Description of patellar movement by 3D parameters obtained from dynamic CT acquisition

The patellofemoral joint is critical in the biomechanics of the knee. The patellofemoral instability is one condition that generates pain, functional impairment and often requires surgery as part of orthopedic treatment. The analysis of the patellofemoral dynamics has been performed by several medical image modalities. The clinical parameters assessed are mainly based on 2D measurements, such as the patellar tilt angle and the lateral shift among others. Besides, the acquisition protocols are mostly performed with the leg laid static at fixed angles. The use of helical multi slice CT scanner can allow the capture and display of the joint´s movement performed actively by the patient. However, the orthopedic applications of this scanner have not yet been standardized or widespread. In this work we present a method to evaluate the biomechanics of the patellofemoral joint during active contraction using multi slice CT images. This approach can greatly improve the analysis of patellar instability by displaying the physiology during muscle contraction. The movement was evaluated by computing its 3D displacements and rotations from different knee angles. The first processing step registered the images in both angles based on the femur´s position. The transformation matrix of the patella from the images was then calculated, which provided the rotations and translations performed by the patella from its position in the first image to its position in the second image. Analysis of these parameters for all frames provided real 3D information about the patellar displacement.

[1]  A. C. Merchant,et al.  Roentgenographic analysis of patellofemoral congruence. , 1974, The Journal of bone and joint surgery. American volume.

[2]  Eugene Ozhinsky,et al.  Magnetic resonance imaging of patellofemoral kinematics with weight-bearing. , 2003, The Journal of bone and joint surgery. American volume.

[3]  E. Rodriguez-Merchan,et al.  Reproducibility of patellofemoral CT scan measurements , 2000, International Orthopaedics.

[4]  Alexis Colvin,et al.  Patellar instability. , 2008, The Journal of bone and joint surgery. American volume.

[5]  S. Tennant,et al.  Patello-femoral tracking in the weight-bearing knee: a study of asymptomatic volunteers utilising dynamic magnetic resonance imaging: a preliminary report , 2001, Knee Surgery, Sports Traumatology, Arthroscopy.

[6]  R. A. Fellows,et al.  Patellofemoral joint kinematics in individuals with and without patellofemoral pain syndrome. , 2006, The Journal of bone and joint surgery. American volume.

[7]  T. Gray,et al.  Axial Linear Patellar Displacement , 2009, The American journal of sports medicine.

[8]  R Huiskes,et al.  The three‐dimensional tracking pattern of the human patella , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.

[9]  G. Ramsby,et al.  The evaluation of patellofemoral pain using computerized tomography. A preliminary study. , 1986, Clinical orthopaedics and related research.

[10]  S. Salarilak,et al.  CT Patellar Cortex Tilt Angle: A Radiological Method to Measure Patellar Tilt , 2005 .

[11]  W. McDavid,et al.  Deriving Hounsfield units using grey levels in cone beam computed tomography. , 2010, Dento maxillo facial radiology.

[12]  Christopher M Powers,et al.  Surgical biomechanics of the patellofemoral joint. , 2007, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.