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Dept. Of Energy Science And Engineering Musashi Inst. Of Tech. | 論文
- Cell-Penetrating Peptides as Adenovirus Vector Carrier
- Fast Binding Kinetics and Conserved 3D Structure Underlie the Antagonistic Activity of Mutant TNF : Useful Information for Designing Artificial Proteo-Antagonists
- What is the Optimum Minimum Segment Size Used in Step and Shoot IMRT for Prostate Cancer?
- Selective Enhancer of Tumor Vascular Permeability for Optimization of Cancer Chemotherapy (Pharmacognosy)
- High-dose-rate Brachytherapy Combined with Long-term Hormonal Therapy for High-risk Prostate Cancer : Results of a Retrospective Analysis
- Anti-angiogenic Effects of Dimethyl Sulfoxide on Endothelial Cells(Pharmacognosy)
- Preparation and Biological Activities of a Bivalent Poly(Ethylene Glycol) Hybrid Containing an Active Site and Its Synergistic Site of Fibronectin
- 3P-081 ファージ表面提示法を用いたTNFR1指向性リンフォトキシンαの創製とその特性評価(蛋白質工学,進化工学,第46回日本生物物理学会年会)
- Selective Enhancement by Tumor Necrosis Factor-α of Vascular Permeability of New Blood Vessels Induced with Agarose Hydrogel-entrapped Meth-A Fibrosarcoma Cells
- Novel correction methods as alternatives for the six-dimensional correction in CyberKnife treatment
- Late complications after high-dose-rate interstitial brachytherapy for tongue cancer
- Brachytherapy for Early Oral Tongue Cancer : Low Dose Rate to High Dose Rate
- Changes in Performance Status of Elderly Patients after Radiotherapy
- Role of Mitochondrial DNA in Radiation Exposure
- Ultrasonographic Monitoring of High Dose Rate Interstitial Implant using Template Technique for Oral Tongue Cancer
- OS4(5)-20(OS04W0320) Residual Stress Analyses in Laser Single Pulse Irradiated Area Using Synchrotron Radiation
- X-Ray Fractography Using Synchrotron Radiation : Residual Stress Distribution Just beneath Fatigue Fracture Surface
- New ambulatory implant technique of high-dose-rate interstitial brachytherapy for prostate cancer
- Amino Acids and Peptides.XXXVIII.Facile Synthesis of Laminin-Related Peptide-Poly(Ethylene Glycol)Hybrids by the Solid Phase Method
- A Bivalent Poly (ethylene glycol) Hybrid Containing an Active Site (RGD) and a Synergistic Site of Fibronectin