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23篇 您的检索式:作者名="Djaja"
    题名 作者 年代 出处 被引量
1中国猕猴桃科新异名(英文)显示文摘作者在编写《Flora of China》猕猴桃科Actinidiaceae时, 对一些分类群的处理做了变动, 提出了一些异名, 本文对异名进行了必要的解释。李新伟 李建强 Djaja Djendoel SOEJARTO 2007植物分类学报2007,45,5:14
2Total hip replacement:A meta-analysis to evaluate survival of cemented,cementless and hybrid implants显示文摘AIM To determine whether cemented, cementless, or hybrid implant was superior to the other in terms of survival rate.METHODS Systematic searches across MEDLINE, CINAHL, and Cochrane that compared cemented, cementless and hybrid total hip replacement(THR) were performed. Two independent reviewers evaluated the risk ratios of revision due to any cause, aseptic loosening, infection, and dislocation rate of each implants with a pre-determined form. The risk ratios were pooled separately for clinical trials, cohorts and registers before pooled altogether using fixed-effect model. Meta-regressions were performed to identify the source of heterogeneity. Funnel plots were analyzed. RESULTS Twenty-seven studies comprising 5 clinical trials, 9 cohorts, and 13 registers fulfilled the research criteria and analyzed. Compared to cementless THR, cemented THR have pooled RR of 0.47(95%CI: 0.45-0.48), 0.9(0.84-0.95), 1.29(1.06-1.57) and 0.69(0.6-0.79) for revision due to any reason, revision due to aseptic loosening, revision due to infection, and dislocation respectively. Compared to hybrid THR, the pooled RRs of cemented THR were 0.82(0.76-0.89), 2.65(1.14-6.17), 0.98(0.7-1.38), and 0.67(0.57-0.79) respectively. Compared to hybrid THR, cementless THR had RRs of 0.7(0.65-0.75), 0.85(0.49-1.5), 1.47(0.93-2.34) and 1.13(0.98-1.3).CONCLUSION Despite the limitations in this study, there was some tendency that cemented fixation was still superior than other types of fixation in terms of implant survival.Phedy Phedy H Dilogo Ismail Charles Hoo Yoshi P Djaja 2017World Journal of Orthopedics2017,8,2:10
3Potential consequence of plant extinction in the United States on the current and future availability of prescription drugs显示文摘Norman R. Farnsworth Djaja Doel Soejarto 1985Economic Botany1985,,3:1
4Chemical recycling of phenol resin by supercritical methanol显示文摘Ozaki Jun-ichi Kastria Subagijo Djaja Ingwang 2000Ind Eng Chem Res2000,39,:1
5Chemical recycling of phenol resin by supereritical methanol 显示文摘Jun- ichi Ozaki Subagijo Kastria Ingwang Djaja Asao Oya 2000Ind Eng Chem Res2000,39,:1
6Peltogynoids and homoisoflavonoids from Caesalpiniapulcherrima显示文摘David D M Geoffrey A C Djaja D S 1983Phytochemistry1983,22,:1
7Land subsidence of Jakarta (Indonesia) and its geodetic monitoring system显示文摘Abidin H Z Djaja R Darmawan D Hadi S Akbar A Rajiyowiryono H Sudibyo Y Meilano I Kasuma M A Kahar J Subarya C 2001Natural hazards2001,23,23:1
8Technique for enhancing the performance of discretized controllers显示文摘Raviv D Djaja E W 1999IEEE Control Systems Magazine1999,19,3:1
9Technique for enhancing the performance of discretized controllers显示文摘 DJAJA E W 1999IEEE Control Systems1999,37,:1
10Technique for enhancing the performance of discretized controllers 显示文摘RAVIV D DJAJA E W 1999IEEE Control Systems1999,19,3:1
11Novel strategies for the discovery of plant-derived anticancer agents 显示文摘Douglas A K Norman R F Djaja D S 2003Phar Bio2003,41,1:1
12Land subsidence of jakarta (indonesia) and its geodetic mo- nitoring system 显示文摘ABIDIN H Z DJAJA R DARMAWAN D 2001Natural Hazards2001,23,2:1
13Technique for enhancing the performance of discretized controllers显示文摘Raviv D Djaja E W 1999IEEE Control Systems Magazine1999,19,3:1
14Land subsidence of Jakar- ta (Indonesia) and its geodetic monitoring system显示文摘Abidin H Z Djaja R Darmawan D 2001Natural Haz- ards2001,23,2:1
15Land subsidence characteristics of Jakarta between 1997 and 2005, as estimated using GPS surveys 显示文摘Abidin H Z Andreas H Djaja R 2008GPS Solutions2008,12,1:1
16Land subsidence of Jakarta (Indonesia) and its geodetic monitoring system 显示文摘Abidin H Z Djaja R Darmawan D 2001Natural Hazards2001,23,23:1
17Land Subsidence Characteristics of Jakarta Between 1997 and 2005, as Estimated Using GPS Surveys显示文摘Abidin H Z Andreas H Djaja R 2008GPS Solutions2008,12,1:1
