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9篇 您的检索式:作者名="Agarwal Manish"
    题名 作者 年代 出处 被引量
1Genome-wide SNP Genotyping Resolves Signatures of Selection and Tetrasomic Recombination in Peanut显示文摘花生(Arachis hypogaea;2n = 4x = 40 ) 是滋养的食物和维生素,矿物质,和健康脂肪的好来源。扩大基因并且为栽培花生的基因改进的 genomic 资源从栽培花生的双祖先的定序的染色体获得了动量。便于 Arachis 种类的高产量的 genotyping, 20 遗传型被重新定序,染色体宽的单个核苷酸多型性(SNP ) 被选择开发一个大规模 SNP genotyping 数组。为在 genotyping 应用程序的灵活性,在 tetraploid 和双种类之间多态的 SNP 为使用被包括在栽培并且种间的人口。一套 384 就职被用来测试导致生产了在双种类之间的高质量的多态的簇的 54 564 个标记的数组, 47 116 个多态的标记在之间栽培并且种间的混血儿,和在 A 以内的 15 897 个多态的标记。hypogaea germplasm。一另外 1193 个标记被识别那照亮的 genomic 区域展出 tetrasomic 再结合。而且,完成美国跑步者 germplasm 的家谱的一套精英栽培变种是 genotyped 并且过去常识别经历了积极选择的 genomic 区域。这些观察在栽培花生在新基因差异的包括上提供关键卓见并且将通知发展高分辨率的印射的人口。由于它的效率,范围,和灵活性,最新发达的 SNP 数组将为在 Arachis 的进一步基因、引起的应用程序是很有用的。Josh Clevenger Ye Chu Carolina Chavarro Gaurav Agarwal David J. Bertioli Soraya C.M. LeaI-Bertioli Manish K. Pandey Justin Vaughn Brian Abernathy Noelle A. Barkley Ran Hovav Mark Burow Spurthi N. Nayak Annapurna Chitikineni Thomas G. Isleib C. Corley Holbrook Scott A. Jackson Rajeev K. Varshney Peggy Ozias-Akins 2017Molecular Plant2017,10,2:4
2Border collision bifurcations in a soft impact system 显示文摘Ma Yue Agarwal Manish Baneijee Soumitro 2006Physics Letters A2006,354,:1
3闪光对于减轻静脉置管痛的作用:一项前瞻性随机安慰剂对照研究显示文摘背景尽管静脉置管时的疼痛经常让人备受困扰,但通常都是在没有任何镇痛措施下进行静脉置管的。临床上曾尝试用一些药物和非药物方法来减轻静脉置管的疼痛,但结果各异。本研究拟评价一次闪光对于减轻静脉置管痛的效果。方法90例拟择期行腹腔镜胆囊切除术的ASAⅠ~Ⅱ级的成年患者(15~60岁),随机分为3组,每组30例,组1为对照组;组2为分散注意力组,即在非优势手的手背静脉进行置管前给患者照相而不使用闪光;组3为闪光组,静脉置管前照相并且使用闪光;在照相后立即使用18G的穿刺针进行静脉置管。结果每组均有2例患者首次静脉穿刺失败,在数据分析中即予以剔除,闪光组疼痛的发生率为50%(28例中14例发生),其他2组为100%(28例全部发生),通过视觉模拟评分评估的疼痛严重程度分散注意力组和闪光组显著低于对照组,而闪光组也显著低于分散注意力组。结论静脉置管前使用闪光是一种减轻疼痛的安全而简单有效的方法。Anil Agarwal GhanshvamYadav Devendra Gupta Manish Tandon Prabhat Kumar Singh Uttam Singh 吴志林(译) 2009麻醉与镇痛2009,,3:1
4Limb Salvage Surgery forOsteosarcoma : Effective Low - cost Treatment 显示文摘Agarwal Manish MS Anchan DNB 2007Clinical Ortho- paedics & Related Research2007,,459:1
5Limb salvage surgery for osteosarcoma 显示文摘Manish Agarwal Chetan Anchan Mandip Shah 2007Clin Orthopedic and Related Res2007,459,:1
6Rehabilitative Considerations for Dental Implants in the Diabetic Patient显示文摘Preeti Agarwal Katyayan Manish Katyayan Rupal J. Shah 2013The Journal of Indian Prosthodontic Society2013,,:1
7Use of a syringe as a drill sleeve for core decompression of the femoral head in osteonecrosis显示文摘Maher Al-Ausi Manish Agarwal Martyn Lovell 2007Acta Orthopaedica2007,,1:1
8Clonidine as an adjuvant to hyperbaric bupivacaine for spinal anesthesia in elderly patients undergoing lower limb orthopedic surgeries显示文摘Deepti Agarwal Manish Chopra Medha Mohta Ashok Sethi 2014Saudi Journal of Anaesthesia2014,,2:1
9Enhanced osseointegration of drug eluting nanotubular dental implants: An in vitro and in vivo study显示文摘Faster and predictable osseointegration is crucial for the success of dental implants, especially in patients with compromised local or systemic conditions. Despite various surface modifications on the commercially available Titanium (Ti) dental implants, the bioactivity of Ti is still low. Thus, to achieve both biological and therapeutic activity on titanium surfaces, surface modification techniques such as titanium nanotubes have been studied as nanotube surfaces can hold therapeutic drugs and molecules. The main aim of the present research work is to study the early osseointegration around the novel Simvastatin drug eluting nanotubular dental implant. In the present research, the titanium nanotubes were fabricated on the screw-shaped dental implant surface and the Simvastatin drug was loaded into the nanotubes using the ultrasonication dip method. In vitro and In vivo studies were carried out on the modified dental implants. In vitro cell culture study reported enhanced osteogenic activity on the drug-loaded nanotube surface implants. The in vivo animal studies were evaluated by micro-CT, histopathology, and reverse torque removal analysis methods. The test results showed faster osseointegration with the strong interface on the Simvastatin drug-loaded implant surface at 4 weeks of healing as compared to the control implants.Pankaj Chauhan Alok Srivastava Pooja Bhati Manish Chaturvedi Vinay Patil Sriram Kunnoth Nisha Kumari Vedpal Arya Madhur Pandya Mohit Agarwal Smiti Bhardwaj Farrukh Faraz Sanjay Chauhan Mahesh Verma Veena Koul Naresh Bhatnagar 2023Bioactive Materials2023,,10:0
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