Literature DB >> 23242379

The effect of notchplasty in anterior cruciate ligament reconstruction: a biomechanical study in the porcine knee.

Kenan Keklikci1, Can Yapici, Donghwi Kim, Monica Linde-Rosen, Patrick Smolinski, Freddie H Fu.   

Abstract

INTRODUCTION: Notchplasty is frequently performed by many orthopaedic surgeons during anterior cruciate ligament (ACL) reconstruction. The effect of notchplasty on tunnel placement and knee biomechanics with ACL reconstruction is not known.
METHODS: Twelve (n = 12) porcine knees were tested using a robotic testing system. Four knee states were compared: (1) intact ACL, (2) ACL-deficient, (3) anatomic single bundle (SB) ACL reconstruction and (4) anatomic SB ACL reconstruction with a 5-mm notchplasty. The graft was fixed at 60° of flexion (full extension of porcine knee is 30°) with an 80-N tension. The knees were subjected to two loading conditions: an 89-N anterior tibial load (ATT) and 4 Nm internal (IR) and external tibial (ER) rotational torques. The kinematics and in situ force obtained from the different knee conditions were compared.
RESULTS: There were no significant differences between pre- and post-notchplasty in the ER at 30° and 60° of knee flexion (n.s.). However, a significant difference was found between pre- and post-notchplasty in ATT at 30° and 60° of flexion (p < 0.05). The in situ force in the anatomic SB reconstruction with notchplasty was significant lower than the intact and anatomic reconstructed ACL pre-notchplasty at 30°, 60° and 90° of knee flexion (p < 0.05). In response to the IR tibial torque, there were significant differences between pre- and post-notchplasty in IR at 60° (p < 0.05) of knee flexion.
CONCLUSION: Notchplasty had greater effect on anterior stability than rotational stability. This change in knee kinematics could be detrimental to a healing bone graft, ligamentization and could lead to failure of the reconstruction in early post-operative period.

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Mesh:

Year:  2012        PMID: 23242379     DOI: 10.1007/s00167-012-2343-5

Source DB:  PubMed          Journal:  Knee Surg Sports Traumatol Arthrosc        ISSN: 0942-2056            Impact factor:   4.342


  35 in total

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Review 2.  Can the pivot-shift be eliminated by anatomic double-bundle anterior cruciate ligament reconstruction?

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Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2012-01-24       Impact factor: 4.342

3.  Assessing arthroscopic notchplasty.

Authors:  E E Berg
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4.  An in vivo biomechanical study on the tension-versus-knee flexion angle curves of 2 grafts in anatomic double-bundle anterior cruciate ligament reconstruction: effects of initial tension and internal tibial rotation.

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5.  Intercondylar roof impingement pressure after anterior cruciate ligament reconstruction in a porcine model.

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Review 6.  Current concepts in anatomic single- and double-bundle anterior cruciate ligament reconstruction.

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7.  Winner of the AlbertTrillat Young Investigator Award. The effects of aggressive notchplasty on the normal knee in dogs.

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9.  The natural history of the intercondylar notch after notchplasty.

Authors:  T A Mann; K P Black; D J Zanotti; M Barr; T Teater
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Review 10.  ACL reconstruction: semitendinosus tendon is the graft of choice.

Authors:  T D Rosenberg; K T Deffner
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1.  Arthroscopic centralization restores residual knee laxity in ACL-reconstructed knee with a lateral meniscus defect.

Authors:  Tomomasa Nakamura; Monica A Linde; Brandon D Marshall; Hideyuki Koga; Takeshi Muneta; Patrick Smolinski; Freddie H Fu
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2.  Anterior cruciate ligament graft fixation first in anterior and posterior cruciate ligament reconstruction best restores knee kinematics.

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4.  The influence of internal and external tibial rotation offsets on knee joint and ligament biomechanics during simulated athletic tasks.

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5.  Notchplasty alters knee biomechanics after anatomic ACL reconstruction.

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Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2019-11-05       Impact factor: 4.342

6.  What is the best candidate allograft for ACL reconstruction? An in vitro mechanical and histologic study in a canine model.

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Review 7.  Anterior cruciate ligament biomechanics during robotic and mechanical simulations of physiologic and clinical motion tasks: a systematic review and meta-analysis.

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8.  Validation of Noncontact Anterior Cruciate Ligament Tears Produced by a Mechanical Impact Simulator Against the Clinical Presentation of Injury.

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9.  The inferior medial genicular artery and its vascularization of the pes anserinus superficialis: A cadaveric study.

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10.  Evaluation and Comparison of Femoral Tunnel Placement During Anterior Cruciate Ligament Reconstruction Using 3-Dimensional Computed Tomography: Effect of Notchplasty on Transtibial and Medial Portal Drilling.

Authors:  Jeffrey R Dugas; Jesse L Pace; Becky Bolt; Shane A Wear; David P Beason; E Lyle Cain
Journal:  Orthop J Sports Med       Date:  2014-03-05
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