SATO Makoto | Department of Applid Chemistry, Graduate School of Engineering, Tohoku University
スポンサーリンク
概要
関連著者
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SATO Makoto
Department of Applid Chemistry, Graduate School of Engineering, Tohoku University
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松本 聰
秋田県立大・生物資源科学部
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IMAIZUMI Masue
Department of Hematology and Oncology, Miyagi Children's Hospital
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Matsumoto Satoshi
Department Of Pathology Nara Medical University
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Saisho-hattori Takako
宮城県立こども病院 血液腫瘍科
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SUZUKI Akira
Division of Embryonic and Genetic Engineering Medical Institute of Bioregulation, Kyushu University
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Hoshi Senji
Department Of Urology Yamagata Prefectural Central Hospital
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Kumagai K
The Cardiovascular Center Yokosuka Kyousai Hospital
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Tsuchiya S
Department Of Pediatrics Tohoku University School Of Medicine
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Saitoh Seiichi
Department Of Urology Tohoku University Graduate School Of Medicine
著作論文
- Differential Detection of Hemotropic Mycoplasma Species in Cattle by Melting Curve Analysis of the PCR Products
- Phylogenetic Analysis of the 16S rRNA Gene of Anaplasma Species Detected from Japanese Serows (Capricornis crispus)
- Determination of Aluminium in Human Serum by Kinetic Differention Mode Reversed Phase Micellar HPLC with Fluorometric Detection
- EFFECTS OF INTRACORONARY THROMBOLYSIS THERAPY IN ACUTE MYOCARDIAL INFARCTION : Ichemic Heart Disease (I) : 46th Annual Scientific Meeting, Japanese Circulation Society
- Significance of simultaneous determination of serum human chorionic gonadotropin (hCG) and hCG-βin testicular tumor patients
- The significance of resections for residual masses after chemotherapy in metastatic testicular tumors
- Collaborative work on evaluation of ovarian toxicity : 7) Effects of 2- or 4-week repeated dose studies and fertility study of cyclophosphamide in female rats
- Lack of Role of Platelet Aggregation on 2-Bromoethylamine Hydrobromide-induced Renal Papillary Necrosis in Rats
- The Absolute Number of Peripheral Blood CD34+ Cells Predicts a Timing for Apheresis and Progenitor Cell Yield in Patients with Hematologic Malignancies and Solid Tumors
- Evaluation of Hematological Reconstitution Potential of Autologous Peripheral Blood Progenitor Cells Cryopreserved by a Simple Controlled-Rate Freezing Method