يعرض 1 - 10 نتائج من 109 نتيجة بحث عن '"Cell Survival/radiation effects"', وقت الاستعلام: 1.12s تنقيح النتائج
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    دورية أكاديمية
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    دورية أكاديمية
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    دورية أكاديمية
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    رسالة جامعية

    المؤلفون: Chona Perea, Rafael Esteban

    المساهمون: Rodríguez, Josefa Antonia, Plazas, María Cristina, Rumbo, Génesis, Mejía, Vanessa, Pabón, Alexandra

    وصف الملف: 70 páginas; application/pdf

    العلاقة: Bireme; Faiz M Khan and John P Gibbons. Khan’s the physics of radiation therapy. Lippincott Williams & Wilkins, 2014.; CS Sureka and Christina Armpilia. Radiation biology for medical physicists. CRC Press, 2017.; Geoff Delaney, Susannah Jacob, Carolyn Featherstone, and Michael Barton. The role of radiotherapy in cancer treatment: estimating optimal utilization from a review of evidence-based clinical guidelines. Cancer: Interdisciplinary International Journal of the American Cancer Society, 104(6):1129–1137, 2005.; Paulo Nuno Martins. A brief history about radiotherapy. International Journal of Latest Research in Engineering and Technology (IJLRET), 4, 2018.; Bo Lindell. A history of radiation protection. Radiation protection dosimetry, 68(1- 2):83–95, 1996.; Elaine M Zeman. The history and radiobiology of hypofractionation. In Hypofractionated and Stereotactic Radiation Therapy, pages 1–31. Springer, 2018.; Stephen Joseph McMahon. The linear quadratic model: usage, interpretation and challenges. Physics in Medicine & Biology, 64(1):01TR01, 2018.; David G Kirsch, Max Diehn, Aparna H Kesarwala, Amit Maity, Meredith A Morgan, Julie K Schwarz, Robert Bristow, Sandra Demaria, Iris Eke, Robert J Griffin, et al. The future of radiobiology. JNCI: Journal of the National Cancer Institute, 110(4):329–340, 2018.; Jing Hao, Anthony Magnelli, Andrew Godley, and Jennifer S Yu. Use of a linear accelerator for conducting in vitro radiobiology experiments. Journal of visualized experiments: JoVE, (147), 2019.; Brita Singers Sørensen, Anne Vestergaard, Jens Overgaard, and Lars Hjorth Præstegaard. Dependence of cell survival on instantaneous dose rate of a linear accelerator. Radiotherapy and Oncology, 101(1):223–225, 2011.; Paulo Alejandro Quintero Mej´ıa. Estudio in vitro de la supervivencia en c´elulas tumorales irradiadas con un acelerador lineal de uso cl´ınico. Departamento de F´ısica.; United Nations Scientific Committee on the Effects of Atomic Radiation et al. Sources, effects and risks of ionizing radiation. 1988.; Pedro Andreo, David T Burns, Alan E Nahum, Jan Seuntjens, and Frank Herbert Attix. Fundamentals of ionizing radiation dosimetry. John Wiley & Sons, 2017.; Ervin B Podgorˇsak et al. Radiation physics for medical physicists, volume 1. Springer, 2006.; Meenakshi Arora. Cell culture media: a review. Mater methods, 3(175):24, 2013.; R Ian Freshney. Culture of animal cells: a manual of basic technique and specialized applications. John Wiley & Sons, 2015.; Donald F Swinehart. The beer-lambert law. Journal of chemical education, 39(7):333, 1962.; Robert W Ricci, Mauri Ditzler, and Lisa P Nestor. Discovering the beer-lambert law. Journal of chemical Education, 71(11):983, 1994.; Mesoionic compounds are defined by IUPAC. as “dipolar five-(possibly six-) membered heterocyclic compounds in which both the negative and the positive charge are delocalized, for which a totally covalent structure cannot be written, and which cannot be represented satisfactorily by any one polar structure. the formal positive charge is associated with the ring atoms, and the formal negative charge is associated with ring atoms or an exocyclic nitrogen or chalcogen atom”. iupac. compendium of chemical terminology, 2nd edn. gold book compiled by ad mcnaught and a. wilkinson. Compendium of Chemical Terminology, 2nd Ed. Gold Book Compiled, 1997.; Johan Van Meerloo, Gertjan JL Kaspers, and Jacqueline Cloos. Cell sensitivity assays: the mtt assay. In Cancer cell culture, pages 237–245. Springer, 2011.; O Garz´on, Plazas Plazas, Maria Cristina, and EJ Salazar. Evolution of physicomathematical models in radiobiology and their application in ionizing radiation therapies. Tecciencia, 9(17):15–22, 2014.; Magnus Strandqvist. Studien ¨uber die kumulative Wirkung der R¨ontgenstrahlen bei Fraktionierung: Erfahrungen aus dem Radiumhemmet an 280 Haut-und Lippenkarzinomen. Norstedt, 1944.; JF Fowler. The estimation of total dose for different numbers of fractions in radiotherapy. The British Journal of radiology, 38(449):365–368, 1965.; F Ellis. I. the dose-time relationship in radiotherapy and the validity of cell survival curve models. The British Journal of Radiology, 36(423):153–162, 1963.; Frank Ellis. Dose, time and fractionation: a clinical hypothesis. Clinical radiology, 20(1):1–7, 1969.; Miguel Gil Gayarre, M Delgado Garc´ıa, and MOSC Mart´ınez Morillo. Manual de radiolog´ıa cl´ınica, 1994.; L Jones, P Hoban, and P Metcalfe. The use of the linear quadratic model in radiotherapy: a review. Australasian Physics & Engineering Sciences in Medicine, 24(3):132–146, 2001.; Luis Medina, Daniel Venencia, and Edgardo Garrig´o. Qa imrt comparison specific patient by means of radiochromic films, radiographic films and ionization chambers arrangement. 2014.; Warren Strober. Trypan blue exclusion test of cell viability. Current protocols in immunology, 21(1):A–3B, 1997.; James Carmichael, William G DeGraff, Adi F Gazdar, John D Minna, and James B Mitchell. Evaluation of a tetrazolium-based semiautomated colorimetric assay: assessment of chemosensitivity testing. Cancer research, 47(4):936–942, 1987.; Anieta M Sieuwerts, Jan GM Klijn, Harry A Peters, and John A Foekens. The mtt tetrazolium salt assay scrutinized: How to use this assay reliably to measure metabolie activity of cell cultures in vitro for the assessment of growth characteristics, ic50-values and cell survival. 1995.; A Slavotinek, TJ McMillan, and CM Steel. Measurement of radiation survival using the mtt assay. European Journal of Cancer, 30(9):1376–1382, 1994.; Peter R Twentyman and Mark Luscombe. A study of some variables in a tetrazolium dye (mtt) based assay for cell growth and chemosensitivity. British journal of cancer, 56(3):279–285, 1987.; Nicolaas AP Franken, Hans M Rodermond, Jan Stap, Jaap Haveman, and Chris Van Bree. Clonogenic assay of cells in vitro. Nature protocols, 1(5):2315–2319, 2006.; Jane A Plumb. Cell sensitivity assays: clonogenic assay. In Cancer cell culture, pages 159–164. Springer, 2004.; Md Asabur Rahman, Nasrin Sultana, Ummay Ayman, Sonali Bhakta, Marzia Afrose, Marya Afrin, and Ziaul Haque. Alcoholic fixation over formalin fixation: A new, safer option for morphologic and molecular analysis of tissues. Saudi journal of biological sciences, 29(1):175–182, 2022.; Jing Hao, Anthony Magnelli, Andrew Godley, and S Yu Jennifer. Use of a linear accelerator for conducting in vitro radiobiology experiments. JoVE (Journal of Visualized Experiments), (147):e59514, 2019.; Paul Reid, Puthenparampil Wilson, Yanrui Li, Loredana G Marcu, Alexander H Staudacher, Michael P Brown, and Eva Bezak. Experimental investigation of radiobiology in head and neck cancer cell lines as a function of hpv status, by mtt assay. Scientific Reports, 8(1):1–7, 2018.; Adriana Agudelo, Oscar Ortega, Paulo Quintero, Alejandro Ondo, and Maria Cristina. Evaluaci´on del efecto de la hipoxia en la supervivencia de celulas tumorales y endoteliales sometidas a radiaciones ionizantes.; Karl Buch, Tanja Peters, Thomas Nawroth, Markus S¨anger, Heinz Schmidberger, and Peter Langguth. Determination of cell survival after irradiation via clonogenic assay versus multiple mtt assay-a comparative study. Radiation oncology, 7(1):1–6, 2012.; Uttam K Sinha, Victor J Schorn, Christian Hochstim, Steven B Chinn, Sutao Zhu, and Rizwan Masood. Increased radiation sensitivity of head and neck squamous cell carcinoma with sphingosine kinase 1 inhibition. Head & neck, 33(2):178–188, 2011.v; Serra Kamer, Qing Ren, and Adam P Dicker. Differential radiation sensitization of human cervical cancer cell lines by the proteasome inhibitor velcade (bortezomib, ps-341). Archives of gynecology and obstetrics, 279(1):41–46, 2009.; Kana Aoki, Shinsuke Satoi, Shota Harada, Seiichi Uchida, Yoh Iwasa, and Junichi Ikenouchi. Coordinated changes in cell membrane and cytoplasm during maturation of apoptotic bleb. Molecular biology of the cell, 31(8):833–844, 2020.; https://repositorio.unal.edu.co/handle/unal/83994Test; Universidad Nacional de Colombia; Repositorio Institucional Universidad Nacional de Colombia; https://repositorio.unal.edu.coTest/

