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1.
Шифр: ЕУ12/2019/41/1
   Журнал

Экспериментальная онкология [Текст]
2019г. Т. 41 № 1 . - 45.41, р.
Содержание:
Solyanik, G. I. Quinazoline compounds for antitumor treatment / G. I. Solyanik. - С.3-6. - Bibliogr. at the end of the art.
Mahmoudian, J. Expression profiling of plac1 in murine cancer cell lines / J. Mahmoudian [та ін.]. - С.7-13. - Bibliogr. at the end of the art.
Другие авторы: Ghods R., Nazari M., Jeddi-Tehrani M., Ghahremani M. H., Ostad S. N., Zarnani A. H.
Kolesnik, D. L. Time-dependent cytotoxicity of dichloroacetate and metformin against Lewis lung carcinoma / D. L. Kolesnik [та ін.]. - С.14-19. - Bibliogr. at the end of the art.
Другие авторы: Pyaskovskaya O. N., Yakshibaeva Yu. R., Solyanik G. I.
Lozovska, Yu. V. The influence of lactoferrin on elemental homeostasis and activity of metal-containing enzymes in rats with Walker-256 carcinosarcoma / Yu. V. Lozovska [та ін.]. - С.20-25. - Bibliogr. at the end of the art.
Другие авторы: Andrusishina I. M., Lukianova N. Yu., Burlaka A. P., Naleskina L. A., Todor I. N., Chekhun V. F.
Burlaka, A. A. DNA oxidation in patients with metastastic colorectal cancer: clinical significance of 8-hydroxy-deoxyguanosine as an independent prognostic factor / A. A. Burlaka [та ін.]. - С.26-31. - Bibliogr. at the end of the art.
Другие авторы: Vovk A. V., Burlaka A. P., Kolesnik O. O.
Stakheyeva, M. Integral characteristic of the immune system state predicts breast cancer outcome / M. Stakheyeva [та ін.]. - С.32-38. - Bibliogr. at the end of the art.
Другие авторы: Eidenzon D., Slonimskaya E., Patysheva M., Bogdashin I., Kolegova E., Grigoriev E., Choinzonov E., Cherdyntseva N.
Bilous, N. Analysis of LPL gene expression in patients with chronic lymphocytic leukemia / N. Bilous [та ін.]. - С.39-45. - Bibliogr. at the end of the art.
Другие авторы: Abramenko I., Chumak A., Dyagil I., Martina Z.
Alghamdi, S. Evaluation of dose calculation algorithms using different density materials for in-field and out-of-field conditions / S. Alghamdi, A. Tajaldeen. - С.46-52. - Bibliogr. at the end of the art.
Poluben, L. Copy number alterations and copy-neutral loss of heterozygosity in Ukrainian patients with primary myelofibrosis / L. Poluben [та ін.]. - С.53-56. - Bibliogr. at the end of the art.
Другие авторы: Bryke Ch. R., Hsu Y., Shumeiko O., Neumerzhitska L., Klimuk B., Rybchenko L., Klymenko S., Balk S. P., Fraenkel P. G.
Bakai, O. A. Radiation research to determine local tumor invasion in patients with cervical cancer / O. A. Bakai [та ін.]. - С.57-60. - Bibliogr. at the end of the art.
Другие авторы: Golovko T. S., Ganich A. V., Gavriluk O. N., Ashykhmin A. V.
Zabolotnyi, D. I. Aggregated proteins in malignant and benign neoplasms / D. I. Zabolotnyi [та ін.]. - С.61-68. - Bibliogr. at the end of the art.
Другие авторы: Belousova A. A., Zabolotna D. D., SavchenkoT. D., Voroshylova N. M., Timchenko M. D., Tsvirinko I. R., Verevka S. V.
Shirin, V. Assessment of trace elements in serum of acute lymphoblastic and myeloid leukemia patients / V. Shirin [та ін.]. - С.69-71. - Bibliogr. at the end of the art.
Другие авторы: Sayfidin J., Mina E. -R., Shohren K., Reza S.
Tkachenko, R. Parathyroid carcinoma: a case report / R. Tkachenko [та ін.]. - С.72-75. - Bibliogr. at the end of the art.
Другие авторы: Zakhartseva L., Golovko A., Golovko A., Kuryk O., Lazarenko G.
Semko, S. A case of synchronous bilateral calyx urothelial carcinoma: combined treatment approach / S. Semko [та ін.]. - С.76-79. - Bibliogr. at the end of the art.
Другие авторы: Pikul M., Voylenko O., Stakhovskyi O., Kononenko O., Vitruk Yu., Stakhovsky E.
De, Giorgi V. Cutaneous leiomyosarcoma: a clinical, dermoscopic, pathologic case study / Giorgi V. De [та ін.]. - С.80-81. - Bibliogr. at the end of the art.
Другие авторы: Scarfì F., Silvestri F., Maida P., Gori A., Trane L., Massi D.
Langabeer, S. E. Suboptimal molecular response to tyrosine kinase inhibition associated with acquisition of a T240A ABL1 kinase domain mutation in a patient with chronic myeloid leukemia / S. E. Langabeer [та ін.]. - С.82-83. - Bibliogr. at the end of the art.
Другие авторы: Haslam K., Crampe M., MacDonagh B., McHugh J.
Brieieva, O. Scientific and Practical Conference of Young Scientists “Fundamental Medicine: Integrated Approaches to Cancer Therapy” / O. Brieieva. - С.84-86. - Bibliogr. at the end of the art.
Tumor and Host: Novel Aspects of Old Problem. - С.87
Ludmyla Zakharivna Polishchuk (1937–2019). - С.88
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2.


