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Functional outcomes and complications after treatment of distal radius fracture in patients sixty years and over: A systematic review and network meta-analysis
Affiliation:1. Hand and Arm Center, Department of Orthopedics, Massachusetts General Hospital, Harvard Medical School, Boston, USA;3. Department of Orthopedics, Kaohsiung Medical University Hospital, School of Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan;1. Department of Orthopedics, Martini Hospital, van Swietenplein 1, Groningen, 9728NT, The Netherlands;2. Head of Joint Replacement Center, Medical City Teaching Complex, Baghdad, Iraq;3. University of Calgary, 0490 McCaig Tower, Foothills Hospital, 3134 Hospital Drive NW Calgary, Alberta, T2N 5A1, Canada;1. Department of Orthopaedic Surgery, Virginia Commonwealth University, 1200 East Broad Street, PO Box 980153, Richmond, VA 23298, USA;2. Virginia Commonwealth University School of Medicine, 1201 E Marshall St #4-100, Richmond, VA, USA;1. Orthopaedic Associates of Muskegon, 260 Jefferson Ave SE Suite 115 Grand Rapids, Michigan, 49503, United States;2. McLaren Flint Orthopaedic Surgery Residency, 401 South Ballenger Highway Flint, Michigan, 48532, United States;3. Trauma Research Institute, Spectrum Health, 100 Michigan St NE Grand Rapids, Michigan, 49503, United States;4. Spectrum Health Butterworth Hospital, 100 Michigan St NE Grand Rapids, Michigan, 49503, United States;5. Spectrum Health, Scholarly Activity and Scientific Support, Spectrum Health Office of Research, 100 Michigan St NE Grand Rapids, Michigan, 49503, United States
Abstract:AimThis network meta-analysis aims to compare functional outcomes and complications between conservative treatment and surgery for distal radius fractures in patients aged 60 years and over.MethodsWe searched the PubMed, EMBASE, and Web of Science databases for randomized controlled trials (RCTs) assessing the effect of conservative treatment and surgery for distal radius fractures in patients aged 60 years and over. Primary outcomes included grip strength and overall complications. Secondary outcomes included Disabilities of the Arm, Shoulder, and Hand (DASH) scores, Patient-Rated Wrist Evaluation (PRWE) scores, wrist range of motion and forearm rotation, and radiographic assessment. All continuous outcomes were assessed using standardized mean differences (SMDs) with 95% confidence intervals (CIs), and binary outcomes were assessed using odds ratio (OR) with 95% CIs. The surface under the cumulative ranking curve (SUCRA) was used to determine a hierarchy of treatments. Cluster analysis was performed for grouping treatments based on the SUCRA values of primary outcomes.ResultsFourteen RCTs were included to compare conservative treatment, volar lockedplate (VLP), K-wires fixation, and external-fixation. VLP outperformed conservative treatment for 1-year and minimum 2-year grip strength (SMD; 0.28 [0.07 to 0.48] and 0.27 [0.02 to 0.53], respectively). VLP yielded the optimal grip strength at 1-year and minimum 2-year follow-up (SUCRA; 89.8% and 86.7%, respectively). In a subgroup analysis of patients aged 60 to 80 years old, VLP outperformed conservative treatment in DASH and PRWE scores (SMD, 0.33 [0.10, 0.56] and 0.23 [0.01, 0.45], respectively). In addition, VLP had the fewest complications (SUCRA = 84.3%). Cluster analysis suggested that VLP and K-wire fixation were more effective treatment groups.ConclusionEvidence to date demonstrates that VLP provides measurable benefits in grip strength and fewer complications to those 60 years of age and over, and that benefit is not reflected in current practice guidelines. There is a subgroup of patients where K-wire fixation outcomes are similar to those of VLP; defining this subgroup may yield substantial societal benefits.
Keywords:Hand grip strength  Complication  AAOS"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_yOedH0KvKS"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  American Academy of Orthopaedic Surgeons  CI"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_5DKwEcFezS"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Confidence Interval  DASH"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_slYS50kxSB"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Disabilities of the Arm, Shoulder, and Hand  DRF"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_1LOaHC4Aep"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Distal Radius Fracture  NMA"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_JU30M3pBrW"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Network Meta-Analysis  OR"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_bTXhEvxyyo"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Odds Ratio  PROM"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_rmrqAH8Z7B"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Patient-Rated Outcomes Measure  PRWE"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_Q3yDCuyJNe"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Patient-Rated Wrist Evaluation  RCT"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_0MsMMvUOKU"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Randomized Controlled Trial  SD"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_jRBF5mJBSL"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Standard Deviation  SMD"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_1Fx2vn0wtG"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Standardized Mean Differences  SUCRA"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_vpIDgss8gU"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Surface Under the Cumulative RAnking curve  VLP"  },{"  #name"  :"  keyword"  ,"  $"  :{"  id"  :"  pc_GsSYUZR4Wr"  },"  $$"  :[{"  #name"  :"  text"  ,"  _"  :"  Volar Locked Plate
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