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1
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67049099415
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Material nanosizing effect on living organisms: Non-specific, biointeractive, physical size effects
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Watari F, Takashi N, Yokoyama A, Uo M, Akasaka T, Sato Y, Abe S, Totsuka Y, Tohji K. Material nanosizing effect on living organisms: non-specific, biointeractive, physical size effects. J R Soc Interface 2009; 6 Suppl 3: S371-388.
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J R Soc Interface
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Watari, F.1
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Sato, Y.6
Abe, S.7
Totsuka, Y.8
Tohji, K.9
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2
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44649148907
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Behavior of in vitro, in vivo and internal motion of micro/nano particles of titanium, titanium oxides and others
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Watari F, Abe S, Koyama C, Yokoyama A, Akasaka T, Uo M, Matsuoka M, Totsuka Y, Esaki M, Morita M, Yonezawa T. Behavior of in vitro, in vivo and internal motion of micro/nano particles of titanium, titanium oxides and others, J Cera Soc Jap 2008;116: 1-5.
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J Cera Soc Jap
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Matsuoka, M.7
Totsuka, Y.8
Esaki, M.9
Morita, M.10
Yonezawa, T.11
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3
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67049126724
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Reaction of cells and tissue to material nanosizing
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Watari F, Inoue S, Takashi N, Totsuka Y, Yokoyama A. Reaction of cells and tissue to material nanosizing. Trans Mat Res Soc Jap 2008;33:209-214.
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Trans Mat Res Soc Jap
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Watari, F.1
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4
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67049149922
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Effect of nanosizing of materials on living organism
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Watari F, Abe S, Koyama C, Inoue S, Akasaka T, Uo M, Matsuoka M, Takashi N, Totsuka Y, Hirata E, Yokoyama A, Esaki M, Morita, Yonezawa M. Effect of nanosizing of materials on living organism. Proc.ISNST 2007, 2007, pp.43-52.
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Proc.ISNST 2007
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Watari, F.1
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Uo, M.6
Matsuoka, M.7
Takashi, N.8
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Yonezawa, M.14
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5
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0035372012
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Biocompatibility and osteogenesis of refractory metal implants, titanium, hafnium, niobium, tantalum and rhenium
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DOI 10.1016/S0142-9612(00)00275-1, PII S0142961200002751
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Matsuno H, Yokoyama A, Watari F, Uo M, Kawasaki T. Biocompatibility and osteogenesis of refractory metal implants, titanium, hafnium, niobium, tantalum and rhenium. Biomaterials 2001;22:1253-1262. (Pubitemid 32409946)
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6
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1642464933
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Biocompatibility of materials and development to functionally graded implant for bio-medical application
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DOI 10.1016/j.compscitech.2003.09.005, PII S0266353803003397
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Watari F, Yokoyama A, Omori M, Hirai T, Kondo H, Uo M, Kawasaki T. Biocompatibility of materials and development to functionally graded implant for bio-medical application. Composites Science and Technology 2004;64:893-908. (Pubitemid 38403382)
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Composites Science and Technology
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Kawasaki, T.7
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7
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53649111467
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XAFS analysis of Ti and Ni dissolution from pure Ti, Ni-Ti alloy, and SUS304 in soft tissues
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Uo M, Asakura K, Tamura K, Totsuka Y, Abe S, Akasaka T, Watari F. XAFS analysis of Ti and Ni dissolution from pure Ti, Ni-Ti alloy, and SUS304 in soft tissues. Chem. Lett 2008;.37:958-959.
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Chem. Lett
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Uo, M.1
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8
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34548072020
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X-ray absorption fine structure(XAFS) analysis of titanium-implanted soft tissue
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Uo M, Asakura K, Yokoyama A, Ishikawa M, Tamura K, Totsuka Y, Akasaka T, Watari F. X-ray absorption fine structure(XAFS) analysis of titanium-implanted soft tissue. Dent Mater J 2007;26:268-273.
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Dent Mater J
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Uo, M.1
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Akasaka, T.7
Watari, F.8
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9
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80052441948
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Distribuion and chemical state analysis of rarely contained metallic elements in biological tissues
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Uo M, Asakura K, Akasaka T, Watari F, Yokoyama A, Kohgo T, Totsuka Y. Distribuion and chemical state analysis of rarely contained metallic elements in biological tissues. Proc. 6th Asian Bio Ceramics Symp 2006: 2006:115-117.
