يعرض 1 - 20 نتائج من 37 نتيجة بحث عن '"Ho,Chia-Wei"', وقت الاستعلام: 0.58s تنقيح النتائج
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    Dissertation/ Thesis
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    Dissertation/ Thesis
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    Academic Journal
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    Conference

    المساهمون: Ministry of Science and Technology

    المصدر: 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS)

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    Conference

    المساهمون: Ministry of Science and Technology

    المصدر: 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS)

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    Academic Journal
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    Patent
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    Academic Journal
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    Academic Journal
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    Academic Journal
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    Academic Journal
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    Academic Journal

    المؤلفون: 何家瑋, Ho, Chia-Wei

    المساهمون: 董桂書, 臺灣大學:分子與細胞生物學研究所

    Relation: Bailis, J.M., and Roeder, G.S. (1998) Synaptonemal complex morphogenesis and sister-chromatid cohesion require Mek1-dependent phosphorylation of a meiotic chromosomal protein. Genes Dev. 12, 3551-3563. Bartels, D.J., Mitchell, D.A., Dong, X.W., Deschenes, R.J. (1999) Erf2, a Novel Gene Product That Affects the Localization and Palmitoylation of Ras2 in Saccharomyces cerevisiae. Mol. Cell. Biol. 19, 6775-87. Benjamin, K.R., Zhang, C., Shokat, K.M. and Herskowitz, I. (2003) Control of landmark events in meiosis by the CKD Cdc28 nad the meiosis-specific kinase Ine2. Genes Dev. 17, 1524-1539 Bishop, D.K., Park, D., Xu, L.Z. and Kleckner, N. (1992) DMC1: a meiosis-specific yeast homolog of E. coli recA required for recombination, synaptonemal complex formation, and cell cycle progression. Cell 69, 429-456. Breeden, L. and Nasmyth, K. (1987) Similarity between cell-cycle genes of budding yeast and fission yeast and the Notch gene of Drosophila. Nature, 329, 651-654. Chang, C.Y. (2005) The control mechanisms of Ndt80 activity by the pachytene checkpoint. National Taiwan University, Taiwan. Chu, S. and Herskowitz, I. (1998) Gametogenesis in yeast is regulated by a transcriptional cascade dependent on Ndt80. Mol. Cell 1, 685-696. Chu, S., Derisi, J., Eisen, M., Mulholland, J., Botstein, D., Brown P.O. and Herskowitz, I. (1998) The transcriptional program of sporulation in budding yeast. Science, 282, 699-705. Dohlman, H.G. and Thorner, J.W. (2001) Regulation of G protein-initiated signal transduction in yeast: Paradigms and Principles. Annu. Rev. Biochem. 70, 703-54 Enyenihi, A.H. and Saunders (2003) Large-scale functional genomic analysis of sporulation and meiosis in Saccharomyces cerevisiae. Genetics, 163, 47-54 Hepworth, S.R., Rriesen, H. and Segall, J. (1998) NDT80 and the meiotic recombination checkpoint regulate expression of middle sporulation-specific genes. Mol.Cell. Biol. 18, 5750-5761. Hill, C.S. and Treisman, R. (1995) Transcriptional regulation by extracellular signals: Mechanisms and Specificity. Cell, 80, 199-211. Ito, H., Fukada, Y., Murata, K. and Kimura, A. (1983) Transformation of intact yeast cells treated with alkali cation. J. Bacteriol. 