• Title/Summary/Keyword: 인대 재건술 Isometric position

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Analysis of Isometric Position of the Anterior Cruciate Ligament During the Knee Flexion-Extension (무릎 굴신 운동과 전십자 인대의 등장위치 해석)

  • Park J.H.;Son K.;Moon B.Y.;Suh J.T.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.1933-1936
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    • 2005
  • The isometric area of the anterior cruciate ligament was calculated during knee flexion-extension. Flexion-extension motion data of the joint were obtained using Fastrak and a three-dimensional motion measurement system. A total of five subjects were seated on a flat table and the tibia sensor position was measured with the femur fixed on the table. A three-dimensional knee model was constructed using a graphic tool to simulate the knee motion. Twenty seven positions of the tibia region and forty two positions of the femur region were selected and the distances between the determined tibial and femoral points were calculated. Highly isometric areas were found and displayed as three dimensional aspects.

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A study of isometric position of the knee during anterior cruciate ligament reconstruction (전십자 인대 재건시 등장위치에 관한 연구)

  • 박정홍;손권;김광훈;문병영;서정탁
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.158-161
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    • 2004
  • The isometric position of the anterior cruciate ligament was calculated during flexion-extension. Flexion-extension motion data of the knee joint were obtained by Fastrak, a three-dimensional motion measurement system. A subject was seated on a flat table and the tibia sensor position was measured with the femur fixed at the table. A three-dimensional knee model was constructed using a graphic tool to simulate the knee motion. Three surgical positions of the femoral tunnel were selected and the distances between the determined tibial tunnel and each femoral tunnel were calculated. The maximum elongation position was found to be in the ten thirty direction of clock.

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Single Bundle PCL Reconstruction with Remnant Preservation (잔여 조직을 보존한 단일 다발 후방십자인대 보강재건술)

  • Lee, Dong Chul;Kim, Won-Ho
    • Journal of the Korean Arthroscopy Society
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    • v.15 no.2
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    • pp.125-131
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    • 2011
  • Optimal treatment of the torn posterior cruciate ligament (PCL) remains controversial. The type of tibial fixation (transtibial vs inlay), the femoral tunnel position within the femoral footprint (central, eccentric or isometric), and the number of bundles in the reconstruction (single-bundle vs double-bundle) are controversial issues. The PCL has a better chance of spontaneously healing than the anterior cruciate ligament (ACL) because of a rich blood supply (near the branch of the middle genicular artery) and coverage with a thicker synovium. In general, for easier passage of the graft and full visualization of the original ligament attachment site during the precise positioning of the tunnel, the remaining PCL fibers are usually debrided during reconstruction. However, the remaining remnant structures would significantly contribute to the posterior stability of the knee joint, the healing of the graft, preserving proprioceptive function of the mechanoreceptors in the PCL. Double bundle PCL reconstruction may result in some surgical complications because of increased complexity of making tunnel. Therefore, single bundle PCL reconstruction with remnant preservation seems to be an effective procedure.

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Biceps Rerouting Technique(Modification of Clancy) for Posterolateral Rotatory Instability (대퇴이두건 전환술(Clancy 변형 술식)을 이용한 후외측 회전 불안정성의 재건)

  • Kim Sung-Jae;Shin Sang-Jin;Kim Jin-Yong;Rhee Dong-Joo
    • Journal of the Korean Arthroscopy Society
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    • v.4 no.1
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    • pp.25-31
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    • 2000
  • Introduction : This study compared the clinical results with biceps rerouting fer the isolated posterolateral instability (PLI) and for the PLI combined with PCL injuries. Methods : 21 cases of isolated PLI (group I) and 25 cases of PLI combined with PCL rupture were included in the study. The PLI was reconstructed by modified biceps femoris rerouting technique with PCL reconstructions performed prior to the PLI correction in cases of combined injury The clinical results were reviewed and analyzed. Results : Pre-operatively positive reverse pivot shift test turned negative in 43 cases post-operatively. Increased preoperative external rotation thigh foot angle (ERTFA) showed significant differences between the two groups and all fell within normal limits post-operatively At a mean follow-up of 40.3 months, the average Lysholm knee score and. The Hospital for Special Surgery Knee Ligament Score for group I and group II revealed above 90 points without statistically significant difference between the groups. 3 cases of tenodesis failure developed and re-operation was performed. Discussion and Conclusion : The advantages of modified Clancy technique include reduced surgical damages to the iliotibial band and fixation of the biceps tendon at the isometric position. The modified biceps rerouting technique is recommended for the reconstruction of both isolated and combined PLI except in patients with severe damages at the attachment of biceps tendon.

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Graft Length of the Bone-patellar Tendon-bone for Reconstruction of ACL (골-슬개건-골을 이용한 전방십자인대 재건술에서 이식물의 길이)

  • Kim, Jung-Man
    • Journal of the Korean Arthroscopy Society
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    • v.1 no.1
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    • pp.55-62
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    • 1997
  • Various surgical techniques has been advocated for reconstruction of anterior cruciate ligament using the bone-patella tendon-bone graft. Recently endoscopic technique provides good clinical results, with minimal skin incision, accurate positioning of the graft to the femoral tunnel, and decreasing wear rate of the graft. But the graft-tunnel mismatch remains problematic in endoscopic technique. The purpose of this paper is to described causes of the graft-tunnel mismatch and to provide important steps to prevent or minimize the graft-runnel mismatch following anterior cruciate ligament while using the endoscopic technique. Our guideline for prevention of the graft-tunnel mismatch are as follows: (1) The tunnel should he positioned closely to isometric point as much as possible. (2) Anterior placement of the tunnel should be avoided. (3) The change of graft length should be within 2mm between flexion and extension position.

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