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Proc. 6th Asian Bio Ceramics Symp 2006
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Uo, M.1
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Totsuka, Y.7
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10
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80052432475
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Ed. Vincenzini P et al
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Watari F, Liao S, Yokoyama A, Omori M, Ohata N. FGM's for biomedical applications, advances in science and technology 45, Ed. Vincenzini P et al., 2006. pp.1124-1133.
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FGM's for Biomedical Applications, Advances in Science and Technology 45
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Watari, F.1
Liao, S.2
Yokoyama, A.3
Omori, M.4
Ohata, N.5
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11
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80052462932
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Inflammatory exudates modulate the function and apoptosis of neutrophils
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Takashi N, Watari F, Totsuka Y. Inflammatory exudates modulate the function and apoptosis of neutrophils. Oral Science International 2008;5: 122-130.
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Oral Science International
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Takashi, N.1
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12
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33644822817
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Influence of length on cytotoxicity of multi-walled carbon nanotubes against human acute monocytic leukemia cell line THP-1 in vitro and subcutaneous tissue of rats in vivo
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DOI 10.1039/b502429c
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Sato Y, Yokoyama A, Shibata K, Akimoto Y, Ogino S, Nodasaka Y, Kohgo T, Tamura K, Akasaka T, Uo M, Motomiya K, Jeyadevan B, Ishiguro M, Hatakeyama R, Watari F, Tohji K. Influence of length on cytotoxicity of multi-walled carbon nanotubes against human acute monocytic leukemia cell line THP-1 in vitro and subcutaneous tissue of rats in vivo, Molecular BioSystems 2005;1: 176-182. (Pubitemid 43362245)
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Molecular BioSystems
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Uo, M.10
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Hatakeyama, R.14
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Tohji, K.16
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13
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19944430565
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Biological behavior of hat-stacked carbon nanofibers in the subcutaneous tissue in rats
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DOI 10.1021/nl0484752
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Yokoyama A, Sato Y, Nodasaka Y, Yamamoto S, Kawasaki T, Shindoh M, Kohgo T, Akasaka T, Uo M, Watari F, Tohji K. Biological Behavior of Hat-stacked Carbon Nanofibers in the Subcutaneous Tissue in Rats, Nano Letters 2005;5:157-161. (Pubitemid 40168920)
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Nano Letters
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14
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28944452094
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Strict preparation and evaluation of water-soluble hat-stacked carbon nanofibers for biomedical application and their high biocompatibility: Influence of nanofiber-surface functional groups on cytotoxicity
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DOI 10.1039/b501222h
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Sato Y, Shibata K, Kataoka H, Ogino S, Fugetsu B, Yokoyama A, Tamura K, Akasaka T, Uo M, Motomiya K, Jeyadevan B, Hatakeyama R, Watari F, Tohji K. Strict preparation and evaluation of water-soluble hat-stacked carbon nanofibers for biomaedical application and their high biocompatibility:influence of nanofiber-surface functional groups on cytotoxicity, Molecular BioSystems 2005;1:142-145. (Pubitemid 43362240)
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0036017274
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Effects of Ti ions and particles on neutrophil function and morphology
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DOI 10.1016/S0142-9612(02)00115-1, PII S0142961202001151
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Kumazawa R, Watari F, Takashi N, Tanimura Y, Uo M, Totsuka Y. Effects of Ti ions and particles on ellular f unction and morphology of neutrophils, Biomaterials 2002; 23:3757-3764. (Pubitemid 34626576)
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16
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0037004148
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Effects of particle size on cell function and morphology in titanium and nickel
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Tamura K, Takashi N, Kumazawa R, Watari F, Totsuka Y. Effects of particle size on cell function and morphology in titanium and nickel, Materials Transactions 2002;43: 3052-3057.
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Materials Transactions
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17
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33645731298
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X-ray absorption fine structure (XAFS) analyses of Ni species trapped in graphene sheet of carbon nanofibers
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Ushiro M, Uno K, Fujikawa T, Sato Y, Tohji K, Watari F, Chun W, Koike Y, Asakura K, X-ray absorption fine structure (XAFS) analyses of Ni species trapped in graphene sheet of carbon nanofibers. Phys Rev B 2006;73: 1441031-11.
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Phys Rev B
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18
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34547670982
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Self-assembly of nano-hydroxyapatite on multi-walled carbon nanotubes
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DOI 10.1016/j.actbio.2007.03.007, PII S1742706107000517
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Liao S, Xu G, Wang W, Watari F, Cui F, Ramakrishna S, Chan CK. Self-assembly of nano-hydroxyapatite on multi-walled carbon nanotubes. Acta Biomater 2007;3:669-675. (Pubitemid 47209516)
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Acta Biomaterialia
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19
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34548081519
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Carbon nanotubes as scaffolds for cell and effect on cellular functions
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Aoki N, Akasaka T, Watari F, Yokoyama A. Carbon nanotubes as scaffolds for cell and effect on cellular functions. Dent Mater J 2007;26:178-185.