153,163-168 James, P., Halladay, J. and Craig, E.A. (1996) Genomic libraries and a host strain designed for highly efficient two-hybrid selection in yeast. Genetics, 144, 1425–1436 Leu, J.Y., Chua, P.R., and Roeder, G.S. (1998) The Meiosis-Specific Hop2 Protein of S. cerevisiae Ensures Synapsis between Homologous Chromosomes. Cell, 94, 375-386. Leu, J.Y. and Roeder, G.S. (1999) The pachytene checkpoint in S. cerevisiae depends on Swe1-mediated phosphorylation of the cyclin-dependent kinase Cdc28. Mol Cell. 4, 805-14. Li, Z., Golub, E.I., Gupta,R. and Radding, C.M. (1997) Recombination activities of HsDmc1 protein, the meiotic human homolog of RecA protein. Proc. Natl. Acad. Sci. USA 94, 11221–11226. Liela, K.M., Tobin, J.C., Daniel, C.D., and Peng, Z. (2004) The ankyrin repeat as molecular architecture for protein recognition. Protein Science, 13, 1435-1448. Lindgren, A., Bungard, D., Poerce, M., Xie, J., Vershon ,A. and Winter, E. (2000) The pachytene checkpoint in Saccharomyces cerevisiae requires the Sum1 transcriptional repressor. EMBO J. 19, p6489-6497. Lobo, S., Greentree, W.K., Linder, M.E. and Deschenes, R.J. (2002) Identification of a Ras Palmitoyltransferase in Saccharomyces cerevisiae. J. Biol. Chem. 277, 41268-73 Lux, S.E., John, K.M., and Bennett, V. (1990) Analysis of cDNA for human differentiation and cell-cycle control proteins. Nature, 344, 36-42 Lydall, D., Nikolsky, Y. Bishop, D.K. and T. Weinert. (1996) A meiotic recombination checkpoint controlled by mitotic checkpoint genes. Nature(London), 383, 840-841. Masson, J.Y., Davies, A.A., Hajibagheri, N., Van Dyck, E., Benson, F.E., Stasiak, A.Z., Stasiak, A. and West, S.C.(1999) The meiosis-specific recombinase hDmc1 forms ring structures and interacts with hRad51. EMBO J. 18, 6552–6560. Masson, J.Y. and West, S.C.(2001). The Rad51 and Dmc1 recombinases: a non-identical twin relationship. Trends Biochem. Sci. 26, 131–136. Michaely, P., and Bennett, V. (1992) The ankyrin repeats: an ubiquitous motif involved in macromolecular recognition. Trends Cell Biol. 2, 127-129. Montano, S.P., Cote, M.L., Fingerman, I., Pierce, M., Vershon A.K., and Georgiadis, M.M. (2002a) Crystal structure of the DNA-binding domain from Ndt80, a transcriptional activator required for meiosis in yeast. Proc. Natl. Acad. Sci. USA. 99, 14041-14046 Montano, S.P., Pierce, M., Cote, M.L., Vershon, A.K., and Georgiadis, M.M. (2002b). Crystallographic studies of a novel DNA-binding domain from the yeast transcriptional activator Ndt80. Acta Crystallogr. D Bio. Crystallogr. 58. 