Shozo Takagi mainly investigates Cement, Composite material, Calcium, Ultimate tensile strength and Tetracalcium phosphate. His Cement study incorporates themes from Scanning electron microscope, Biomaterial, Mass fraction and Nuclear chemistry. Many of his studies on Nuclear chemistry involve topics that are commonly interrelated, such as Mineralogy.
His Calcium study which covers Phosphate that intersects with Bone healing. His Ultimate tensile strength research includes elements of ttcp and Cancellous bone. Shozo Takagi performs multidisciplinary studies into Tetracalcium phosphate and Anhydrous in his work.
Shozo Takagi mostly deals with Calcium, Nuclear chemistry, Cement, Tetracalcium phosphate and Dentistry. His study in Calcium is interdisciplinary in nature, drawing from both Chromatography, Saliva, Phosphate and Titration. His Nuclear chemistry research is multidisciplinary, relying on both Enamel paint, Remineralisation, Sodium fluoride, Mass fraction and Fluorine.
His Cement study integrates concerns from other disciplines, such as Ultimate tensile strength, Biocompatibility and Mineralogy. Shozo Takagi has included themes like Inorganic chemistry, Bone regeneration and Dissolution in his Tetracalcium phosphate study. The Dentistry study combines topics in areas such as Dentifrice and Implant.
Shozo Takagi mainly focuses on Calcium, Nuclear chemistry, Cement, Dentistry and Tetracalcium phosphate. His study focuses on the intersection of Calcium and fields such as Biomedical engineering with connections in the field of Viability assay, Cell survival and Calcium phosphate cement. His Nuclear chemistry study also includes fields such as
His research integrates issues of Biocompatibility, Phosphate, Fluorapatite and Ultimate tensile strength in his study of Cement. In Dentistry, Shozo Takagi works on issues like Filler, which are connected to Silanization, Nanoparticle, Biomaterial, Remineralisation and Nanocomposite. His studies in Tetracalcium phosphate integrate themes in fields like Calcium carbonate, Bone regeneration, Sodium and Connective tissue.
His main research concerns Dentistry, Flexural strength, Biomedical engineering, Filler and Particle size. His work deals with themes such as Ultimate tensile strength and Calcium, which intersect with Dentistry. His primary area of study in Calcium is in the field of Calcium phosphate cement.
The various areas that Shozo Takagi examines in his Flexural strength study include Composite number, Mass fraction and Nuclear chemistry. His Biomedical engineering research is multidisciplinary, incorporating elements of Self-healing hydrogels, Tetracalcium phosphate, Bone cement and Cancellous bone. His Particle size research integrates issues from Chitosan, Indentation hardness, Elastomer, Composite material and Dissolution.
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BoneSource™ hydroxyapatite cement: A novel biomaterial for craniofacial skeletal tissue engineering and reconstruction
Craig D. Friedman;Peter D. Costantino;Shozo Takagi;Lawrence C. Chow.
Journal of Biomedical Materials Research (1998)
Formation of macropores in calcium phosphate cement implants.
Shozo Takagi;Laurence C. Chow.
Journal of Materials Science: Materials in Medicine (2001)
Formation of hydroxyapatite in new calcium phosphate cements.
S. Takagi;L.C. Chow;K. Ishikawa.
Biomaterials (1998)
Calcium phosphate hydroxyapatite precursor and methods for making and using the same
Chow Laurence C;Takagi Shozo.
(1993)
Mechanical properties and biochemical activity of remineralizing resin-based Ca–PO4 cements
Sabine H Dickens;Glenn M Flaim;Shozo Takagi.
Dental Materials (2003)
Structures of Biological Minerals in Dental Research.
Mathai Mathew;Shozo Takagi.
Journal of Research of the National Institute of Standards and Technology (2001)
Properties and mechanisms of fast-setting calcium phosphate cements
Kunio Ishikawa;Shozo Takagi;Laurence C. Chow;Yoshiko Ishikawa.
Journal of Materials Science: Materials in Medicine (1995)
Premixed calcium phosphate cement pastes
Laurence C. Chow;Shozo Takagi.
Journal of Biomedical Materials Research Part B (2002)
Synergistic reinforcement of in situ hardening calcium phosphate composite scaffold for bone tissue engineering.
Hockin H K Xu;Janet B Quinn;Shozo Takagi;Laurence C Chow.
Biomaterials (2004)
Effects of hydroxypropyl methylcellulose and other gelling agents on the handling properties of calcium phosphate cement
A. Cherng;S. Takagi;L. C. Chow.
Journal of Biomedical Materials Research (1997)
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