tricalcium phosphate has been researched along with Spinal Diseases in 16 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 3 (18.75) | 18.7374 |
1990's | 1 (6.25) | 18.2507 |
2000's | 4 (25.00) | 29.6817 |
2010's | 7 (43.75) | 24.3611 |
2020's | 1 (6.25) | 2.80 |
Authors | Studies |
---|---|
Coughlan, M; Davies, M; Ferch, R; Mostert, AK; Nanda, D; Rosenberg, G; Willems, PC | 1 |
Bolger, C; Czop, S; Jones, D | 1 |
Abe, M; Kin, A; Kinoshita, M; Kosaka, R; Yazu, M | 1 |
Barbieri, D; de Bruijn, JD; Duan, R; Luo, X; Weng, J; Yuan, H | 1 |
Acebal-Cortina, G; García-Menéndez, C; Iglesias-Colao, R; Moro-Barrero, L; Suárez-Suárez, MA; Torres-Pérez, A | 1 |
Campbell, MJ; Carreon, LY; Dimar, JR; Glassman, SD; Johnson, JR; Puno, RM | 1 |
Bossis, JM; Husson, JL; Le Huec, JC; Lesprit, E; Polard, JL; Trébuchet, G | 1 |
Chen, X; Dong, Y; Hong, Y | 1 |
Adamus, M; Buřval, S; Čecháková, E; Hrabálek, L; Langová, K; Vaverka, M | 1 |
Kasai, Y; Sakakibara, T; Sudo, A; Wang, Z | 1 |
Capak, H; Erjavec, I; Ivanjko, N; Karlovic, S; Maticic, D; Milesevic, M; Pecin, M; Smajlović, A; Stokovic, N; Vrbanac, Z; Vukicevic, S | 1 |
Grynpas, MD; Kandel, RA; Pilliar, RM; Séguin, CA; Waldman, SD | 1 |
Acebal-Cortina, G; López-Muñiz, A; Moro-Barrero, L; Murcia-Mazón, A; Pérez-Redondo, J; Suárez-Suárez, M | 1 |
Charles, P; Eriksen, EF; Hasling, C; Melsen, F; Mosekilde, L | 1 |
Driessens, FC; Geerards, J; van der Korst, JK | 1 |
4 trial(s) available for tricalcium phosphate and Spinal Diseases
Article | Year |
---|---|
A Prospective, Randomized, Multicenter Study Comparing Silicated Calcium Phosphate versus BMP-2 Synthetic Bone Graft in Posterolateral Instrumented Lumbar Fusion for Degenerative Spinal Disorders.
Topics: Adult; Aged; Bone Morphogenetic Protein 2; Bone Transplantation; Calcium Phosphates; Female; Humans; Lumbar Vertebrae; Male; Middle Aged; Pain Measurement; Spinal Diseases; Spinal Fusion; Treatment Outcome | 2018 |
Evaluation of an increased strut porosity silicate-substituted calcium phosphate, SiCaP EP, as a synthetic bone graft substitute in spinal fusion surgery: a prospective, open-label study.
Topics: Adolescent; Adult; Aged; Aged, 80 and over; Bone Substitutes; Calcium Phosphates; Female; Follow-Up Studies; Humans; Male; Middle Aged; Porosity; Prospective Studies; Silicates; Spinal Diseases; Spinal Fusion; Treatment Outcome; Young Adult | 2019 |
Evaluation of autologous platelet concentrate for intertransverse lumbar fusion.
Topics: Blood Transfusion, Autologous; Bone Substitutes; Calcium Phosphates; Durapatite; Female; Follow-Up Studies; Humans; Lumbar Vertebrae; Male; Middle Aged; Platelet Transfusion; Prospective Studies; Radiography; Spinal Diseases; Spinal Fusion; Treatment Outcome | 2011 |
Initial fusion rates with recombinant human bone morphogenetic protein-2/compression resistant matrix and a hydroxyapatite and tricalcium phosphate/collagen carrier in posterolateral spinal fusion.
Topics: Adult; Aged; Aged, 80 and over; Bone Morphogenetic Protein 2; Bone Morphogenetic Proteins; Bone Transplantation; Calcium Phosphates; Collagen; Drug Carriers; Durapatite; Female; Follow-Up Studies; Humans; Lumbar Vertebrae; Male; Middle Aged; Prospective Studies; Recombinant Proteins; Smoking; Spinal Diseases; Spinal Fusion; Statistics, Nonparametric; Transforming Growth Factor beta | 2005 |
12 other study(ies) available for tricalcium phosphate and Spinal Diseases
Article | Year |
---|---|
Efficacy of novel-concept pedicle screw fixation augmented with calcium phosphate cement in the osteoporotic spine.
