Literature DB >> 33660460

Depiction of the Periosteum Using Ultrashort Echo Time Pulse Sequence with Three-Dimensional Cone Trajectory and Histologic Correlation in a Porcine Model.

Dae Joong Kim1, Kun Hwang2, Hun Kim2, Jang Gyu Cha3, Hyungseok Jang4, Ju Yong Park5, Yeo Ju Kim6.   

Abstract

OBJECTIVE: To evaluate the signal intensity of the periosteum using ultrashort echo time pulse sequence with three-dimensional cone trajectory (3D UTE) with or without fat suppression (FS) to distinguish from artifacts in porcine tibias.
MATERIALS AND METHODS: The periosteum and overlying soft tissue of three porcine lower legs were partially peeled away from the tibial cortex. Another porcine tibia was prepared as three segments: with an intact periosteum outer and inner layer, with an intact periosteum inner layer, and without periosteum. Axial T1 weighted sequence (T1 WI) and 3D UTE (FS) were performed. Another porcine tibia without periosteum was prepared and subjected to 3D UTE (FS) and T1 WI twice, with positional changes. Two radiologists analyzed images to reach a consensus.
RESULTS: The three periosteal tissues that were partially peeled away from the cortex showed a high signal in 3D UTE (FS) and low signal on T1 WI. 3D UTE (FS) showed a high signal around the cortical surface with an intact outer and inner periosteum, and subtle high signals, mainly around the upper cortical surfaces with the inner layer of the periosteum and without periosteum. T1 WI showed no signal around the cortical surfaces, regardless of the periosteum state. The porcine tibia without periosteum showed changes in the high signal area around the cortical surface as the position changed in 3D UTE (FS). No signal was detected around the cortical surface in T1 WI, regardless of the position change.
CONCLUSION: The periosteum showed a high signal in 3D UTE and 3D UTE FS that overlapped with artifacts around the cortical bone.
Copyright © 2021 The Korean Society of Radiology.

Entities:  

Keywords:  3D cone trajectory; Periosteum; UTE

Year:  2021        PMID: 33660460     DOI: 10.3348/kjr.2020.0640

Source DB:  PubMed          Journal:  Korean J Radiol        ISSN: 1229-6929            Impact factor:   3.500


  1 in total

1.  MRI chemical shift artifact produced by center-out radial sampling of k-space: a potential pitfall in clinical diagnosis.

Authors:  Mark Bydder; Michael Carl; Graeme M Bydder; Jiang Du
Journal:  Quant Imaging Med Surg       Date:  2021-08
  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.