Fabrication of 3D Capillary Vessel Models with Circulatory Connection Ports
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[1] Fumihito Arai,et al. Retinal vessel model fabricated on a curved surface structure for a simulation of microcannulation , 2016 .
[2] Koji Asakawa,et al. Effect of remaining solvent on sensitivity, diffusion of acid, and resolution in chemical amplification resists , 1995 .
[3] J. Vacanti,et al. Microfabrication Technology for Vascularized Tissue Engineering , 2002 .
[4] Mamoru Mitsuishi,et al. Microsurgical robotic system for vitreoretinal surgery , 2011, International Journal of Computer Assisted Radiology and Surgery.
[5] Chee Meng Benjamin Ho,et al. 3D printed microfluidics for biological applications. , 2015, Lab on a chip.
[6] Nobuaki Hayashi,et al. Determination of acid diffusion in chemical amplification positive deep ultraviolet resists , 1991 .
[7] Saulius Juodkazis,et al. Two-photon lithography of nanorods in SU-8 photoresist , 2005 .
[8] Shuichi Takayama,et al. Rapid Prototyping of Microstructures with Bell‐Shaped Cross‐Sections and Its Application to Deformation‐Based Microfluidic Valves , 2004 .
[9] Fumihito Arai,et al. Red blood cell fatigue evaluation based on the close-encountering point between extensibility and recoverability. , 2014, Lab on a chip.
[10] Fumihito Arai,et al. Fabrication of an On-Chip Nanorobot Integrating Functional Nanomaterials for Single-Cell Punctures , 2014, IEEE Transactions on Robotics.
[11] F Arai,et al. Photoelastic stress analysis in blood vessel phantoms: three‐dimensional visualization and saccular aneurysm with bleb , 2011, The international journal of medical robotics + computer assisted surgery : MRCAS.
[12] Fumihito Arai,et al. Multiscale fabrication of a transparent circulation type blood vessel simulator. , 2010, Biomicrofluidics.
[13] R. Kneebone. Simulation in surgical training: educational issues and practical implications , 2003, Medical education.
[14] Yuka Yamagishi,et al. Three-Dimensional Assembly of Multilayered Tissues Using Water Transfer Printing , 2013, J. Robotics Mechatronics.
[15] Fumihito Arai,et al. Quantitative assessment of manual and robotic microcannulation for eye surgery using new eye model , 2015, The international journal of medical robotics + computer assisted surgery : MRCAS.
[16] Masayuki Yamato,et al. Cell micropatterning using photopolymerization with a liquid crystal device commercial projector. , 2004, Biomaterials.
[17] Michael J. Beauchamp,et al. Moving from millifluidic to truly microfluidic sub-100-μm cross-section 3D printed devices , 2017, Analytical and Bioanalytical Chemistry.
[18] Jianlong Zhao,et al. Curved SU-8 structure fabrication based on the acid-diffusion effect , 2011, 2011 IEEE 24th International Conference on Micro Electro Mechanical Systems.
[19] Koji Asakawa. DIFFUSION OF ACID AND ACTIVATION ENERGY OF POSITIVE CHEMICAL AMPLIFICATION RESIST , 1993 .
[20] K. Ellenbogen,et al. Tachycardia-induced cardiomyopathy: a review of animal models and clinical studies. , 1997, Journal of the American College of Cardiology.
[21] Fumihito Arai,et al. Fabrication of 3D capillary vessel simulator using femtosecond laser and mask hybrid exposure , 2011, 2011 International Symposium on Micro-NanoMechatronics and Human Science.
[22] R. Satava,et al. Virtual Reality Training Improves Operating Room Performance: Results of a Randomized, Double-Blinded Study , 2002, Annals of surgery.
[23] Hiroshi Ito,et al. CHEMICAL AMPLIFICATION BASED ON ACID-CATALYZED DEPOLYMERIZATION , 1990 .
[24] Fumihito Arai,et al. Quantitative study on appearance of microvessels in spectral endoscopic imaging , 2015, Journal of biomedical optics.
[25] Fumihito Arai,et al. An In Vitro Patient-Specific Biological Model of the Cerebral Artery Reproduced with a Membranous Configuration for Simulating Endovascular Intervention , 2005, J. Robotics Mechatronics.
[26] Hong‐Bo Sun,et al. Three-dimensional focal spots related to two-photon excitation , 2002 .
[27] D. F. Young,et al. Computer simulation of arterial flow with applications to arterial and aortic stenoses. , 1992, Journal of biomechanics.
[28] T. Hattori,et al. Fabrication of Coil Lines with High Aspect Ratio for Electromagnetic Actuators , 2007, 2007 International Symposium on Micro-NanoMechatronics and Human Science.