Page last updated: 2024-08-22

calcium phosphate, monobasic, anhydrous and Bone Fractures

calcium phosphate, monobasic, anhydrous has been researched along with Bone Fractures in 8 studies

Research

Studies (8)

TimeframeStudies, this research(%)All Research%
pre-19905 (62.50)18.7374
1990's3 (37.50)18.2507
2000's0 (0.00)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Alpar, EK1
Mang, WL; Walter, C1
Beck, LS; DeGuzman, L; Lee, WP; Nguyen, T; Ongpipattanakul, B; Osaka, G; Wong, R; Zioncheck, TF1
Linhart, W; Rueger, JM; Sommerfeldt, D1
Eskander, E; Hedman, TP; Lawrence, TN; Poser, RD; Thordarson, DB; Yetkinler, DN1
Bucholz, RW1
Bucholz, RW; Carlton, A; Holmes, RE1
Charles, P; Jensen, FT; Mosekilde, L1

Other Studies

8 other study(ies) available for calcium phosphate, monobasic, anhydrous and Bone Fractures

ArticleYear
Can drugs influence the bone healing process?
    Journal of clinical and hospital pharmacy, 1984, Volume: 9, Issue:4

    Topics: Bone and Bones; Bony Callus; Calcium Phosphates; Collagen; Fractures, Bone; Humans; Wound Healing

1984
[Artificial bone (tricalcium phosphate) in facial surgery (author's transl)].
    Laryngologie, Rhinologie, Otologie, 1982, Volume: 61, Issue:7

    Topics: Calcium Phosphates; Facial Bones; Female; Fractures, Bone; Humans; Male; Rhinoplasty; Surgery, Plastic; Wound Healing

1982
Development of tricalcium phosphate/amylopectin paste combined with recombinant human transforming growth factor beta 1 as a bone defect filler.
    Journal of biomedical materials research, 1997, Sep-05, Volume: 36, Issue:3

    Topics: Amylopectin; Animals; Biocompatible Materials; Bone and Bones; Bone Cements; Calcium Phosphates; Fractures, Bone; Humans; Rabbits; Recombinant Proteins; Transforming Growth Factor beta

1997
[Biologic reactions to calcium phosphate ceramic implantations. Results of animal experiments].
    Der Orthopade, 1998, Volume: 27, Issue:2

    Topics: Animals; Biocompatible Materials; Bone Substitutes; Bone Transplantation; Calcium Phosphates; Ceramics; Disease Models, Animal; Durapatite; Fractures, Bone; Humans; Male; Middle Aged

1998
Superior compressive strength of a calcaneal fracture construct augmented with remodelable cancellous bone cement.
    The Journal of bone and joint surgery. American volume, 1999, Volume: 81, Issue:2

    Topics: Bone Cements; Bone Plates; Bone Screws; Cadaver; Calcaneus; Calcium Phosphates; Fracture Fixation, Internal; Fractures, Bone; Humans; Tomography, X-Ray Computed

1999
Clinical experience with bone graft substitutes.
    Journal of orthopaedic trauma, 1987, Volume: 1, Issue:3

    Topics: Adolescent; Adult; Aged; Calcium Phosphates; Durapatite; Female; Fracture Fixation, Internal; Fractures, Bone; Humans; Hydroxyapatites; Male; Middle Aged; Prostheses and Implants

1987
Hydroxyapatite and tricalcium phosphate bone graft substitutes.
    The Orthopedic clinics of North America, 1987, Volume: 18, Issue:2

    Topics: Adolescent; Adult; Aged; Animals; Bone and Bones; Bone Regeneration; Calcium Phosphates; Child; Dogs; Female; Fractures, Bone; Humans; Hydroxyapatites; Male; Middle Aged; Prostheses and Implants; Radiography

1987
The effects of sodium fluoride, calcium phosphate, and vitamin D2 for one to two years on calcium and phosphorus metabolism in postmenopausal women with spinal crush fracture osteoporosis.
    Bone, 1985, Volume: 6, Issue:4

    Topics: Aged; Bone and Bones; Bone Resorption; Calcium; Calcium Phosphates; Ergocalciferols; Female; Fractures, Bone; Humans; Menopause; Middle Aged; Osteoporosis; Phosphorus; Sodium Fluoride; Spinal Injuries; Time Factors

1985