Xie J M 2005Bridges Structures2005,1,1:1
15Tacoma Narrows 50 Years Later-Wind Engineering Investigations for Parallel Bridges显示文摘IRWIN P A STOYANOFF S XIE J M 2005Bridge Structures: Assessment Design and Construction2005,1,1:1
16Error assessment for wind histories generated by autoregressive method显示文摘Drahomir Novak Stoyan Stoyanoff Hans Herda 1995Structural safety1995,17,2:1
17Tacoma nar-rows 50 years later Wind engineering investiga- tions for parallel bridges 显示文摘Irwin P A Stoyanoff S Xie J M 2005Bridges Structures2005,1,1:1
18Temporal and spatial analysis of electrogenerated Rufbpy),' chemiluminescent reactions in flowing streams 显示文摘Shultz L L Stoyanoff J S Nieman T A 1996Analytical Chemistry1996,68,2:1
19Error assessment for wind histories generated by autoregressive method 显示文摘Novak D Stoyanoff S Herda H 1995Structural Safety1995,17,2:1
20Military trainees can accurately measure optic nerve sheath diameter after a brief training session显示文摘Background: Identification of elevated intracranial pressure is important following traumatic brain injury. We assessed the feasibility of educating military trainees on accurately obtaining optic nerve sheath diameter measurements using a brief didactic and hands-on training session. Optic nerve sheath diameter is a noninvasive surrogate marker for elevated intracranial pressure, and may be of value in remote military operations, where rapid triage decisions must be made without access to advanced medical equipment.Methods: Military trainees with minimal ultrasound experience were given a 5-min didactic presentation on optic nerve sheath diameter ultrasound. Trainees practiced optic nerve sheath diameter measurements guided by emergency physician ultrasound experts. Trainees then measured the optic nerve sheath diameter on normal volunteers. Following this, a trained physician measured the optic nerve sheath diameter on the same volunteer as a criterion standard. An average of three measurements was taken.Results: Twenty-three military trainees were enrolled. A mixed design ANOVA was used to compare measurements by trainees to those of physicians, with a mean difference of –0.6 mm(P=0.76). A Bland-Altman analysis showed that the degree of bias in optic nerve sheath diameter measures provided by trainees was very small: d=–0.004 for the right eye and d=–0.007 for the left eye.Conclusions: This study demonstrates that optic nerve sheath diameter measurement can be accurately performed by novice ultrasonographers after a brief training session. If validated, point-of-care optic nerve sheath diameter measurement could impact the triage of injured patients in remote areas.Joseph Betcher Torben KBecker Peter Stoyanoff Jim Cranford Nik Theyyunni 2019Military Medical Research2019,6,3:0
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