    Alghamdi, S.
    Evaluation of dose calculation algorithms using different density materials for in-field and out-of-field conditions [Текст] / S. Alghamdi, A. Tajaldeen // Экспериментальная онкология. - 2019. - Т. 41, № 1. - С. 46-52. - Bibliogr. at the end of the art.

Аннотация: The accuracy of the dose calculation is vital in the stereotactic ablative body radiotherapy (SABR) technique to achieve clinically effective dose distribution for better tumor control. Multiple commercial radiotherapy treatment planning systems (TPS) were implemented with different algorithms, such as Acuros XB in Eclipse and Superposition in XiO. The aim of this study is to investigate five different dose calculation algorithms, namely, pencil beam convolution (PBC), Acuros XB, AAA implemented in an Eclipse system, collapsed cone convolution (CCC) algorithm implemented in Mobius3D and superposition algorithms implemented in the XiO system, and then validate the results against measurements using an Institute of Physical Sciences in Medicine (IPSM) phantom with different density materials for in-field and out-of- field conditions. Material and Methods: The IPSM phantom was used to investigate the dose calculation algorithm performances in four different densities (water, lung, ribs, and dense bone) using different beam configurations, including small beam fields utilised in lung SABR. Five commercial algorithms implemented in two TPS (Eclipse and XiO) and one plan check (M3D) system were used for in-field and out-of-field measurement. Results: In the in-field condition, the Acuros XB algorithm had lower mean differences than the measured dose by the IC ranging from –0.46 to 0.24 for all the densities. In the out-of-field condition, the results of eclipse system: AAA, PBC and Acuros XB algorithms demonstrated underdose point’s measurements by –40% for all densities except for AAA calculations in lung density (overdosed by 40%). The measured points of the superposition algorithms were overestimated to the actual dose less than 30% in water, lung and dense bone. At the same densities, the CCC algorithms showed relatively the lowest differences in percentage compared to the superposition algorithms. Conclusion: Our results showed that the Acuros XB and superposition algorithms are closer to the actual measured dose than AAA, PBC and CCC for majority of the field conditions for water-equivalent, lung, rib and dense bone densities. The CCC algorithm resulted in a better agreement with the measurement of the out-of-field points compared with the other algorithms
Доп.точки доступа:
Tajaldeen, A.

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3.
Шифр: ЕУ12/2019/41/2
   Журнал

