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School Of Materials Science Japan Advanced Institute Of Science And Technology | 論文
- Differentiation of Human Bone Marrow Mesenchymal Stem Cells to Chondrocytes for Construction of Three-dimensional Cartilage Tissue
- Measurement of Glucose Concentration by Colorimetric Method Based on Aggregation of Gold Nanoparticles
- Low-Resistivity Phosphorus-Doped Polycrystalline Silicon Thin Films Formed by Catalytic Chemical Vapor Deposition and Successive Rapid Thermal Annealing
- Catalytic Chemical Sputtering: A Novel Method for Obtaining Large-Grain Polycrystalline Silicon : Surfaces, Interfaces, and Films
- 23pWX-7 Investigation of Heterojunction Interfaces in Organic Light-emitting Diodes by using Optical Second Harmonic Generation Measurements
- Cellular Toxicity of Cadmium Ions and Their Detoxification by Heavy Metal-Specific Plant Peptides, Phytochelatins, Expressed in Mammalian Cells^1
- Utilization of Immobilized Archaeal Chaperonin for Enzyme Stabilization
- Enhanced Signal Transduction by a Directly Fused Protein of Interleukin-6 and Its Receptor
- Unique Nucleoid Structure during Cell Division of Thermococcus kodakaraensis KOD1
- Alteration of Product Specificity of Cyclodextrin Glucanotransferase from Thermococcus sp.B1001 by Site-Directed Mutagenesis
- Effect of Polyamines on Histone-Induced DNA Compaction of Hyperthermophilic Archaea
- 8.RuO_4による穏和な酸化反応を利用した石炭脂肪族成分の構造解析
- 3P358 自由エネルギー計算によるAzurin(I)-Cytochrome c_(III)複合体のドッキング構造安定性に関する研究(その他,ポスター発表,第45回日本生物物理学会年会)
- 2P284 Free Energy Calculation of Spaghetti-like Nanoclusters by using The Energetic Representation(Native and artificial biomembranes-dynamics,Poster Presentations)
- 1C1715 NMRによる異方的スピン間相互作用観測と生物情報学的部分構造探索を利用した新しい蛋白質立体構造予測法の開発
- 1C1700 マジック角試料回転NMRを利用した溶液中蛋白質の残余双極子効果および化学シフト異方性効果の観測
- 21pPSA-5 Optical Second Harmonic Generation Study of CO Adsorption on Au(887)
- 26p-YJ-8 超微粒子磁性体Pdの磁化測定
- Syntheses of the Novel Acidic and Basic Ligands and Superlattice Formation from Gold Nanoparticles through Interparticle Acid-Base Interaction
- Novel Synthesis of FePt Nanoparticles and Magnetic Properties of Their Self-assembled Superlattices