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      KCI등재 SCOPUS SCIE

      Volume and Contact Surface Area Analysis of Bony Tunnels in Single and Double Bundle Anterior Cruciate Ligament Reconstruction Using Autograft Tendons: In Vivo Three-Dimensional Imaging Analysis

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      https://www.riss.kr/link?id=A104600899

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      다국어 초록 (Multilingual Abstract)

      Background: Regarding reconstruction surgery of the anterior cruciate ligament (ACL), there is still a debate whether to perform a single bundle (SB) or double bundle (DB) reconstruction. The purpose of this study was to analyze and compare the volume...

      Background: Regarding reconstruction surgery of the anterior cruciate ligament (ACL), there is still a debate whether to perform a single bundle (SB) or double bundle (DB) reconstruction. The purpose of this study was to analyze and compare the volume and surface area of femoral and tibial tunnels during transtibial SB versus transportal DB ACL reconstruction.
      Methods: A consecutive series of 26 patients who underwent trantibial SB ACL reconstruction and 27 patients with transportal DB ACL reconstruction using hamstring autograft from January 2010 to October 2010 were included in this study. Three-dimensional computed tomography (3D-CT) was taken within one week after operation. The CT bone images were segmented with use of Mimics software v14.0. The obtained digital images were then imported in the commercial package Geomagic Studio v10.0 and SketchUp Pro v8.0 for processing. The femoral and tibial tunnel lengths, diameters, volumes and surface areas were evaluated. A comparison between the two groups was performed using the independent-samples t-test. A p-value less than the significance value of 5% (p < 0.05) was considered statistically significant.
      Results: Regarding femur tunnels, a significant difference was not found between the tunnel volume for SB technique (1,496.51 ± 396.72 mm3) and the total tunnel volume for DB technique (1,593.81 ± 469.42 mm3; p = 0.366). However, the total surface area for femoral tunnels was larger in DB technique (919.65 ± 201.79 mm2) compared to SB technique (810.02 ± 117.98 mm2; p = 0.004). For tibia tunnels, there was a significant difference between tunnel volume for the SB technique (2,070.43 ± 565.07 mm3) and the total tunnel volume for the DB technique (2,681.93 ± 668.09 mm3; p ≤ 0.001). The tibial tunnel surface area for the SB technique (958.84 ± 147.50 mm2) was smaller than the total tunnel surface area for the DB technique (1,493.31 ± 220.79 mm2; p ≤ 0.001).
      Conclusions: Although the total femoral tunnel volume was similar between two techniques, the total surface area was larger in the DB technique. For the tibia, both total tunnel volume and the surface area were larger in DB technique.

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      참고문헌 (Reference)

      1 Basdekis G, "Validation of the position of the femoral tunnels in anatomic double-bundle ACL reconstruction with 3-D CT scan" 17 (17): 1089-1094, 2009

      2 Choi NH, "Tibial tunnel widening after anterior cruciate ligament reconstructions with hamstring tendons using Rigidfix femoral fixation and Intrafix tibial fixation" 18 (18): 92-97, 2010

      3 Peyrache MD, "Tibial tunnel enlargement after anterior cruciate ligament reconstruction by autogenous bone-patellar tendon-bone graft" 4 (4): 2-8, 1996

      4 Dong Y, "Three-dimensional anthropometric analysis of the Chinese nose" 63 (63): 1832-1839, 2010

      5 Galway HR, "The lateral pivot shift: a symptom and sign of anterior cruciate ligament insufficiency" (147) : 45-50, 1980

      6 Rodeo SA, "Tendon healing in a bone tunnel differs at the tunnel entrance versus the tunnel exit: an effect of graft-tunnel motion?" 34 (34): 1790-1800, 2006

      7 Steiner ME, "Strategies to improve anterior cruciate ligament healing and graft placement" 36 (36): 176-189, 2008

      8 Carson EW, "Revision anterior cruciate ligament reconstruction : etiology of failures and clinical results" 17 (17): 127-132, 2004

      9 Dye SF, "Restoration of osseous homeostasis after anterior cruciate ligament reconstruction" 21 (21): 748-750, 1993

      10 Ferretti M, "Osseous landmarks of the femoral attachment of the anterior cruciate ligament : an anatomic study" 23 (23): 1218-1225, 2007

      1 Basdekis G, "Validation of the position of the femoral tunnels in anatomic double-bundle ACL reconstruction with 3-D CT scan" 17 (17): 1089-1094, 2009

      2 Choi NH, "Tibial tunnel widening after anterior cruciate ligament reconstructions with hamstring tendons using Rigidfix femoral fixation and Intrafix tibial fixation" 18 (18): 92-97, 2010

      3 Peyrache MD, "Tibial tunnel enlargement after anterior cruciate ligament reconstruction by autogenous bone-patellar tendon-bone graft" 4 (4): 2-8, 1996

