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| 1 | Predictors of itch and pain in the 12 months following burn injury:results from the Burns Registry of Australia and New Zealand(BRANZ)Long-Term Outcomes Project显示文摘Background:Itch and pain are common complaints of patients with burn injuries.This study aimed to describe the prevalence and predictors of itch and moderate to severe pain in the first 12 months following a burn injury,and determine the association between itch,moderate to severe pain,workrelated outcomes,and health-related quality of life following a burn injury.Methods:Burn patients aged 18 years and older were recruited from five Australian specialist burn units.Patients completed the 36-item Short Form Health Survey Version 2(SF-36 V2),the Sickness Impact Profile(SIP)work scale,and a specially developed questionnaire relating to itch at 1,6,and 12 months post-injury.Moderate to severe pain was defined as a score less than 40 on the bodily pain domain of the SF-36 V2.Multivariate mixed-effects regression models were used to identify patient and burn injury predictors of itch and moderate to severe pain.Results:Three hundred and twenty-eight patients were included.The prevalence of itch decreased from 50%at 1 month to 27%at 12 months.Similarly,the prevalence of moderate to severe pain decreased from 23%at 1 month to 13%at 12 months.Compared to patients aged 18-34,the adjusted odds of experiencing any itch were 59%(95%CI:0.20,0.82)and 55%(95%CI:0.22,0.91)lower for patients aged between 35 and 49 and≥50 years,respectively.Compared to patients aged 18-34,the adjusted odds of experiencing moderate to severe pain were 3.12(95%CI:1.35,7.20)and 3.42(95%CI:1.47,7.93)times higher for patients aged 35-49 and≥50 years,respectively.Conclusions:Less than 15%of patients reported moderate or severe pain at 12 months,while approximately one-quarter of the patients reported itch at the same period.The presence of moderate to severe pain was associated with a greater negative impact on health-related quality of life and work outcomes compared to itch.Further research is needed to improve our ability to identify patients at higher risk of persistent itch and pain who would benefit from targeted review and intervention studies. | Lincoln M.Tracy Dale W.Edgar Rebecca Schrale Heather Cleland Belinda J.Gabbe on behalf of the BRANZ Adult Long-Term Outcomes Pilot Project participating sites and working party | 2020 | Burns & Trauma2020,8,1: | 2 |
| 2 | Nanostructured black silicon and the optical reflectance of graded-density surface显示文摘 | BRANZ H M YOST V E WARD S | 2009 | Applied Physics Letters2009,94,23: | 1 |
| 3 | Nanostructured black silicon and the optical reflectance of graded density surfaces显示文摘 | Branz H M Yost V E | | 0,,23: | 1 |
| 4 | Multi-scale surface texture to improve blue response of nanoporous black silicon solar cells显示文摘 | Toor F Branz H M | | 0,,10: | 1 |
| 5 | Nano- structured black silicon and the optical reflectance of grade&density surfaces 显示文摘 | BRANZ H M YOST V E WARD S | 2009 | Applied Physics Let- ters2009,94,23: | 1 |
| 6 | Nanostruc- tured black silicon and the optical reflectance of graded-density surfaces显示文摘 | Branz H M Yost V E Ward S | 2009 | Applied Physics Let- ters2009,94,23: | 1 |
| 7 | Experimental tests of openloop maximum-power-point tracking tech- niques显示文摘 | HART G W BRANZ H M COX C H | 1984 | Solar Cells1984,13,: | 1 |
| 8 | Nanostructured black silicon and the optical reflectance of graded-density surfaces 显示文摘 | Branz H M Yost V E Ward S | 2009 | Appl Phys Lett2009,94,23: | 1 |
| 9 | Nanostructured black silicon and the optical reflectance of graded-density surfaces 显示文摘 | Howard M Branz Vernon E | 2009 | Applied Physical Letters2009,94,23: | 1 |
| 10 | 显示文摘 | Branz H | 1998 | Solid State Commun1998,105,: | 1 |
| 11 | Hadron molecules显示文摘We discuss a possible interpretation of the open charm mesons D*s0 (2317),D s1 (2460) and the hidden charm mesons X(3872),Y(3940) and Y(4140) as hadron molecules.Using a phenomenological Lagrangian approach we review the strong and radiative decays of the D* s0 (2317) and D s1 (2460) states.The X(3872) is assumed to consist dominantly of molecular hadronic components with an additional small admixture of a charmonium configuration.Determing the radiative (γJ/ψ and γψ(2s)) and strong (J/ψ2π and J/ψ3π) decay modes we show that the present experimental observation is consistent with the molecular structure assumption of the X(3872).Finally,we give evidence for molecular interpretations of the Y(3940) and Y(4140) related to the observed strong decay modes J/ψ+ω or J/ψ+φ,respectively. | Thomas Gutsche Tanja Branz Amand Faessler Ian Woo Lee Valery E.Lyubovitskij | 2010 | Chinese Physics C2010,34,9: | 1 |
| 12 | Nanostructured black silicon and the optical reflectance of graded-density sur- faces 显示文摘 | BRANZ H M YOST V E WARD S | 2009 | Appl Phys Lett2009,94,23: | 1 |
| 13 | Experimental Tests of Open-loop Maximum Power Point Tracking Techniques for Photovoltaic arrays显示文摘 | HART G W BRANZ H M COX C H | 1984 | Solar Cells1984,13,2: | 1 |
| 14 | Hydrogen collision model of light - induced metastability in hydrogenated amorphous silicon 显示文摘 | Branz H | 1998 | Solid State Communication1998,105,: | 1 |
| 15 | Multi-scale surface texture to improve blue response of nanoporous black silicon solar cells显示文摘 | Toot F Branz H M Page M R | 2011 | Appl Phys Lett2011,99,10: | 1 |
| 16 | Nanostruc- tured black silicon and the optical reflectance of grad- ed-density surfaces 显示文摘 | Branz H M Yost V E Ward S | 2009 | Applied Physics Letters2009,94,23: | 1 |
| 17 | Optical materials technology and energy efficiency and solar energy conversion显示文摘 | Branz H M | 1995 | SPIE1995,2531,: | 1 |
| 18 | Origin and consequences ofthe compensation (Meyer-Neldel) law 显示文摘 | YELON A MOVAGHAR B BRANZ H M | 1992 | Phys Rev B1992,46,12: | 1 |
| 19 | Experimental test s of open-loop maximum power point tracking techniques for photovoltaic arrays显示文摘 | Hart G W Branz H M Cox C H | 1984 | Solar Cells1984,13,2: | 1 |
| 20 | Nanostructured black silicon and the optical reflectance of graded-density surfaces 显示文摘 | BRANZ H M YOST V E WARD S | 2009 | Applied Physics Letters2009,94,23: | 1 |