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Dent Mater J
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20
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63449116996
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Development of a multiwalled carbon nanotube coated collagen dish
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Terada M, Abe S, Akasaka T, Uo M, Kitagawa Y, Watari F. Development of a multiwalled carbon nanotube coated collagen dish. Dent Mater J 2009;28: 82-88.
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Dent Mater J
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66249125650
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Multiwalled carbon nanotube coating on titanium
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Terada M, Abe S, Akasaka T, Uo M, Kitagawa Y, Watarui F. Multiwalled carbon nanotube coating on titanium. Bio-Med Mater Eng. in press.
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67749124635
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Development of a 3D collagen scaffold coated with multiwalled carbon nanotubes
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in press
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Hirata E, Uo M, Takita H, Akasaka T, Watari F, Yokoyama A. Development of a 3D collagen scaffold coated with multiwalled carbon nanotubes. J Biomed Mater Res B Appl Biomater 2009. in press.
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J Biomed Mater Res B Appl Biomater
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23
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67650901516
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Adhesion of human osteoblast-like cells (Saos-2) to carbon nanotube sheets
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in press
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Akasaka T, Yokoyama A, Matsuoka M, Hashimoto T, Abe S, Uo M, Watari F. Adhesion of human osteoblast-like cells (Saos-2) to carbon nanotube sheets, Bio-Medical Materials and Engineering, 2009. in press.
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Bio-Medical Materials and Engineering
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Akasaka, T.1
Yokoyama, A.2
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Abe, S.5
Uo, M.6
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25
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67349269545
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Proliferation of osteoblast cells on nanotubes
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in press
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Watari F, Akasaka T, Li X, Uo M, Yokoyama A. Proliferation of osteoblast cells on nanotubes, Front Mater Sci. 2009. in press.
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Front Mater Sci
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Watari, F.1
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26
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64949113517
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Maturation of osteoblast-like SaoS2 induced by carbon nanotubes
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Li X, Gao H, Uo M, Sato Y, Akasaka T, Abe S, Feng Q, Cui F, Liu X, Watari F. Maturation of osteoblast-like SaoS2 induced by carbon nanotubes. Biomedical Materials 2009;4:15005-15012.
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Biomedical Materials
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Li, X.1
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27
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70349100114
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Effect of carbon nanotubes on cellular functions in vitro
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in press
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Li X, Gao H, Uo M, Sato Y, Akasaka T, Feng Q, Cui F, Liu X, Watari F. Effect of carbon nanotubes on cellular functions in vitro. J Biomed Mater Res A 2008. in press.
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J Biomed Mater Res a
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Li, X.1
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28
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40549093981
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Carbohydrate coating of carbon nanotubes for biological recognition
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Akasaka T, Watari F. Carbohydrate coating of carbon nanotubes for biological recognition, Fullerenes, Nanotubes, and Carbon Nanostructure, 2008;16:114-1250.
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Fullerenes, Nanotubes, and Carbon Nanostructure
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Akasaka, T.1
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Capture of bacteria by flexible carbon nanotubes
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Akasaka T, Watari F, Capture of bacteria by flexible carbon nanotubes, Acta Biomaterialia 2009;5:607-612.
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Acta Biomaterialia
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Akasaka, T.1
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30
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84890007845
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Biochemical and pathological responses of cells and tissue to micro-and nanoparticles from titanium and other materials
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Ed. M.Epple and E. Bauerlein, WELEY-VCH, Weinheim
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Watari F, Tamura K, Yokoyama A, Shibata K, Akasaka T, Fugetsu B, Asaoka K, Uo M, Totsuka Y, Tohji K. Biochemical and pathological responses of cells and tissue to micro- and nanoparticles from titanium and other materials, Handbook of Biomineralization, Ed. M.Epple and E.Bauerlein, WELEY-VCH, Weinheim, 2007, pp.127- 144.
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Handbook of Biomineralization
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Watari, F.1
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31
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67049085674
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Visualization of invasion into the body and international diffusion of nanoparticles
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Key Engineering Materials Vols.369-398, Trans Tech Publ
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Watari F, Abe S, Rosca ID, Yokoyma A, Uo M, Akasaka T, Takashi N, Totsuka Y, Hirata E, Matsuoka M, Kosuke K, Itoh S, Yawaka Y. Visualization of invasion into the body and international diffusion of nanoparticles, Bioceramics Vol.21 Part 1, (Key Engineering Materials Vols.369-398, Trans Tech Publ, 2009, pp.569-572.
