Biological Amnion Prevents Flexor Tendon Adhesion in Zone II: A Controlled, Multicentre Clinical Trial
暂无分享,去创建一个
Siyu Tian | Chun-jie Liu | Guo-li Liu | Jiang-bo Bai | Kun-lun Yu | D. Tian | Dehu Tian | Chunjie Liu
[1] Chun-jie Liu,et al. Experimental study of tendon sheath repair via decellularized amnion to prevent tendon adhesion , 2018, PloS one.
[2] P. McGahan,et al. Anterior Cruciate Ligament Reconstruction With Amnion Biological Augmentation , 2018, Arthroscopy techniques.
[3] Peter Shaw,et al. A Comparison Between Rheological Properties of Intra-articular Hyaluronic Acid Preparations and Reported Human Synovial Fluid , 2018, Advances in Therapy.
[4] R. Bohara,et al. Decellularized amnion scaffold with activated PRP: a new paradigm dressing material for burn wound healing , 2018, Cell and Tissue Banking.
[5] D. Docheva,et al. Boosting tendon repair: interplay of cells, growth factors and scaffold-free and gel-based carriers , 2018, Journal of Experimental Orthopaedics.
[6] N. J. Summers,et al. Amnion: The Ideal Scaffold for Treating Full-Thickness Wounds of the Lower Extremity. , 2018, Clinics in podiatric medicine and surgery.
[7] C. Fernández‐de‐las‐Peñas,et al. Effects of Low‐Load Exercise on Postneedling‐Induced Pain After Dry Needling of Active Trigger Point in Individuals With Subacromial Pain Syndrome , 2017, PM & R : the journal of injury, function, and rehabilitation.
[8] Alfred C. Gellhorn,et al. The Use of Dehydrated Human Amnion/Chorion Membrane Allograft Injection for the Treatment of Tendinopathy or Arthritis: A Case Series Involving 40 Patients , 2017, PM & R : the journal of injury, function, and rehabilitation.
[9] J. Snedeker,et al. Tendon injury and repair - A perspective on the basic mechanisms of tendon disease and future clinical therapy. , 2017, Acta biomaterialia.
[10] S. Prakasam,et al. A Randomized Split-Mouth Clinical Trial on Effectiveness of Amnion-Chorion Membranes in Alveolar Ridge Preservation: A Clinical, Radiologic, and Morphometric Study. , 2017, The International journal of oral & maxillofacial implants.
[11] A. Dhawan,et al. Genetic Factors in Tendon Injury: A Systematic Review of the Literature , 2017, Orthopaedic journal of sports medicine.
[12] Michael Nerlich,et al. Tendon injuries , 2017, EFORT open reviews.
[13] U. Müller-Ladner,et al. Disease-Specific Effects of Matrix and Growth Factors on Adhesion and Migration of Rheumatoid Synovial Fibroblasts , 2017, The Journal of Immunology.
[14] John P McQuilling,et al. Proteomic Comparison of Amnion and Chorion and Evaluation of the Effects of Processing on Placental Membranes. , 2017, Wounds : a compendium of clinical research and practice.
[15] H. Alfredson,et al. The effects of substance P and acetylcholine on human tenocyte proliferation converge mechanistically via TGF-β1 , 2017, PloS one.
[16] M. Tenenhaus. The Use of Dehydrated Human Amnion/Chorion Membranes in the Treatment of Burns and Complex Wounds: Current and Future Applications , 2017, Annals of plastic surgery.
[17] Zhongmin Shi,et al. A Prospective Study of Platelet-Rich Plasma as Biological Augmentation for Acute Achilles Tendon Rupture Repair , 2016, BioMed research international.
[18] Da-zhuo Shi,et al. Panax quinquefolium saponin combined with dual antiplatelet drugs inhibits platelet adhesion to injured HUVECs via PI3K/AKT and COX pathways. , 2016, Journal of ethnopharmacology.
[19] M. Røkkum,et al. Predictors of outcome after primary flexor tendon repair in zone 1, 2 and 3 , 2016, The Journal of hand surgery, European volume.
[20] M. Barbeck,et al. Foreign Body Giant Cell-Related Encapsulation of a Synthetic Material Three Years After Augmentation. , 2016, The Journal of oral implantology.
[21] F. Sarrafzadeh-Rezaei,et al. Evaluation of tendon healing using fibroblast like synoviocytes in rabbits: A biomechanical study , 2016, Veterinary research forum : an international quarterly journal.
[22] H. Ochi,et al. A Comparison of the Process of Remodeling of Hydroxyapatite/Poly-D/L-Lactide and Beta-Tricalcium Phosphate in a Loading Site , 2015, BioMed research international.
[23] W. Cui,et al. Optimization of intrinsic and extrinsic tendon healing through controllable water-soluble mitomycin-C release from electrospun fibers by mediating adhesion-related gene expression. , 2015, Biomaterials.
[24] C. Kim,et al. Amniotic mesenchymal stem cells with robust chemotactic properties are effective in the treatment of a myocardial infarction model. , 2013, International journal of cardiology.
[25] M. Amer,et al. Human amnion as a temporary biologic barrier after hysteroscopic lysis of severe intrauterine adhesions: pilot study. , 2010, Journal of minimally invasive gynecology.
[26] Natalia Juncosa-Melvin,et al. Functional tissue engineering for tendon repair: A multidisciplinary strategy using mesenchymal stem cells, bioscaffolds, and mechanical stimulation , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[27] O. Herek,et al. The use of amniotic membrane in flexor tendon repair: an experimental model , 2002, Archives of Orthopaedic and Trauma Surgery.
[28] J. W. Strickland,et al. Digital function following flexor tendon repair in Zone II: A comparison of immobilization and controlled passive motion techniques. , 1980, The Journal of hand surgery.