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| 1 | Short fixation with a 3‐rod technique for posterior hemivertebra resection in children younger than 5 years old显示文摘Importance Congenital hemivertebra is commonly treated with posterior hemivertebra resection with bilateral transpedicular fixation.However,implant‐related complications are common in children younger than 5 years old who undergo this surgical procedure.Objective To present the preliminary clinical and radiological outcomes of children younger than 5 years old treated by posterior hemivertebra resection and 3‐rod fixation technique.Methods From January 2016 to December 2017,14 consecutive patients of congenital scoliosis with 16 hemivertebrae were retrospectively reviewed,including 5 girls and 9 boys,aged between 25 and 55 months old(average,37.6 months).All patients underwent posterior hemivertebra resection with short fixation with bilateral pedicle screws and a convex lamina hook.Surgical complications and corrective outcomes were assessed based on the clinical charts and spinal radiographs with a minimum 24‐month follow‐up.Results The mean Cobb angle of the main curve was 38.4°before surgery,8.5°after surgery,and 8.7°at final follow‐up.In the compensatory cranial curve,the preoperative Cobb angle of 16.8°was corrected to 8.1°postoperatively and was 10.3°at final follow‐up.In the compensatory caudal curve,the preoperative Cobb angle of 15.9°improved to 5.3°postoperatively and was 7.8°at final follow‐up.The segmental kyphosis was corrected from 13.5°to 0.5°and was 1.1°at final follow‐up.There were no crankshaft phenomena,no proximal kyphosis,and no complications related to the instrumentation.Interpretation Posterior hemivertebra resection with instrumentation with bilateral pedicle screws and a convex lamina hook can achieve rigid fixation and deformity correction. | Dong Guo Ziming Yao Xinyu Qi Chengxin Li Xuejun Zhang | 2020 | Pediatric Investigation2020,4,2: | 4 |
| 2 | Progress of Jinping Underground laboratory for Nuclear Astrophysics(JUNA)显示文摘Jinping Underground laboratory for Nuclear Astrophysics(JUNA) will take the advantage of the ultra-low background of CJPL lab and high current accelerator based on an ECR source and a highly sensitive detector to directly study for the first time a number of crucial reactions occurring at their relevant stellar energies during the evolution of hydrostatic stars. In its first phase, JUNA aims at the direct measurements of^(25)Mg(p,γ)^(26)Al,^(19)F(p,α)^(16)O,^(13)C(α,n)^(16)O and ^(12)C(α,γ)^(16)O reactions. The experimental setup,which includes an accelerator system with high stability and high intensity, a detector system, and a shielding material with low background, will be established during the above research. The current progress of JUNA will be given. | WeiPing Liu ZhiHong Li JiangJun He XiaoDong Tang Gang Lian Zhu An JianJun Chang Han Chen QingHao Chen XiongJun Chen ZhiJun Chen BaoQun Cui XianChao Du ChangBo Fu Lin Gan Bing Guo GuoZhu He Alexander Heger SuQing Hou HanXiong Huang Ning Huang BaoLu Jia LiYang Jiang Shigeru Kubono JianMin Li KuoAng Li Tao Li YunJu Li Maria Lugaro XiaoBing Luo HongYi Ma ShaoBo Ma DongMing Mei YongZhong Qian JiuChang Qin Jie Ren YangPing Shen Jun Su LiangTing Sun WanPeng Tan Isao Tanihata Shuo Wang Peng Wang YouBao Wang Qi Wu ShiWei Xu ShengQuan Yan LiTao Yang Yao Yang XiangQing Yu Qian Yue Sheng Zeng HuanYu Zhang Hui Zhang LiYong Zhang NingTao Zhang QiWei Zhang Tao Zhang XiaoPeng Zhang XueZhen Zhang ZiMing Zhang Wei Zhao Zuo Zhao Chao Zhou | 2016 | Science China(Physics,Mechanics & Astronomy)2016,59,4: | 3 |
| 3 | A novel design of asuspension system for omni - directional electric vehicles 显示文摘 | Hao Qiu Zhengbao LEI Tom Ziming Qi | 2011 | Ad-vanced Materials Research2011,308,: | 1 |
| 4 | A Novel Design of a Suspension System for Omni-Directional Electric Vehicles 显示文摘 | Hao Qiu Zhengbao LEI Tom Ziming Qi Zhurong Dong | 2011 | Advanced Materials Research Vols2011,,: | 1 |
| 5 | A novel design of a suspension system for omni-directional electric vehicles 显示文摘 | QIU Hao LEI Zhengbao QI Ziming | 2011 | Adv MaterRes2011,,: | 1 |
| 6 | A Novel Design of a Suspension System for Omni-Direc- tional Electric Vehicies显示文摘 | Hao Qiu Zhengbao LEI Tom Ziming Qi | 2011 | Advanced Materials Re- search : Advanced Design Technology2011,,: | 1 |