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Bioceramics
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Watari, F.1
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Takashi, N.7
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32
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67049153108
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Internal diffusion of micro/nanoparticles inside body
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Key Engineering Materials Vols.361-363, Trans.Tech.Publ.
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Watari F, Abe S, Tamura K, Uo M, Yokoyama A, Totsuka Y. Internal diffusion of micro/nanoparticles inside body. Bioceramics Vol.20 Part 1, (Key Engineering Materials Vols.361-363), Trans.Tech.Publ., 2008, pp. 95-98.
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Bioceramics
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33
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80052439148
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Internal motion of micro/nano particles of titanium oxides and others in the body
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Watari F, Abe S, Koyama C, Yokoyama A, Akasaka T, Uo M, Matsuoka M, Totsuka Y, Esaki M, Morita M, Yonezawa T. Internal motion of micro/nano particles of titanium oxides and others in the body, Proc Asian BioCeramics Sym 2007.2007:13-18.
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Proc Asian BioCeramics Sym 2007
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Yonezawa, T.11
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34
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67650863165
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Biodistribution imaging of magnetic nanoparticles in mice compared with X-ray scanning analytical microscopy and magnetic resonance imaging
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in press
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Abe S, Kida I, Esaki M, Akasaka T, Uo M, Sato Y, Jeyadevan B, Kuboki Y, Morita M, Tohji K, Watari F. Biodistribution imaging of magnetic nanoparticles in mice compared with X-ray scanning analytical microscopy and magnetic resonance imaging. Bio-Med Mater Eng, in press.
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Bio-Med Mater Eng
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Abe, S.1
Kida, I.2
Esaki, M.3
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Uo, M.5
Sato, Y.6
Jeyadevan, B.7
Kuboki, Y.8
Morita, M.9
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Watari, F.11
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35
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67049149923
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Internal distribution of several inorganic microparticles in mice
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Key Engineering Materials Vols.396-398, Trans Tech Publ.
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Abe S, Koyama C, Akasaka T, Uo M, Kuboki K, Watari F. Internal distribution of several inorganic microparticles in mice. Bioceramics Vol.21 Part 1, (Key Engineering Materials Vols.396-398, Trans Tech Publ. 2009, pp.539-542.
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Bioceramics
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Abe, S.1
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36
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67650877211
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Time-dependence and visualization of TiO2 and Pt particle biodistribution in mice
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in press
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Abe S, Koyama C, Esaki M, Akasaka T, Uo M, Kuboki K, Watari F. Time-dependence and visualization of TiO2 and Pt particle biodistribution in mice. J Nanosci Nanotechnol. in press.
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J Nanosci Nanotechnol
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Abe, S.1
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37
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34548104169
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Surface carbonization of titanium for abrasion-resistant implant materials
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Zhu Y, Watari F. Surface carbonization of titanium for abrasion-resistant implant materials. Dent Mater J. 2007;26:245-253.
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Dent Mater J
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38149079988
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Comparison of morphology and behavior of carbon nanotubes and asbestos
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Watari F, Inoue M, Akasaka T, Sakaguchi N, Ichinose H, Uo M. Comparison of morphology and behavior of carbon nanotubes and asbestos, Proc 6th Asian Bio Ceramics Symp 2006. 2006:142-145.
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Proc 6th Asian Bio Ceramics Symp 2006
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Conversion of functions by nanosizing-from osteoconductivity to bone substitutional properties in apatite
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Ed.Watanabe M, Okuno O, Springer, Japan
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Watari F, Yokoyama A, Gelinsky M, Pompe W. Conversion of functions by nanosizing - from osteoconductivity to bone substitutional properties in apatite. Interface Oral Health Science 2007, Ed.Watanabe M, Okuno O, Springer, Japan, 2008, pp.139- 147.
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Interface Oral Health Science 2007
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Biomimetic porous scaffolds with high elasticity made from mineralized collagen - An animal study
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Yokoyama A, Gelinsky M, Kawasaki T, Kohgo T, König U, Pompe W, Watari F. Biomimetic porous scaffolds with high elasticity made from mineralized collagen-an animal study. J Biomed Mater Res B Appl Biomater 2005;75:464-472. (Pubitemid 41609569)
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41
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Biomaterials based on mineralised collagen an artificial extracellular bone matrix
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Ed. Watanabe M and Okuno O, Springer, Japan
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Gelinsky M, Bernhardt A, Eckert M, Hanke T, Konig U, Lode A, Reinstorf A, Vater C, Walther A, Yokoyama A, Watari F. Biomaterials based on mineralised collagen an artificial extracellular bone matrix, Interface Oral Health Science 2007, Ed. Watanabe M and Okuno O, Springer, Japan, 2007, pp.323- 328.
