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    Mathematical Modeling of Biological Processes / by Friedman, Avner, Kao, Chiu-Yen

    Published 2014
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    Real world data on outcomes of anti-CD38 antibody treated, including triple class refractory, patients with multiple myeloma: a multi-institutional report from the Canadian Myeloma Research Group (CMRG) Database by A. Visram, A. De La Torre, D. White, J. Su, E. Masih-Khan, M. Chu, V. Jimenez-Zepeda, A. McCurdy, R. LeBlanc, K. Song, H. Mian, M. Louzada, M. Sebag, D. Bergstrom, J. Stakiw, A. Reiman, R. Kotb, M. Aslam, C. Venner, R. Kaedbey, E. Gul, D. Reece

    Published 2023-12-01
    “…This multi-center retrospective cohort study used the Canadian Myeloma Research Group Database to describe real-world outcomes of patients withanti-CD38 monoclonal antibody (mAb) refractory MM subsequently treated with standard of care (SoC) regimens. Patients with triple class refractory (TCR) disease (refractory to a proteasome inhibitor, immunomodulatory drug, and anti-CD38 mAb) were examined as a distinct cohort. …”
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  8. 3048

    Ranakinestatin-PPF from the Skin Secretion of the Fukien Gold-Striped Pond Frog, Pelophylax plancyi fukienensis: A Prototype of a Novel Class of Bradykinin B2 Receptor Antagonist Peptide from Ranid Frogs by Jie Ma, Yu Luo, Lilin Ge, Lei Wang, Mei Zhou, Yingqi Zhang, Jinao Duan, Tianbao Chen, Chris Shaw

    Published 2014-01-01
    “…Here, we describe the identification, structural and functional characterization of a heptadecapeptide (DYTIRTRLHQGLSRKIV), named ranakinestatin-PPF, from the skin of the Chinese ranid frog, Pelophylax plancyi fukienensis, representing a prototype of a novel class of bradykinin B2-receptor specific antagonist. …”
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    BER performance analysis of polar-coded FBMC/OQAM in the presence of AWGN and Nakagami-m fading channel by Tadele A. Abose, Fanuel O. Ayana, Thomas O. Olwal, Yihenew W. Marye

    Published 2024-06-01
    “…It offers several advantages over traditional orthogonal frequency-division multiplexing (OFDM) modulation, including higher spectral efficiency, lower out-of-band emission, and improved robustness to time-frequency selective channels. Polar codes, a new class of error-correcting codes, have received much attention recently due to their ability to achieve the Shannon limit with practical decoding complexity. …”
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