Экспериментальная онкология [Текст]
2019г. Т. 41 № 2 . - 45.41, р.
Содержание:
Verma, S. Evaluating the role of dithiolane rich fraction of Ferula asafoetida (apiaceae) for its antiproliferative and apoptotic properties: in vitro studies / S. Verma [та ін.]. - С.90-94. - Bibliogr. at the end of the art.
Другие авторы: Khambhala P., Joshi S., Kothari V., Patel T., Seshadri S.
Syvyk, A. E. Inducible dominant negative ErbB2 rat spermatogonial line for generation of transgenic rat model and dissecting ERBB2 tyrosine kinase mediated pathways / A. E. Syvyk, T. L. Syvyk. - С.95-105. - Bibliogr. at the end of the art.
Prylutska, S. V. Antitumor effects and hematotoxicity of C60-Cis-Pt nanocomplex in mice with Lewis lung carcinoma / S. V. Prylutska [та ін.]. - С.106-111. - Bibliogr. at the end of the art.
Другие авторы: Lynchak O. V., Kostjukov V. V., Evstigneev M. P., Remeniak O. V., Rybalchenko V. K., Prylutskyy Yu. I., Ritter U., Scharff P.
Petrellis, M. C. Proinflammatory effects of photoactivated methylene blue on rat model of Walker 256 carcinosarcoma / M. C. Petrellis [та ін.]. - С.112-122. - Bibliogr. at the end of the art.
Другие авторы: Frigo L., Ribeiro W., Leal-Junior E. C. P., Oliveira F. R., Maria D. A., Lopes-Martins R. Á. B.
Kolesnik, D. L. Metformin enhances antitumor action of sodium dichloroacetate against glioma C6 / D. L. Kolesnik [та ін.]. - С.123-129. - Bibliogr. at the end of the art.
Другие авторы: Pyaskovskaya O. N., Yurchenko O. V., Solyanik G. I.
Herrera-Covarrubias, D. Prepuberal stress and obesity: effects on serum corticosterone, prolactin, testosterone and precancerous prostate lesions in adult rats / D. Herrera-Covarrubias [та ін.]. - С.130-137. - Bibliogr. at the end of the art.
Другие авторы: Coria-Avila G. A., Aranda-Abreu G. E., Manzo J., Hernández M. E.
Buchynska, L. G. Assessment of HER-2/neu, с-MYC and CCNE1 gene copy number variations and protein expression in endometrial carcinomas / L. G. Buchynska, O. V. Brieiev, N. P. Iurchenko. - С.138-143. - Bibliogr. at the end of the art.
Kravets, O. V. Clinical and pathological prognostic factors in patients with stage III–IVA-B oral squamous cell carcinoma / O. V. Kravets [та ін.]. - С.144-147. - Bibliogr. at the end of the art.
Другие авторы: Protsyk V. S., Burtyn O. V., Hlynin O. V., Hurianov V. H.
Burlaka, A. P. Tumor-associated redox state in metastatic colorectal cancer / A. P. Burlaka [та ін.]. - С.148-152. - Bibliogr. at the end of the art.
Другие авторы: Ganusevich I. I., Burlaka A. A., Virko S. V., Kolesnik О. О.
Tajaldeen, A. Investigation of dosimetric impact of organ motion in static and dynamic conditions for three stereotactic ablative body radiotherapy techniques: 3D conformal radiotherapy, intensity modulated radiation therapy, and volumetric modulated arc therapy by usi / A. Tajaldeen, S. Alghamdi. - С.153-159. - Bibliogr. at the end of the art.
Yakovlev, P. G. Bladder sparing surgery in high-grade bladder cancer / P. G. Yakovlev, D. A. Klyushin, R. I. Vereshchako. - С.160-165. - Bibliogr. at the end of the art.
Cešeiko, R. The impact of maximal strength training on quality of life among women with breast cancer undergoing treatment / R. Cešeiko [та ін.]. - С.166-172. - Bibliogr. at the end of the art.
Другие авторы: Eglītis J., Srebnijs A., Timofejevs M., Purmalis E., Erts R., Vētra A., Tomsone S.
Ben, Kridis W. Prognostic factors in metastatic gastric carcinoma / Kridis W. Ben [та ін.]. - С.173-175. - Bibliogr. at the end of the art.
Другие авторы: Marrekchi G., Mzali R., Daoud J., Khanfir A.
Dumanskiy, Y. V. The Kі-67 marker for assessing the effectiveness of systemic or regional neoadjuvant polychemotherapy in patients with locally advanced breast cancer / Y. V. Dumanskiy, O. V. Bondar, E. A. Stoliarchuk. - С.176-178. - Bibliogr. at the end of the art.
Starchenko, I. I. The observation of congenital retroperitoneal large size neuroblastoma / I. I. Starchenko [та ін.]. - С.179-181. - Bibliogr. at the end of the art.
Другие авторы: Dyachenko L. V., Prylutskyi O. K., Vynnyk N. I., Filenko B. M.
Ben, Kridis W. Buschke — Lowenstein anal tumor: an ambiguous entity / Kridis W. Ben [та ін.]. - С.182-184. - Bibliogr. at the end of the art.
Другие авторы: Werda I., Charfi S., Toumi N., Boudawara T., Mzali R., Daoud J., Khanfir A.
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4.


    Tajaldeen, A.
    Investigation of dosimetric impact of organ motion in static and dynamic conditions for three stereotactic ablative body radiotherapy techniques: 3D conformal radiotherapy, intensity modulated radiation therapy, and volumetric modulated arc therapy by usi [Текст] / A. Tajaldeen, S. Alghamdi // Экспериментальная онкология. - 2019. - Т. 41, № 2. - С. 153-159. - Bibliogr. at the end of the art.

Аннотация: To investigate the use of PRESAGE 3D dosimeters to quantify the dosimetric variation between the static and dynamic conditions of three stereotactic ablative body radiotherapy techniques. Materials and Methods: An in-house custom-designed thorax dynamic phantom was designed to simulate the tumor motion in two directions (i.e., superior/inferior (Z-axis) and anterior/posterior (Y-axis)). The PRESAGE dosimeter was attached to the moving arm of the phantom and irradiated in two scenarios (static and dynamic) using three stereotactic ablative body radiotherapy (SABR) techniques: 3D conformal radiotherapy (3D CRT), intensity-modulated radiation therapy (IMRT), and volumetric modulated arc therapy (VMAT). Results: The highest differences in the mean volume measurements between the two conditions were noticed in IMRT (0.14 cm3) and 3D CRT (0.13 cm3). The mean volume measurements of the VMAT showed the lowest difference between the static and dynamic conditions of 0.10 cm3. The gamma analysis for 3%, 3-mm criterion showed passing rates of 1 for 3D CRT, IMRT, and VMAT. Conclusion: This study quantify the dosimetric variations which are caused by the tumor motion in lung cases. In the SABR of the lung for QA purposes, this could help in identifying the prescription dose coverage due to tumor movement and correlate with the planned dose using 3D dosimeters like PRESAGE
Доп.точки доступа:
Alghamdi, S.

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