요추부 다공성 추간체유합보형재의 개발 및 기계적 성능 평가

논문상세정보

' 요추부 다공성 추간체유합보형재의 개발 및 기계적 성능 평가' 의 참고문헌

  • Use of the explant? system to remove trabecular metal augments in revision hip surgery
    Cannon TA [2014]
  • Titanium alloy surface oxide modulates the conformation of adsorbed fibronectin to enhance its binding to alpha (5) beta (1) integrins in osteoblasts
    Rapuano BE [2012]
  • The effect of cage stiffness on the rate of lumbar interbody fusion : an in vivo model using poly(Ilactic Acid)and titanium cages
    Dijk MV [2002]
  • Test Methods For Intervertebral Body Fusion Devices
  • Standard Test Method for Measuring Load Induced Subsidence of Intervertebral Body Fusion Device Under Static Axial Compression
  • Standard Specification for Rigid Polyurethane Foam for Use as a Standard Material for Testing Orthopaedic Devices and Instruments
  • Salvage of failed total ankle replacement using tantalum trabecular metal : case series
  • Revision strategies for salvaging or improving failed cylindrical cages
    McAfee PC [1999]
  • Radiologic assessment of interbody fusion using carbon fiber cages
    Santos ER [2003]
  • Prospective, multicenter evaluation of trabecular metal-enhanced titanium dental implants placed in routine dental practices: 1-year interim report from the development period(2010 to 2011)
    Schlee M [2015]
  • Posterior lumbar interbody fusion versus 360° fixation in degenerative lumbar disease
    Lee NY [2001]
  • Porous titanium-nickel for intervertebral fusion in a sheep model: part1. Histomorphometric and radiological analysis
    Assad M [2003]
  • Porous biodegradable lumbar interbody fusion cage design and fabrication using integrated global local topology optimization with laser sintering
    Kang H [2013]
  • PEEK biomaterial in trauma, orthopedic, and spinal implants
    Jurtz SM [2007]
  • Outcome of revision total knee arthroplasty with the use of trabecular metal cone for reconstruction of severe bone loss at the proximal tibia
    Jensen CL [2014]
  • Osteoblasts exhibit a more differentiated phenotype and increased bone morphogenetic protein production on titanium alloy substrates than on poly-ether-ether-ketone
  • Osteoblast adhesion and morphology on TiO2 depends on the competitive preadsorption of albumin and fibronectin
    Sousa SR [2008]
  • Mechanical performance of lumbar intervertebral body fusion devices : An analysis of data submitted to the Food and Drug Administration
    Peck JH [2018]
  • Mechanical evaluation of porous titanium (Ti6Al4V) structures with electron beam melting (EBM)
  • High-strength porous biomaterials for bone replacement:A Strategy to assess the interplay between cell morphology, mechanical properties, bone ingrowth and manufacturing constraints
    Arabnejad S [2016]
  • Finite element model predicts the biomechanical performance of transforaminal lumbar interbody fusion with various porous additive manufactured cages
    Zhang Z [2018]
  • Fatigue Behaviour of Additively Manufactured Ti-6Al-4V
    Sterling A [2015]
  • Failure of a carbon fiber implant. A case report
    Tullberg T [1998]
  • Fabrication of porous titanium implants by three-dimensional printing and sintering at different temperatures
    Xiong DY [2012]
  • Effect of force-induced mechanical stress at the coronary artery bifurcation stenting: relation to in-stent restenosis
    Lee CH [2014]
  • Computational comparison of three posterior lumbar interbody fusion techniques by using porous titanium interbody cages with 50% porosity
    Lee YH [2016]
  • Complete cage migration/subsidence into the adjacent vertebral body after posterior lumbar interbody fusion
    Corniola MV [2015]
  • Clinical and radiographic outcomes after spinous process fixation and posterior fusion in an elderly cohort
    Vokshoor A [2014]
  • Biomechanical investigation into the structural design of porous additive manufactured cages using numerical and experimental approaches
    Tsai PI [2016]
  • Ankle fusion with a trabecular metal spacer and an anterior fusion plate
  • Additively manufactured 3D porous Ti-6Al-4V constructs mimic trabecular bone structure and regulate osteoblast proliferation, differentiation and local factor production in a porosity and surface roughness dependent manner
    Cheng A [2014]
  • A minimally invasive posterior lumbar interbody fusion using percutaneous long arm pedicle screw system for degenerative lumbar disease
    He EX [2014]
  • 3D 프린팅법으로 제조한 티타늄 시편의 물성 평가
    오윤정 [2016]