Showing 261 - 280 results of 48,816 for search '"M', query time: 0.14s Refine Results
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    (m,λ)-Berezin Transform on the Weighted Bergman Spaces over the Polydisk by Ran Li, Yufeng Lu

    Published 2016-01-01
    “…The main tool here is the so-called (m,λ)-Berezin transform. In particular, our results generalized the results of K. …”
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  3. 263

    The Fate of the Tumor in the Hands of Microenvironment: Role of TAMs and mTOR Pathway by Danilo Figueiredo Soave, Marina Pacheco Miguel, Fernanda Dias Tomé, Liliana Borges de Menezes, Patrícia Resende Alo Nagib, Mara Rúbia Nunes Celes

    Published 2016-01-01
    “…In the present review we discuss the role of macrophages in the tumor microenvironment and the role of mTOR pathway in M1 and M2 differentiation. We also discuss the recent findings in M1 and M2 polarization as a possible target in the cancer therapy.…”
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  4. 264

    Improved QRD-M Detection Algorithm for Generalized Spatial Modulation Scheme by Xiaorong Jing, Mingyue Wang, Wei Zhou, Hongqing Liu

    Published 2017-01-01
    “…It will lead to imperfect detection performance with relatively high computational complexity by directly applying the original QR-decomposition with M algorithm (QRD-M) to the GSM scheme. In this paper an improved QRD-M algorithm is proposed for GSM signal detection, which achieves near-optimal performance but with relatively low complexity. …”
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    Regulation of IL-33 by Oncostatin M in Mouse Lung Epithelial Cells by Carl D. Richards, Laura Izakelian, Anisha Dubey, Grace Zhang, Steven Wong, Karen Kwofie, Aatif Qureshi, Fernando Botelho

    Published 2016-01-01
    “…Although IL-33 expression can be altered upon NF-Kappa B activation, here we examine regulation by Oncostatin M, a gp130 cytokine family member, in mouse lung tissue. …”
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    The Block Principal Pivoting Algorithm for the Linear Complementarity Problem with an M-Matrix by Xi-Ming Fang, Zhi-Jun Qiao, Heng-Jun Zhao

    Published 2019-01-01
    “…In this paper, relying on the characteristic of block principal pivotal transformations, a block principal pivoting algorithm is proposed for solving the linear complementarity problem with an M-matrix. By this algorithm, the linear complementarity problem can be solved in some block principal pivotal transformations. …”
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    Caputo Fractional Derivative Hadamard Inequalities for Strongly m-Convex Functions by Xue Feng, Baolin Feng, Ghulam Farid, Sidra Bibi, Qi Xiaoyan, Ze Wu

    Published 2021-01-01
    “…In this paper, two versions of the Hadamard inequality are obtained by using Caputo fractional derivatives and strongly m-convex functions. The established results will provide refinements of well-known Caputo fractional derivative Hadamard inequalities for m-convex and convex functions. …”
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  13. 273

    On the boundedness and oscillation of solutions to (m(t)x′)′+a(t)b(x)=0 by Allan J. Kroopnick

    Published 1987-01-01
    “…In this paper, we discuss under what conditions the solutions to (m(t)x′)′+a(t)b(x)=0 are bounded, oscillatory, and stable. …”
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  14. 274
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    Profile of Glaucoma at The Dr.M.Djamil Hospital Padang, West Sumatera by Andrini Ariesti, Diska Herriadi

    Published 2018-04-01
    “…Objektif: Untuk menggambarkan distribusi glaukoma di RSUP DR. M. Djamil Padang pada tahun 2011-2012. Metode: Merupakan penelitian deskriptif. …”
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    A 20 m spatial resolution peatland extent map of Alaska by Mark J. Lara, Roger Michaelides, Duncan Anderson, Wenqu Chen, Emma C. Hall, Caroline Ludden, Aiden I. G. Schore, Umakant Mishra, Sarah N. Scott

    Published 2025-02-01
    “…Here we develop a new 20 m spatial resolution wall-to-wall ~1.5 million km2 peatland map of Alaska, using peat cores, ground observations, and sub-meter resolution image interpretation. …”
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    Article
  19. 279

    Irreducible Modular Representations of the Reflection Group G(m,1,n) by José O. Araujo, Tim Bratten, Cesar L. Maiarú

    Published 2015-01-01
    “…In this paper, we extend the geometric construction based on the ideas of Macdonald to realize the irreducible modular representations of the complex reflection group of type G(m,1,n).…”
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