      4 Dong Y, "Three-dimensional anthropometric analysis of the Chinese nose" 63 (63): 1832-1839, 2010

      5 Galway HR, "The lateral pivot shift: a symptom and sign of anterior cruciate ligament insufficiency" (147) : 45-50, 1980

      6 Rodeo SA, "Tendon healing in a bone tunnel differs at the tunnel entrance versus the tunnel exit: an effect of graft-tunnel motion?" 34 (34): 1790-1800, 2006

      7 Steiner ME, "Strategies to improve anterior cruciate ligament healing and graft placement" 36 (36): 176-189, 2008

      8 Carson EW, "Revision anterior cruciate ligament reconstruction : etiology of failures and clinical results" 17 (17): 127-132, 2004

      9 Dye SF, "Restoration of osseous homeostasis after anterior cruciate ligament reconstruction" 21 (21): 748-750, 1993

      10 Ferretti M, "Osseous landmarks of the femoral attachment of the anterior cruciate ligament : an anatomic study" 23 (23): 1218-1225, 2007

      11 Nyland J, "Osseous deficits after anterior cruciate ligament injury and reconstruction : a systematic literature review with suggestions to improve osseous homeostasis" 26 (26): 1248-1257, 2010

      12 Colombet P, "Morphology of anterior cruciate ligament attachments for anatomic reconstruction : a cadaveric dissection and radiographic study" 22 (22): 984-992, 2006

      13 Yamamoto Y, "Knee stability and graft function after anterior cruciate ligament reconstruction : a comparison of a lateral and an anatomical femoral tunnel placement" 32 (32): 1825-1832, 2004

      14 Gianotti SM, "Incidence of anterior cruciate ligament injury and other knee ligament injuries : a national population-based study" 12 (12): 622-627, 2009

      15 양재혁, "In Vivo Three-Dimensional Imaging Analysis of Femoral and Tibial Tunnel Locations in Single and Double Bundle Anterior Cruciate Ligament Reconstructions" 대한정형외과학회 6 (6): 32-42, 2014

      16 Sadoghi P, "Impact of tibial and femoral tunnel position on clinical results after anterior cruciate ligament reconstruction" 27 (27): 355-364, 2011

      17 Ahn JH, "Femoral bioabsorbable cross-pin fixation in anterior cruciate ligament reconstruction" 23 (23): 1093-1099, 2007

      18 Zantop T, "Effect of tunnel-graft length on the biomechanics of anterior cruciate ligament-reconstructed knees : intra-articular study in a goat model" 36 (36): 2158-2166, 2008

      19 Brophy RH, "Cost analysis of converting from single-bundle to double-bundle anterior cruciate ligament reconstruction" 37 (37): 683-687, 2009

      20 Tsuda E, "Comparable results between lateralized single-and doublebundle ACL reconstructions" 467 (467): 1042-1055, 2009

      21 Freedman KB, "Arthroscopic anterior cruciate ligament reconstruction : a metaanalysis comparing patellar tendon and hamstring tendon autografts" 31 (31): 2-11, 2003

      22 Lertwanich P, "Anterior cruciate ligament tunnel position measurement reliability on 3-dimensional reconstructed computed tomography" 27 (27): 391-398, 2011

      23 Musahl V, "Anterior cruciate ligament tunnel placement : comparison of insertion site anatomy with the guidelines of a computer-assisted surgical system" 19 (19): 154-160, 2003

      24 Ahn JH, "Anterior cruciate ligament reconstruction with preservation of remnant bundle using hamstring autograft : technical note" 129 (129): 1011-1015, 2009

      25 Chhabra A, "Anatomic, radiographic, biomechanical, and kinematic evaluation of the anterior cruciate ligament and its two functional bundles" 88 (88): 2-10, 2006

      26 Kanazawa T, "An immunohistological study of the integration at the bone-tendon interface after reconstruction of the anterior cruciate ligament in rabbits" 88 (88): 682-687, 2006

      27 Li S, "A meta-analysis of hamstring autografts versus bone-patellar tendon-bone autografts for reconstruction of the anterior cruciate ligament" 18 (18): 287-293, 2011

      28 Miller CD, "A comparison of 2drilling techniques on the femoral tunnel for anterior cruciate ligament reconstruction" 27 (27): 372-379, 2011

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2024 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2021-01-01 평가 등재학술지 선정 (해외등재 학술지 평가) KCI등재
      2020-12-01 평가 등재 탈락 (해외등재 학술지 평가)
      2020-04-14 학회명변경 영문명 : 미등록 -> The Korean Orthopaedic Association KCI등재
      2013-10-01 평가 등재학술지 선정 (기타) KCI등재
      2010-01-01 평가 SCOPUS 등재 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.06 0.06 0.07
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.07 0.1 0.346 0.04
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