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| 1 | Sox2 expression defines a heterogeneous population of neurosphere‐forming cells in the adult murine brain显示文摘 | Christine Y.Brazel Tobi L.Limke Jihan K.Osborne TakumiMiura JingliCai LarysaPevny Mahendra S.Rao | 2005 | Aging Cell2005,,4: | 1 |
| 2 | Intrahepatic biliary cystadenoma:role of cyst fluid analysis and surgical management in the laparoscopic era显示文摘 | A.Koffron S.Rao M.Ferrario | | 0,,04: | 1 |
| 3 | Approximate self consistency for middle-censored data显示文摘 | S.Rao Jammalamadaka Srikanth K.Iyer | | 0,,: | 1 |
| 4 | Analysis of middle-censored data with exponential lifetime distributions显示文摘 | Srikanth K.Iyer S.Rao Jammalamadaka Debasis Kundu | | 0,,: | 1 |
| 5 | Membrane properties of rat embryonic multipotent neural stem cells显示文摘 | JingliCai AiwuCheng YongquanLuo ChengbiaoLu Mark P.Mattson Mahendra S.Rao KatsutoshiFurukawa | 2003 | Journal of Neurochemistry2003,,1: | 1 |
| 6 | Human Umbilical Cord Matrix Stem Cells: Preliminary Characterization and Effect of Transplantation in a Rodent Model of Parkinson’s Disease显示文摘 | Mark L.Weiss SatishMedicetty Amber R.Bledsoe Raja ShekarRachakatla MichaelChoi ShoshMerchav YongquanLuo Mahendra S.Rao GopalraoVelagaleti DerylTroyer | 2009 | STEM CELLS2009,,3: | 1 |
| 7 | Review article: metoclopramide and tardive dyskinesia显示文摘 | A. S.RAO M.CAMILLERI | 2009 | Alimentary Pharmacology & Therapeutics2009,,1: | 1 |
| 8 | Demand and Production Management with Uniform Guaranteed Lead Time显示文摘 | Uday S.Rao Jayashankar M.Swaminathan JunZhang | 2009 | Production and Operations Management2009,,4: | 1 |
| 9 | 搅拌铸造金红石增强AA6061基复合材料的显微组织和力学性能(英文)显示文摘采用一种新型的双级搅拌铸造法制备铝基复合材料(AMCs)。将不同质量分数的金红石颗粒(1%,2%,3%和4%)分散于AA6061基体中,研究复合材料的密度、抗拉强度、硬度和显微组织。双级搅拌铸造法使金红石颗粒均匀分布于AA6061基体中,AMCs的性能相较于母材得到提高。与未增强的母材相比,金红石增强的AMCs具有较高的抗拉强度和硬度,且增强效果随金红石颗粒含量的增加而增加。然而,当金红石颗粒质量分数超过3%时,样品的抗拉强度降低。与母材相比,3%金红石颗粒增强的AMCs的硬度和抗拉强度分别提高了36%和14%。 | Subramanya R.PRABHU Arun K.SHETTIGAR Mervin A.HERBERT Shrikantha S.RAO | 2019 | Transactions of Nonferrous Metals Society of China2019,29,11: | 1 |
| 10 | CEO DUALITY AND FIRM PERFORMANCE: WHAT’S THE FUSS?显示文摘 | B. RAMBALIGA R. CHARLESMOYER RAMESH S.RAO | 1998 | Strat Mgmt J1998,,1: | 1 |
| 11 | Altered cytokeratin expression during chemoprevention of experimental hamster buccal pouch carcinogenesis by garlic显示文摘 | S.Balasenthil K. S.Rao S.Nagini | 2002 | Journal of Oral Pathology & Medicine2002,,3: | 1 |
| 12 | Drivers and inhibitors to XBRL adoption:A qualitative approach to build a theory in under-researched areas显示文摘 | Troshani I S.Rao | | 0,,04: | 1 |
| 13 | Human Umbilical Cord Matrix Stem Cells: Preliminary Characterization and Effect of Transplantation in a Rodent Model of Parkinson’s Disease显示文摘 | Mark L.Weiss SatishMedicetty Amber R.Bledsoe Raja ShekarRachakatla MichaelChoi ShoshMerchav YongquanLuo Mahendra S.Rao GopalraoVelagaleti DerylTroyer | 2009 | STEM CELLS2009,,3: | 1 |
| 14 | Efficient Investment in Children显示文摘 | S.Rao Aiyagari Jeremy Greenwood Ananth Seshadri | 2001 | Journal of Economic Theory2001,,2: | 1 |
| 15 | Steam as coolant and lubricant in turning of metal matrix composites显示文摘Green cutting has become focus of attention in ecological and environmental protection. Steam is cheap, pollu-tion-free and eco-friendly, and then is a good and economical coolant and lubricant. Steam generator and steam feeding system were developed to generate and feed steam. Comparative experiments were carried out in cutting AA6061-15 vol.% SiC (25 μm particle size), with cubic boron nitride (CBN) insert KB-90 grade under the conditions of compressed air, oil water emulsion, steam as coolant and lubricant, and dry cutting, respectively. The experimental results show that, with steam as coolant and lu-bricant, gradual reduction in the cutting force, friction coefficient, surface roughness and cutting temperature values were observed. Further, there was reduction in built up edge formation. It is proved that use of water steam as coolant and lubricant is environ-mentally friendly. | Raviraj SHETTY Raghuvir PAI Vasanth KAMATH Shrikanth S.RAO | 2008 | Journal of Zhejiang University-Science A(Applied Physics & Engineering)2008,9,9: | 0 |
| 16 | Machine learning for automated experimentation in scanning transmission electron microscopy显示文摘Machine learning(ML)has become critical for post-acquisition data analysis in(scanning)transmission electron microscopy,(S)TEM,imaging and spectroscopy.An emerging trend is the transition to real-time analysis and closed-loop microscope operation.The effective use of ML in electron microscopy now requires the development of strategies for microscopy-centric experiment workflow design and optimization.Here,we discuss the associated challenges with the transition to active ML,including sequential data analysis and out-of-distribution drift effects,the requirements for edge operation,local and cloud data storage,and theory in the loop operations.Specifically,we discuss the relative contributions of human scientists and ML agents in the ideation,orchestration,and execution of experimental workflows,as well as the need to develop universal hyper languages that can apply across multiple platforms.These considerations will collectively inform the operationalization of ML in next-generation experimentation. | Sergei V.Kalinin Debangshu Mukherjee Kevin Roccapriore Benjamin J.Blaiszik Ayana Ghosh Maxim A.Ziatdinov Anees Al-Najjar Christina Doty Sarah Akers Nageswara S.Rao Joshua C.Agar Steven R.Spurgeon | 2023 | npj Computational Materials2023,,1: | 0 |