Literature DB >> 22836300

Reducing susceptibility artefacts in magnetic resonance images of the canine stifle following surgery for cranial cruciate ligament deficiency.

F H David1, J Grierson, C R Lamb.   

Abstract

BACKGROUND: Magnetic resonance (MR) images of the postoperative canine stifle are adversely affected by susceptibility artefacts associated with metallic implants.
OBJECTIVES: To determine empirically to what extent susceptibility artefacts could be reduced by modifications to MR technique.
METHODS: Three cadaveric limbs with a tibial plateau levelling osteotomy (TPLO), tibial tuberosity advancement (TTA), or extra-capsular stabilization (ECS) implant, respectively, were imaged at 1.5T. Series of proton density and T2-weighted images were acquired with different combinations of frequency-encoding gradient (FEG) direction and polarity, stifle flexion or extension, echo spacing (ES), and readout bandwidth (ROBW), and ranked. The highest rank (a rank of 1) corresponded to the smallest artefact.
RESULTS: Image ranking was affected by FEG polarity (p = 0.005), stifle flexion (p = 0.01), and ROBW (p = 0.0001). For TPLO and TTA implants, the highest ranked images were obtained with the stifle flexed, lateromedial FEG, and medial polarity for dorsal images, and craniocaudal FEG and caudal polarity for sagittal images. For the ECS implant, the highest ranked images were obtained with the stifle extended, a proximodistal FEG and proximal polarity for dorsal images, and craniocaudal FEG and cranial polarity for sagittal images. CLINICAL SIGNIFICANCE: Susceptibility artefacts in MR images of postoperative canine stifles do not preclude clinical evaluation of joints with ECS or TTA implants.

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Year:  2012        PMID: 22836300     DOI: 10.3415/VCOT-12-03-0031

Source DB:  PubMed          Journal:  Vet Comp Orthop Traumatol        ISSN: 0932-0814            Impact factor:   1.358


  1 in total

1.  Effect of leukocyte-reduced platelet-rich plasma on osteoarthritis caused by cranial cruciate ligament rupture: A canine gait analysis model.

Authors:  José M Vilar; Maria E Manera; Angelo Santana; Giuseppe Spinella; Oliver Rodriguez; Mónica Rubio; José M Carrillo; Joaquín Sopena; Miguel Batista
Journal:  PLoS One       Date:  2018-03-19       Impact factor: 3.240

  1 in total

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