18Technique for enhancing the performance of discretized controllers 显示文摘Daniel Raviv Djaja Eddy W 1999Control Systems IEEE1999,19,3:1
19Advances in the study of the systematics of Actinidia Lindley显示文摘Actinidia(Actinidiaceae)is of economic importance for its edible fruits.Traditional taxonomy divided the genus into four sections,Leiocarpae Dunn,Maculatae Dunn,Strigosae Li,and Stellatae Li.However,phylogenetic studies based on morphology and molecular markers have posed challenges to the four-section scheme.It appears that the natural classification of the genus points to the existence of two groups,one comprising Leiocarpae,and the other Maculatae,Strigosae,and Stellatae.Single-or low-copy genes would probably be useful in untangling the perplexity and the reticulate evolution of the genus.However,any phylogenetic studies must be firmly based on sound taxonomy and identification.Population sampling throughout the distribution range of the taxa should be carried out in order to study the variation pattern of the morphology and,ultimately,to clarify the confusion existing in some taxa.A combination of morphometrics and molecular data is highly desirable for resolving the uncertainty in Actinidia taxonomy.Xinwei LI Jianqiang LI Djaja Djendoel SOEJARTO 2009Frontiers in Biology2009,4,1:0
20Age estimation of individuals aged 5-23 years based on dental development of the Indonesian population显示文摘Dental development can be used to estimate age for forensic purposes.However,most of the currently available methods are less reliable for the Indonesian population due to population variability.This study presents a new method and evaluates other methods that utilize dental development to estimate the age of Indonesian people.Panoramic radiographs of 304 young Indonesian people aged 5–23 years old were analysed for deciduous tooth root resorption,permanent tooth calcification,and eruption.The extent of tooth root resorption was determined based on AlQahtani’s modified Moorrees et al.method.Tooth calcification was classified based on a modified Demirjian et al.method.Tooth eruption was evaluated based on AlQahtani’s modified Bengston system.The sequence of tooth root resorption,and permanent tooth calcification and eruption were grouped into 19 age categories(from 5–23 years old)in an atlas.The differences between males and females,between maxillary and mandibular teeth,and between right and left teeth were also analysed.There were minimal significant differences of tooth development between males and females,and between the right and left teeth(P>0.05),while the maxillary and mandibular dental development was significantly different(P<0.05).The newly developed atlas showed the development of the right side of maxillary and mandibular tooth of combined sex of Indonesian population.Another 34 panoramic radiographs of known-age and sex individuals from Indonesia were assessed using the newly developed Atlas of Dental Development in the Indonesian Population,Ubelaker’s Dental Development Chart,The London Atlas of Human Tooth Development and Eruption by AlQahtani,and the Age Estimation Guide-Modern Australia population by Blenkin-Taylor.Accuracy was assessed by comparing estimated age to actual chronological age using the Bland-Altmand test.Results show that the smallest range of error was found in the Atlas of Dental Development in the Indonesian Population(−0.969 to 1.210 years),followed by The London Atlas of Human Tooth Development and Eruption by AlQahtani(−2.013 to 1.990 years),the Age Estimation Guide-Modern Australia population by Blenkin-Taylor(−2.495 to 2.598 years),and the Dental Development Chart by Ubelaker(−2.960 to 3.289 years).These findings show that the Atlas of Dental Development constructed in this study performs better than the other three methods and presents greater accuracy of age estimation in the Indonesian population.Adisty Setyari Putri Nurtami Soedarsono Benindra Nehemia Djaja Surya Atmadja Douglas H.Ubelaker 2022Forensic Sciences Research2022,7,2:0
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