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    دورية أكاديمية
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    دورية أكاديمية

    المساهمون: SILAB, Institut des Sciences de l'Evolution de Montpellier (UMR ISEM), Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-École Pratique des Hautes Études (EPHE), Université Paris Sciences et Lettres (PSL)-Université Paris Sciences et Lettres (PSL)-Université de Montpellier (UM)-Institut de recherche pour le développement IRD : UR226-Centre National de la Recherche Scientifique (CNRS)

    المصدر: ISSN: 2045-2322.

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    دورية أكاديمية
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    دورية أكاديمية
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    دورية أكاديمية

    المساهمون: Yong Bae Kim, Hei-Cheul Jeung, Inhye Jeong, Kyunghwa Lee, Sun Young Rha, Hyun Cheol CHUNG, Gwi Eon Kim, Kim, Gwi Eon, Kim, Yong Bae, Rha, Sun Young, Jeong, In Hye, Chung, Hyun Cheol, Jeung, Hei Cheul

    المصدر: T201300228.pdf

    وصف الملف: application/pdf

    العلاقة: JOURNAL OF RADIATION RESEARCH; J01727; OAK-2013-00135; https://ir.ymlib.yonsei.ac.kr/handle/22282913/86254Test; T201300228; JOURNAL OF RADIATION RESEARCH, Vol.54(1) : 52-60, 2013