44,818 research outputs found

    [W. Y. Wong to Charles M. Burrowes, 1923.3.19]

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    [W. Y. Wong to consular or immigration officials, 1923.8.18]

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    Absolute rate constants for the reactions of some arylchlorocarbenes with acetic acid

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    PT: J; CR: CLOSS GL, 1968, TOP STEREOCHEM, V3, P193 CLOSS GL, 1976, J AM CHEM SOC, V98, P8190 EISENTHAL KB, 1980, J AM CHEM SOC, V102, P6563 GRAHAM WH, 1965, J AM CHEM SOC, V87, P4396 GRILLER D, 1982, J AM CHEM SOC, V104, P5549 HADEL LM, UNPUB CHEM PHYS LETT KIRMSE W, 1971, CARBENE CHEM, CH7 LIU MTH, 1972, CAN J CHEM, V50, P3009 NAGAI Y, 1962, B CHEM SOC JPN, V35, P132 SCAIANO JC, 1980, J AM CHEM SOC, V102, P7747 TURRO NJ, 1980, J AM CHEM SOC, V102, P7576 WONG PC, 1981, CHEM PHYS LETT, V83, P69 WONG PC, 1981, J AM CHEM SOC, V103, P5934 WONG PC, 1982, J AM CHEM SOC, V104, P5106 ZUPANCIC JJ, 1980, J AM CHEM SOC, V102, P5958 ZUPANCIC JJ, 1981, J AM CHEM SOC, V103, P2423 ZUPANCIC JJ, 1981, J AM CHEM SOC, V103, P944; NR: 17; TC: 17; J9: J ORG CHEM; PG: 2; GA: QM675Source type: Electronic(1

    Rhynchopyle loi S. Y. Wong & P. C. Boyce

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    Rhynchopyle loi (P.C.Boyce & S.Y.Wong) S.Y.Wong & P.C.Boyce Figure 6A Material examined. MALAYSIA – Tawau • Tawau Hills Park, trail to Bukit Gelas; 04°23′59″N, 117°53′21″E; 25 November 1998; J. T. Pereira 551 (SAN) • Tawau, Tawau Hills Park, Bukit Gelas Waterfall; 04°23′00″N, 117°53′00″E; 30 June 2006; Julia S. SAN 147860 (SAN) • Tawau River Forest Reserve; [04°24′40″N, 117°53′28″E]; 33 m (100 ft.) elev.; 6 July 1959; W. Meijer SAN 19468 (L). Identification. Flowering Rhynchopyle loi most closely resembles R. pileata (S.Y.Wong & P.C.Boyce) S.Y.Wong & P.C.Boyce by the deep magenta-purple strongly rostrate spathe limb. However, R. loi is readily differentiated by the spathe basally with a prominent ventral mentum, by the larger, centrally impressed interstice staminodes held in a zone wider than the remainder of the spadix, the stamens irregularly arranged (not carried in two rows), and the proportion- ately longer staminate flower zone. The leaves of R. loi are only ca. half as long as those of R. pileata, and much narrower; the entire plant is seldom exceeding 15 cm (Boyce and Wong 2013b). Distribution and ecology. Endemic to Sabah. Growing on bare or moss-covered basalt waterfall rocks under perhumid lowland forest; between 200 and 300 m elevation. Typically inhabits the steep banks of muddy, meandering lowland streams and, less frequently, the floor of lowlying forest where it may be inundated in wet periods.Published as part of Wong, Sin Yeng & Joling, Jyloerica, 2021, Checklist of aroids (Alismatales, Araceae) from Sabah (Malaysian Borneo), pp. 931-974 in Check List 17 (3) on page 961, DOI: 10.15560/17.3.93

    Supplemental_Table_9-27-16 – Supplemental material for Resilience Style Questionnaire: Development and Validation Among College Students and Cardiac Patients in Hong Kong

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    Supplemental material, Supplemental_Table_9-27-16 for Resilience Style Questionnaire: Development and Validation Among College Students and Cardiac Patients in Hong Kong by Winnie W. S. Mak, Ivy S. W. Ng, Celia C. Y. Wong and Rita W. Law in Assessment</p

    Homeostatic control of dendritic cell numbers and differentiation

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    Dendritic cells (DCs) are a diverse family of cells that play a crucial role in linking our innate and adaptive immune system to initiate adequate T-cell responses. They respond to pathogens by triggering the appropriate adaptive immune response that is required to clear invaders while balancing the need to limit tissue damage as a result of inflammation. Perturbation in DC regulation results in abnormal T-cell homeostasis, leading to development of autoimmune diseases and aberrant responses to pathogens. In recent years, it has become clear that the DC family is more complex than initially thought in terms of their identification, homeostasis and functions. In this review, we discuss recent findings that improve our understanding of development, and functional specializations of conventional and plasmacytoid DCs
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