Anticancer Effect of Dye-sensitized TiO_2 Nanocrystals by Polychromatic Visible Light Irradiation
スポンサーリンク
概要
- 論文の詳細を見る
- 2006-05-05
著者
-
KAWASHIMA Norimichi
Faculty of Engineering, Toin University of Yokohama
-
Tokuoka Yoshikazu
Faculty of Biomedical Engineering, Toin University of Yokohama
-
Miyasaka Tsutomu
Faculty Of Biomedical Engineering Toin University Of Yokohama
-
Tokuoka Yoshikazu
Faculty Of Biomedical Engineering Toin University Of Yokohama
-
YAMADA Mao
Faculty of Biomedical Engineering, Toin University of Yokohama
-
Kawashima Norimichi
Faculty Of Biomedical Engineering Toin University Of Yokohama
-
Yamada Mao
Faculty Of Biomedical Engineering Toin University Of Yokohama
関連論文
- Apoptosis Induction in Cancer Cells by Ultrasound Exposure
- Basic Study on Dispersion and Surface Modification of Diamond Powders by Sonochemical Reaction
- Basic study on dispersion and surface modification of diamond powders by ultrasound exposure
- Development of Ultrasound Transducer with Double-Peak-Type Frequency Characteristics for Harmonic Imaging and Subharmonic Imaging
- Optimum ultrasound exposure condition for excitation of nonlinear behavior of microbubbles coated with surfactant
- Oxidation Decomposition of Unsaturated Fatty Acids by Singlet Oxygen in Phospholipid Bilayer Membranes
- Photodynamic Therapy for Cancer Cells Using a Flash Wave Light Xenon Lamp
- Delta-Aminolevulinic Acid-Based Photodynamic Therapy for Acne on the Body
- Solubilization of Binary Perfumes by Sodium Dodecyl Sulfate Aqueous Solutions
- Solubilization of Some Synthetic Perfumes by Ionic and Non-Ionic Surfactants
- Evaluation of the Hardness of Lipid Bilayer Membranes of Liposomes by the Ultrasound Attenuation Method
- Anticancer Effect of Dye-sensitized TiO_2 Nanocrystals by Polychromatic Visible Light Irradiation
- Basic Study on Dispersion and Surface Modification of Diamond Powders by Sonochemical Reaction
- Apoptosis Induction in Cancer Cells by Ultrasound Exposure
- Development of Ultrasound Exposure System of Four Piezoelectric Ceramic Vibrators with Operating Frequency of 150 kHz for Dispersion of Nanometer-Sized Diamond Particles
- Effects of Ultrasound Exposure Time on Nanometer-Sized Diamond Particles Dispersion