Topics: Aged; Aged, 80 and over; Biomechanical Phenomena; Bone Cements; Bone Screws; Cadaver; Calcium Phosphates; Humans; Linear Models; Lumbar Vertebrae; Osteoporosis; Spinal Diseases; Statistics, Nonparametric; Stress, Mechanical | 2005 |
Submicron-surface structured tricalcium phosphate ceramic enhances the bone regeneration in canine spine environment.
Topics: Animals; Bone Regeneration; Calcium Phosphates; Ceramics; Dogs; Male; Prostheses and Implants; Spinal Diseases | 2016 |
[Interbody arthrodesis of the lumbar vertebrae using retroperitoneal videoendoscopy. A preliminary study of 38 cases].
Topics: Adult; Aged; Bacterial Infections; Biocompatible Materials; Bone Substitutes; Bone Transplantation; Calcium Phosphates; Casts, Surgical; Chylous Ascites; Female; Follow-Up Studies; Humans; Intervertebral Disc; Joint Instability; Laparoscopy; Lumbar Vertebrae; Magnetic Resonance Imaging; Male; Middle Aged; Osteoarthritis; Paresthesia; Radiography; Retroperitoneal Space; Spinal Diseases; Spinal Fractures; Spinal Fusion; Spondylitis; Video Recording | 1998 |
Tissue-engineered bone formation in vivo for artificial laminae of the vertebral arch using β-tricalcium phosphate bioceramics seeded with mesenchymal stem cells.
Topics: Animals; Bone Morphogenetic Protein 2; Bone Regeneration; Bone Substitutes; Calcium Phosphates; Cells, Cultured; Ceramics; Immunohistochemistry; Laminectomy; Magnetic Resonance Imaging; Mesenchymal Stem Cell Transplantation; Mesenchymal Stem Cells; Microscopy, Electron, Scanning; Osteogenesis; Rabbits; Spinal Diseases; Spine; Time Factors; Tissue Engineering; Tomography, X-Ray Computed; Treatment Outcome | 2013 |
[Use of artifiial bone in lateral interbody fusion of the lumbar spine: a prospective radiographic study].
Topics: Adult; Aged; Bone Substitutes; Calcium Phosphates; Female; Humans; Lumbar Vertebrae; Male; Middle Aged; Prospective Studies; Prostheses and Implants; Spinal Diseases; Spinal Fusion; Tomography, X-Ray Computed; Treatment Outcome; Young Adult | 2014 |
Porosity of β-tricalcium phosphate affects the results of lumbar posterolateral fusion.
Topics: Aged; Aged, 80 and over; Biocompatible Materials; Calcium Phosphates; Case-Control Studies; Cross-Sectional Studies; Female; Humans; Lumbar Vertebrae; Male; Middle Aged; Porosity; Radiography; Spinal Diseases; Spinal Fusion; Treatment Outcome | 2013 |
Long-term posterolateral spinal fusion in rabbits induced by rhBMP6 applied in autologous blood coagulum with synthetic ceramics.
Topics: Animals; Bone Substitutes; Bone Transplantation; Calcium Phosphates; Ceramics; Lumbar Vertebrae; Models, Animal; Rabbits; Spinal Diseases; Spinal Fusion | 2022 |
Tissue engineered nucleus pulposus tissue formed on a porous calcium polyphosphate substrate.
Topics: Animals; Calcium Phosphates; Cattle; Cells, Cultured; Collagen; Compressive Strength; Intervertebral Disc; Spinal Diseases; Tissue Engineering | 2004 |
Radiographic analysis of fusion mass using fresh autologous bone marrow with ceramic composites as an alternative to autologous bone graft.
Topics: Bone Marrow Transplantation; Bone Substitutes; Bone Transplantation; Calcium Phosphates; Female; Humans; Male; Middle Aged; Radiography; Spinal Diseases; Spinal Fusion; Treatment Outcome | 2007 |
[Treatment with sodium fluoride, calcium phosphate and vitamin D2 in spinal osteoporosis. Effect on calcium balance, calcium metabolism, bone remodelling, and side effects].
Topics: Aged; Bone Regeneration; Calcium; Calcium Phosphates; Ergocalciferols; Female; Humans; Middle Aged; Osteoporosis; Sodium Fluoride; Spinal Diseases | 1986 |
A hereditary type of idiopathic articular chondrocalcinosis. Survey of a pedigree.
Topics: Acute Disease; Adult; Aged; Arthritis, Rheumatoid; Calcium Phosphates; Chondrocalcinosis; Chronic Disease; Female; Humans; Knee; Knee Joint; Male; Middle Aged; Osteoarthritis; Pedigree; Radiography; Sex Factors; Shoulder; Shoulder Joint; Spinal Diseases; Spondylitis, Ankylosing; Synovial Fluid; X-Ray Diffraction | 1974 |
Chondrocalcinosis.
Topics: Calcinosis; Calcium Phosphates; Cartilage, Articular; Diagnosis, Differential; Female; Gout; Humans; Male; Osteoarthritis; Spinal Diseases; Synovial Fluid; Uric Acid | 1968 |