| 7 | 汽车冷却液储液罐试验台测控系统设计显示文摘根据汽车冷却液储液罐试验台测控的要求,给出了测控系统的设计方案,考虑到冷却液储液罐耐久失效试验一般是从小的渗漏逐渐变成较大的泄漏,该文在不增加硬件的基础上,利用现有测控的硬件设备,采用逐个支路循环隔离检验的方法实现了泄漏的自动诊断和泄漏支路的自动切断隔离,具有诊断精度高、误判率低的优点。 | 李传江 张自强 Tom Ziming Qi | 2009 | 液压与气动2009,33,1: | 0 |
| 8 | Elimination of the yellow pigment gene PSY-E2 tightly linked to the Fusarium head blight resistance gene Fhb7 from Thinopyrum ponticum显示文摘Fhb7 is a major gene that was transferred from Thinopyrum ponticum to chromosome 7D of wheat(Triticum aestivum)and confers resistance to both Fusarium head blight(FHB)and Fusarium crown rot(FCR).However,Fhb7 is tightly linked to the PSY-E2 gene,which causes yellow flour,limiting its application in breeding.To break this linkage,marker K-PSY was developed for tagging PSY-E2 and used with Fhb7 markers to identify recombination between the two genes.Screening 21,000 BC1F2 backcross progeny(Chinese Spring ph1bph1b*2/SDAU 2028)revealed two Fhb7^(+)wheat-Tp7el_(2)L lines,Shannong 2–16and Shannong 16–1,that carry a desired truncated Fhb7^(+)translocation segment without PSY-E2.The two lines show levels of resistance to FHB and FCR similar to those of the original translocation line SDAU 2028,but have white flour.To facilitate Fhb7 use in wheat breeding,STS markers were developed and used to isolate Fhb7 on a truncated Tp7el_(2) translocation segment.Near-isogenic lines carrying the Fhb7^(+)segment were generated in the backgrounds of three commercial cultivars,and Fhb7^(+)lines showed increased FHB and FCR resistance without yield penalty.The breakage of the tight linkage between Fhb7 and PSY-E2 via homoeologous recombination provides genetic resources for improvement of wheat resistance to FHB and FCR and permit the large-scale deployment of Fhb7 in breeding using marker-assisted selection. | Xuefeng Li Dong Li Yu Xuan Ziming He Lanfei Zhao Yongchao Hao Wenyang Ge Shoushen Xu Bingqian Hou Biao Wang Jun Guo Wenwen Liu Mingzhu Li Yi Han Cunyao Bo Yinguang Bao Zengjun Qi Steven S.Xu Guihua Bai Hongwei Wang Lingrang Kong | 2023 | The Crop Journal2023,11,3: | 0 |
| 9 | Improving cooperativity of transcription activators by oligomerization domains in mammalian cells显示文摘Cooperative activation is critical for the applications of synthetic biology in mammalian cells.In this study,we have developed cooperative transcription factor by fusing oligomerization domain in mammalian cells.Firstly,we demonstrated that two oligomerized domains(CI434 and CI)successfully improved transcription factor cooperativity in bacterial cells but failed to increase cooperativity in mammalian cells,possibly because the additional mammalian activation domain disrupted their oligomerization capability.Therefore,we chose a different type of oligomerized domain(CarHC),whose ability to oligomerize is not dependent on its C-terminal domains,to fuse with a transcription factor(RpaR)and activation domain(VTR3),forming a potential cooperative transcription activator RpaR-CarH-VTR3 for mammalian regulatory systems.Compared with RpaR-VTR3,the cooperativity of RpaR-CarH-VTR3 was significantly improved with higher Hill coefficient and a narrower input range in the inducible switch system in mammalian cells.Moreover,a mathematical model based on statistical mechanics model was developed and the simulation results supported the hypothesis that the tetramer of the CarH domain in mammalian cells was the reason for the cooperative capacity of RpaR-CarH-VTR3. | Xinmao Chen Ziming Liu Chunbo Lou Ying Guan Qi Ouyang Yanhui Xiang | 2023 | Synthetic and Systems Biotechnology2023,8,1: | 0 |
| 10 | Corrigendum to“Improving cooperativity of transcription activators by oligomerization domains in mammalian cells”[Synth Syst Biotechnol 8(1)(2023)114-120]显示文摘The authors regret that following the publication of the original article,the authors noticed that Funds in Acknowledgements section was incorrect,in which a fund(No.2020YFA0906903)supporting most of experimental results of Dr.Xinmao Chen was missed by us.We sincerely apologize again for the oversight and appreciate your understanding in allowing us to correct this matter. | Xinmao Chen Ziming Liu Chunbo Lou Ying Guan Qi Ouyang Yanhui Xiang | 2023 | Synthetic and Systems Biotechnology2023,8,4: | 0 |
| 11 | 冷却液储液罐泄漏自动诊断试验系统显示文摘提出一种汽车发动机冷却液储液罐试验系统的设计方案.采用减压阀和节流阀实现系统压力和流量控制,采用电磁阀实现各个支路的通断控制,可以对多个试验件同时进行试验.根据系统的压力的变化情况实现了试验件泄漏的自动诊断,采用计算机监控整个试验过程,不仅提高了试验精度,而且大大降低了操作人员的劳动强度. | 高启明 李传江 张自强 Tom Ziming Qi | 2008 | 机械与电子2008,26,4: | 0 |