Computational fluid dynamics study of intra-arterial chemotherapy for oral cancer

Hiroaki Kitajima1, Masaharu Oshima2, Toshinori Iwai1, Yoshihito Ohhara1, Yasuharu Yajima1, Kenji Mitsudo1, Iwai Tohnai1
1Department of Oral and Maxillofacial Surgery, Yokohama City University Graduate School of Medicine, 3-9 Fukuura, Kanazawa-ku, Yokohama 236-0004, Japan
2Interfaculty Initiative in Information Studies, The University of Tokyo, 7-3-1, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan

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Homma A, Onimaru R, Matsuura K, Robbins KT, Fujii M. Intra-arterial chemoradiotherapy for head and neck cancer. Jpn J Clin Oncol. 2016;46:4–12.

Mitsudo K, Shigetomi T, Fujimoto Y, Nishiguchi H, Yamamoto N, Furue H, Ueda M, Itoh Y, Fuwa N, Tohnai I. Organ preservation with daily concurrent chemoradiotherapy using superselective intra-arterial infusion via a superficial temporal artery for T3 and T4 head and neck cancer. Int J Oncol Biol Phys. 2011;79:1428–35.

Tohnai I. Chemotherapy using intra-arterial infusion for oral cancer. Nagoya J Med Sci. 2006;68:101–8.

Robbins KT. The evolving role of combined modality therapy in head and neck cancer. Arch Otolaryngol Head Neck Surg. 2000;126:265–9.

Robbins KT, Kumar P, Wong FS, Hartsell WF, Flick P, Palmer R, Weir AB 3rd, Neill HB, Murry T, Ferguson R, Hanchett C, Vieira F, Bush A, Howell SB. Targeted chemoradiation for advanced head and neck cancer: analysis of 213 patients. Head Neck. 2000;126:687–93.

Fuwa N, Kodaira T, Furutani K, Tachibana H, Nakamura T, Nakahara R, Tomoda T, Inokuti H, Daimon T. Arterial chemoradiotherapy for locally advanced tongue cancer: analysis of retrospective study of therapeutic results in 88 patients. Int J Radiat Oncol Biol Phys. 2008;72:1090–100.

Tohnai I, Fuwa N, Hayashi Y, Kaneko R, Tomaru Y, Hibino Y, Ueda M. New superselective intra-arterial infusion via superficial temporal artery for cancer of the tongue and tumour tissue platinum concentration after carboplatin (CBDCA) infusion. Oral Oncol. 1998;34:387–90.

Rhode S, Paul MC, Martens E, Campbell DF. Simulation of haemodynamic flow in head and neck cancer chemotherapy. Biomed Eng Online. 2011;10:104.

Ohhara Y, Oshima M, Iwai T, Kitajima H, Yajima Y, Mitsudo K, Krdy A, Tohnai I. Investigation of blood flow in the external carotid artery and its branches with a new 0D peripheral model. Biomed Eng Online. 2016;15:16.

Haynes WM. CRC handbook of chemistry and physics. 93rd ed. Boca Raton: FLCRC Press; 2012. p. 6–250.

Holz M, Heil SR, Sacco A. Temperature-dependent self-diffusion coefficients of water and six selected molecular liquids for calibration in accurate 1H NMR PFG measurements. Phys Chem Chem Phys. 2000;2:4740–2.

Oshima M, Torii R, Tokuda S, Yamada S, Koizumi A. Patient-specific modeling and multi-scale blood simulation for computational hemodynamic study on the human cerebrovascular system. Curr Pham Biotechnol. 2012;13:2153–65.

Freitas RA. Nanomedicine, Volume I: basic capabilities. Georgetown: Landes Bioscience; 1999.

Pries AR, Secomb TW, Gaehtgens P, Gross JF. Blood flow in microvascular networks experiments and simulation. Circ Res. 1990;67:826–34.

Barbee JH, Cokelet GR. The Fahraeus effect. Microvasc Res. 1971;3:6–16.

Barbee JH, Cokelet GR. Prediction of blood flow in tubes with diameters as small as 29 microns. Microvasc Res. 1971;3:17–21.

Pries AR, Neuhaus D, Gaehtgens P. Blood viscosity in tube flow: dependence on diameter and hematocrit. Am J Physiol. 1992;263:H1770–8.

Pries AR, Secomb TW, Gessner T, Sperandio MB, Gross JF, Gaehtgens P. Resistance to blood flow in microvessels in vivo. Circ Res. 1994;75:904–15.

Mata JR, Mata FR, Souza MC, Nishijo H, Ferreira TA. Arrangement and prevalence of branches in the external carotid artery in humans. Ital J Anat Embryol. 2012;117:65–74.

Ozgur Z, Govsa F, Ozgur T. Assessment of origin characteristics of the front branches of the external carotid artery. J Craniofac Surg. 2008;19:1159–66.

Yonenaga K, Tohnai I, Mitsudo K, Mori Y, Saijo H, Iwai T, Yonehara Y, Ota Y, Torigoe K, Takato T. Anatomical study of the external carotid artery and its branches for administration of superselective intra-arterial chemotherapy via the superficial temporal artery. Int J Clin Oncol. 2011;16:654–9.

Troupis TG, Dimitroulis D, Paraschos A, Michalinos A, Protogerou V, Vlasis K, Troupis G, Skandalakis P. Lingual and facial arteries arising from the external carotid artery in a common trunk. Am Surg. 2011;77:151–4.

Fry D. Acute vascular endothelial changes associated with increased blood velocity gradients. Circ Res. 1968;22(2):165–97.