2127-2130. Pak, J., and Segall, J. (2002a). Regulation of the premiddle and middle phase of expression of the NDT80 gne during sporulation of Saccharomyces cerevisiae. Mol. Cell Biol. 22, 6417-6429 Pierce, M., Benjamin, K.R., Montano, S.P., Georgiadis, M.M., Winter E., Vershon A.K. (2003) Sum1 and Ndt80 proteins compete for binding to middle sporulation element sequences that control meiotic gene expression. Mol. Cell. Bio. 22, 4814-4825 Putilina, T., Wong, P., and Gentleman, S. (1999) The DHHC domain: A new highly conserved cysteine-rich motif. Mol. Cell. Biochemistry, 195, 219-226. Roeder, G.S. (1997). Meiotic chromosomes: it takes two to tango. Genes Dev. 11, 2600-2621. Roeder, G.S., and Julie, M.B. (2000) The pachytene checkpoint. Trends in Genetics 16, 395-403. de los Santos, T., and Hollingsworth, N.M. (1999) Red1p, a MEK1-dependent phosphoprotein that physically interacts with Hop1p during meiosis in yeast. J. Biol. Chem. 274, 1738-1790. Sambrook, J., Russell, D. W. (2001) Molecular cloning. 3rd ed. Cold Spring Harbor Laboratory, New York. Sedgwick, S.G., and Smerdon, S.J. (1999) The ankyrin repeat: a diversity of interactions on a common structural framework. Trends in Biochemical Sciences, 24, 311-316. Sherman, F., Fink, G.R., and Hicks, J.B. (1986) Methods in Yeast genetics: a Laboratory Manual ( Cold Spring Harbor, New York: Cold Spring Harbor Laboratory Press). Shonn, M.A., McCarroll, R., Murray, A.W. (2000) Requirement of the Spindle Checkpoint for Proper Chromosome Segregation in Budding Yeast Meiosis. Science 289, 300-303. Sopko R., Raithatha, S., and Stuart, D. (2002) Phosphorylation and maximal activity of Saccharomyces cerevisiae meiosis-specific transcription factor Ndt80 is dependent on Ime2. Mol. Cell Biol. 22, 7024-7040 Stuart, D. and Wittenberg, C. (1998) CLB5 and CLB6 are required for premeiotic DNA replication andactivation of the meiotic S/M checkpoint. Genes Dev. 12, 2698-2710. Sym, M., Engebrecht, J.A., Roeder, G.S. (1993) ZIP1 is a synaptonemal complex protein required for meiotic chromosome synapsis. Cell 94, 375-386. Tung, K.S., Hong, E.J., and Roder, G.S. (2000) The pachytene checkpoint prevents accumulation and phosphorylation of the meiosis-specific transcription factor Ndt80. Proc. Natl. Acad. Sci. USA 97, 12187-12192 Thompson, J.E., Phillips, R.J., Erdjument-Bromage, H., Tempst, P., and Ghosh, S. (1995). IκB-β regulates the persistent response in a biphasic activation of NF-κB. Cell 80, 573-582. Vershon, A.K., and Pierce, M. (2000) Transcriptional regulation of meiosis in yeast. Curr. Opin. Cell Biol. 12, 334-339. Viatour, P., Merville, M.P., Bours, V. and Chariot, A. (2005) Phosphorylation of NF-kB and IkB proteins: implications in cancer and inflammation. Trends in Biomedical science, 30, 43-53. Vogt, P.K. (2001) Jun, the oncoprotein. Oncogene, 20, 2365-2377. Wang, Y. (2003) Analysis of yeast meiosis-specific transcription factor mutant, NDT80-bc. Master Thesis. National Taiwan University, Taiwan Weiss, C. and Bohmann, D. (2004) Deregulated repression of c-Jun provides a potential links to its role in tumorigenesis. Cell cycle 3:2, 111-113 Xie, J., Pierce M., Gailus-Durner, V., Wagner, M., Winter, E. and Vershon, A.K. (1999) Sum1 and Hst1 repress middle sporulation-specific gene expression during mitosis in Saccharomyces cerevisiae. EMBO J. 18, 6448-6454 Xu L., Ajimura, M., Padmore, R., Klein, C., and Kleckner, N. (1995) NDT80, a meiosis-specific gene required for exit from pachytene in Saccharomyces cerevisiae. Mol. Cell Biol. 15, 6572-6581.; en-US; http://ntur.lib.ntu.edu.tw/handle/246246/49917