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42
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34249736357
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Morphological effects of variant carbonates in biomimetic hydroxyapatite
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DOI 10.1016/j.matlet.2006.12.007, PII S0167577X06014637
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Liao S, Watari F, Xu G, Ngiam M, Ramakrishna S, Chan CK. Morphological effects of variant carbonates in biomimetic hydroxyapatite. Materials Letters 2007;61: 3624-3628. (Pubitemid 46843273)
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Materials Letters
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43
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Systematic fabrication of nano-carbonated hydroxyapatite/collagen composites for biomimetic bone grafts
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DOI 10.1088/1748-3182/2/3/001, PII S1748318207404501, 001
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Liao S, Ngiam M, Watari F, Ramakrishna S, Chan CK. Systematic fabrication of nano-carbonated hydroxyapatite/collagen composites for biomimetic bone grafts. Bioinspir Biomim 2007;2:37-41. (Pubitemid 47407671)
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Bioinspiration and Biomimetics
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44
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34447635855
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The degradation of the three layered nano-carbonated hydroxyapatite/ collagen/PLGA composite membrane in vitro
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DOI 10.1016/j.dental.2006.06.045, PII S0109564106002685
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Liao S, Watari F, Zhu Y, Uo M, Akasaka T, Wang W, Xu G, Cui F. The degradation of the three layered nano-carbonated hydroxyapatite/collagen/PLGA composite membrane in vitro. Dent Mater 2007;23: 1120-1128. (Pubitemid 47088704)
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Dental Materials
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45
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44349090265
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The effect of calcium phosphate microstructure on bone-related cells in vitro
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Li X, van Blitterswijk CA, Feng Q, Cui F, Watari F. The effect of calcium phosphate microstructure on bone-related cells in vitro. Biomaterials. 2008;29:3306-3316.
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46
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67749089627
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In vitro evaluation of porous poly(L-lactic acid) scaffold reinforced by chitin fibers
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in press
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Li X, Liu X, Dong W, Feng Q, Cui F, Uo M, Akasaka T, Watari F. In vitro evaluation of porous poly(L-lactic acid) scaffold reinforced by chitin fibers. J Biomed Mater Res B Appl Biomater. 2009:in press.
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J Biomed Mater Res B Appl Biomater
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Li, X.1
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47
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77951624394
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Recent patents on polymeric scaffolds for tissue engineering
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Li X, Liu X, Yu Y, Qu X, Feng Q, Cui F, Watari F. Recent patents on polymeric scaffolds for tissue engineering. Recent Patents on Biomedical Engineering 2009;2:65-72.
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Recent Patents on Biomedical Engineering
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48
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33746648676
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Strikingly extended morphology of cells grown on carbon nanotubes
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DOI 10.1246/cl.2006.508
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Aoki N, Yokoyama A, Nodasaka Y, Akasaka T, Uo M, Sato Y, Tohji K, Watari F. Strikingly extended morphology of cells grown on carbon nanotubes. Chem Let 2006;35: 508-509. (Pubitemid 44154235)
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Chemistry Letters
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49
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Mechanical properties and biological behavior of carbon nanotube/polycarbosilane composites for implant materials
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Wang W, Watari F, Omori M, Liao S, Zhu Y, Yokoyama A, Uo M, Kimura H, Ohkubo A. Mechanical properties and biological behavior of carbon nanotube/polycarbosilane composites for implant materials. J Biomed Mater Res B Appl Biomater. 2007;82:223- 230. (Pubitemid 47015372)
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50
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47149110594
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Preparation and characteristics of a binderless carbon nanotube monolith and its biocompatibility
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Wang W, Yokoyama A, Liao S, Omori M, Zhu Y, Uo M, Akasaka T, Watari F. Preparation and characteristics of a binderless carbon nanotube monolith and its biocompatibility. Mat Sci Eng C 2008;28:1082- 1086.
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Mat Sci Eng C
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51
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Activation of human monocytes and mouse splenocytes by single- walled carbon nanotubes
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Kiura K, Sato Y, Yasuda M, Fugetsu B, Watari F, Tohji K, Shibata K. Activation of human monocytes and mouse splenocytes by single- walled carbon nanotubes, J Biomed Nanotechnology 2005;1:359-364.
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