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Research Article

Numerical modeling of high-intensity focused ultrasound-mediated intraperitoneal delivery of thermosensitive liposomal doxorubicin for cancer chemotherapy

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Pages 898-917 | Received 15 Jul 2019, Accepted 22 Aug 2019, Published online: 16 Sep 2019

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Farshad Moradi Kashkooli, Tyler K. Hornsby, Michael C. Kolios & Jahangir (Jahan) Tavakkoli. (2023) Ultrasound‐mediated nano‐sized drug delivery systems for cancer treatment: Multi‐scale and multi‐physics computational modeling. WIREs Nanomedicine and Nanobiotechnology.
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Tyler K. Hornsby, Anshuman Jakhmola, Michael C. Kolios & Jahangir Tavakkoli. (2023) A Quantitative Study of Thermal and Non-thermal Mechanisms in Ultrasound-Induced Nano-drug Delivery. Ultrasound in Medicine & Biology 49:5, pages 1288-1298.
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Jiyun Hu, Zhenxing Wang, Xinrun Wang & Shucai Xie. (2023) Side-effects of hyperthermic intraperitoneal chemotherapy in patients with gastrointestinal cancers. PeerJ 11, pages e15277.
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Yaroslav R. Nartsissov. (2022) Application of a multicomponent model of convectional reaction-diffusion to description of glucose gradients in a neurovascular unit. Frontiers in Physiology 13.
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Ikumi Sugiyama, Kaana Ando & Yasuyuki Sadzuka. (2022) The Basic Study of Liposome in Temperature-Sensitive Gel at Body Temperature for Treatment of Peritoneal Dissemination. Gels 8:5, pages 252.
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Farshad Moradi Kashkooli, Mohsen Rezaeian & M Soltani. (2022) Drug delivery through nanoparticles in solid tumors: a mechanistic understanding. Nanomedicine 17:10, pages 695-716.
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J.A. Ferreira, D. Jordão & L. Pinto. (2022) Drug delivery enhanced by ultrasound: Mathematical modeling and simulation. Computers & Mathematics with Applications 107, pages 57-69.
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Mohsen Rezaeian, M. Soltani, Ahmad Naseri Karimvand & Kaamran Raahemifar. (2022) Mathematical Modeling of Targeted Drug Delivery Using Magnetic Nanoparticles during Intraperitoneal Chemotherapy. Pharmaceutics 14:2, pages 324.
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Mohammad Souri, M. Soltani, Farshad Moradi Kashkooli & Mohammad Kiani Shahvandi. (2022) Engineered strategies to enhance tumor penetration of drug-loaded nanoparticles. Journal of Controlled Release 341, pages 227-246.
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