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    Academic Journal

    المؤلفون: Chen, Chun-Tao, Ho, Chia-Wei1

    المصدر: Journal of Materials in Civil Engineering. Dec2013, Vol. 25 Issue 12, p1929-1935. 7p. 4 Charts, 7 Graphs.

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    Academic Journal

    المؤلفون: Chen, Chun-Tao, Ho, Chia-Wei

    المصدر: Journal of Materials in Civil Engineering; Dec2012, Vol. 25 Issue 12, p1929-1935, 7p

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    Academic Journal

    المؤلفون: Lin, Chih-Hsueh1 (AUTHOR) cslin@nkust.edu.tw, Ho, Chia-Wei1,2 (AUTHOR) david80117@mail.mirdc.org.tw, Hu, Guo-Hsin1,2 (AUTHOR) guohsin@mail.mirdc.org.tw, Sreeramaneni, Baswanth3 (AUTHOR) baswanth101@gmail.com, Yan, Jun-Juh3 (AUTHOR) jjyan@ncut.edu.tw

    المصدر: Mathematics (2227-7390). Nov2021, Vol. 9 Issue 21, p2658. 1p.

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    Dissertation/ Thesis

    المؤلفون: 何家維, Ho, Chia-Wei

    المساهمون: 沈弘俊, 臺灣大學:應用力學研究所

    Relation: Deshmukh, A. A., Liepmann, D., & Pisano, A. P., “Continuous Micromixer with Pulsatile Micropumps”, Berkeley Sensor and Actuator Center. Deshmukh, A. A., Liepmann, D., & Pisano, A. P., “Characterization of a Micro-mixing, Pumping, and Valving System”, Berkeley Sensor and Actuator Center. Gerlach, T., “Microdiffuser as dynamic passive valve for micropump applications”, Sensors and Actuators A., Vol. 69, pp. 181-191, 1998. Glasgow, I., & Aubry, N., “Enhancement of Microfluidic Mixing Using Time Pulsing”, Lab Chip, 3, 114-120, 2003. Glasgow, I., & Aubry N., “Pulsed Flow Mixing for BioMEMS Applications”, 7th International Conference on Miniaturized Chemical and Biochemical Analysis Systems, 2003. Glsgow, I., Lieber, S., & Aubry, N, “Parameters Influenced Pulsed Flow Mixing in Microchannels”, Analytical Chemistry, Vol. 76, No. 16, August 15, 2004. Glasgow, I., Goullet, A., & Aubry, N., “Dynamics of Microfluidic Mixing Using Time Pulsing”, Discrete and Continuous Dynamical Systems, pp. 327-336, 2005. Hessel, V., Löwe, H., & Schönfeld, F., “Micromixers – A Review on Passive and Active Mixing Principles”, Chemical Engineering Science 60, 2479-2501, 2005. Lee Y. K., Tabeling, P., Shih, C., & Ho, C. M., “Characterization of a MEMS-fabricated Mixing Device”, 2000ASME International Mechanical Engineering Congress & Exposition Orlando, pp. 505-511, 2000. Nguyen, N. T., & Wu, Z., “Micromixers – A Review”, Journal of Micromechanics and Microengineering, 15, R1-R16, 2005. Olsson, A., Enoksson, P., Stemme, G. & Stemme, E., “A valve-less planar pump isotropically etched in silicon ”, Journal of Micromechanics and Microengineering, Vol. 6, pp. 87-91, 1996. Olsson, A., Enoksson, P., Stemme, G. & Stemme, E., “Micromachined flat-walled valv-eless diffuser pumps”, Journal of microelectromechanical systems, Vol. 6, No. 2, June, pp. 161-166 , 1997. Olsson, A., Larsson, O., Holm, J., Lundbladh, L., Ohman, O. & Stemme, G., “valve-less diffuser micropumps fabricated using thermoplastic replication”, Sensors and Actuators A., Vol. 64, pp. 63-68, 1998. Olsson, A., Stemme, G. & Stemme, E., “A valve-less planar fluid pump with two pump chambers”, Sensors and Actuators A., Vol. 46, pp. 549-556, 1995. Olsson, A., Stemme, G. & Stemme, E., “Diffuser-element design investigation for valve-less pumps”, Sensors and Actuators A., vol. 57, pp. 137-143, 1996. Olsson, A.,”Valve-less Diffuser Pumps for Liquids” Thesis, Royal Institute of Technology, Stockholm, Sweden, 1996 Stemme, E., & Stemme, G., “A Valveless Diffuser/Nozzle-based Fluid Pump”, Sensors and Actuators A, 39 159-167, 1993. Truesdell, R. A., Vorobieff, P. V., Sklar, L. A., & Mammoli, A. A., “Mixing of a Continuous Flow of Two Fluids due to Unsteady Flow”, Physical Review E 67, 066304, 2003. Truesdell, R. A., Bartsch, J. W., & Buranda, T., “Direct Measurement of Mixing Quality in a Pulsatile Flow Micromixer”, Experiments in Fluids, 39: 819-827, 2005. 張志誠, “微機電技術”, 商周出版, 2002. 楊政穎, 林俊達, & 李雨, “A Valve-less Micro-pump based on Asymmetric Obstacles”, 第七屆奈米工程暨微系統技術研討會論文集, pp. 330-333, 台灣大學, Nov. 20-21, 2003. 凃智凱, “新式無閥門微幫浦”, 國立台灣大學應用力學研究所碩士論文, 2004. 吳咨亨, “無閥門壓電微幫浦與微混合器之整合設計”, 國立台灣大學應用力學研究所碩士論文, 2005. 朱信彰, “利用非穩態流場特性開發微粒子分離器之研究”, 國立台灣大學應用力學研究所碩士論文, 2006. 蔡政村, “無閥門微幫浦及脈衝流場混合器的數值研究”, 國立台灣大學應用力學研究所碩士論文, 2006. 吳錦榮. “利用脈衝調頻染料雷射研究單分子光譜學”, 國立中山大學化學研究所碩士論文, 2001. 周卓明, 壓電力學, 全華科技圖書, 民國九十二年十一月初版, ISBN 957-21-4240-2平裝。; zh-TW; http://ntur.lib.ntu.edu.tw/handle/246246/62457

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    Dissertation/ Thesis
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    Dissertation/ Thesis