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陳永仁 醫師

足踝關節重建、大姆趾外翻、人工關節置換、腳部足踝運動傷害、糖尿病足、超音波骨折促癒治療、骨科低能量體外震波治療

教職 : 副教授

醫師網路掛號

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語言

  • 國語,英語,閩南語

現職

  • 長庚紀念醫院骨科部副教授
  • 台灣足踝醫學會理事長

學歷

  • 美國南加大骨科研究員
  • 中國醫藥大學醫學系畢業
  • 美國舊金山柏克來大學骨科研究員

經歷

  • 長庚醫院急診骨科主任
  • 中華民國運動醫學會理事
  • 長庚醫院糖尿病足照護負責人
  • AOEA (東亞國際骨折固定重建醫學會)理事

學會與認證

  • 台灣骨科足踝醫學會
  • 外科醫學會
  • 骨科醫學會

論文及期刊發表

  • Tapentadol immediate-release for acute postbunionectomy pain: a phase 3, randomized, double-blind, placebo-controlled, parallel-group study in Taiwan.
  • Arthroscopy-assisted reduction of posteromedial tibial plateau fractures with buttress plate and cannulated screw construct.
  • Post-traumatic Acromioclavicular Instability Reconstructed with Coracoacromial Ligament and Conjoined Tendon: a Preliminary Report.
  • Biomechanical Influence of Pin Placement and Elbow Angle on Joint Distraction and Hinge Alignment for an Arthrodiatasis Elbow-Pin-Fixator Construct.
  • Biomechanical Effects of Disc Degeneration and Hybrid Fixation on the Transition and Adjacent Lumbar Segments: Trade-off between Junctional Problem, Motion Preservation, and Load Protection.
  • Reasons for failure of surgical treatment in 25 tibial plateau fractures.
  • Secreted frizzled-related protein 1 modulates glucocorticoid attenuation of osteogenic activities and bone mass.
  • Temporal and spatial expression of bone morphogenetic proteins in shock wave-promoted healing of segmental defect in rats.
  • Pertussis toxin-sensitive Gαi protein and ERK-dependent pathways mediate ultrasound promotion of osteogenic transcription in human osteoblast.
  • Shock wave application enhances pertussis toximn protein-sensitive bone formation of segmental femoral defect in rats.
  • Activation of extracellular signal-regulated kinase (ERK) and p38 kinase in shock wave-promoted bone regeneration of segmental defect in rats.
  • Nitric oxide mediates ultrasound-induced hypoxia-inducible factor-1α activation and vascular endothelial growth factor-A expression in human osteoblasts.
  • Recruitment of mesenchymal stem cells and expression of TGF-β1 and VEGF in the early stage of shock wave-promoted bone regeneration of segmental defect in rats.
  • Extracorporeal shock waves promote healing of collagenase-induced Achilles tendonitis and increase TGF-β1 and IGF-I expression.
  • The expression of osteogenic factors in low-intensity pulsed ultrasound-enhanced healing of femoral nonunion in rats.
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