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Adaptive noise reduction toward low-dose computed tomography

  • Hongbing Lu
  • , Xiang Li
  • , Lihong Li
  • , Dongqin Chen
  • , Yuxiang Xing
  • , Jiang Hsieh
  • , Zhengrong Liang
  • Stony Brook University
  • Air Force Medical University
  • Viatronix Inc.
  • GE Medical Systems

Research output: Contribution to journalConference articlepeer-review

23 Scopus citations

Abstract

An efficient noise treatment scheme has been developed to achieve low-dose CT diagnosis based on currently available CT hardware and image reconstruction technologies. The scheme proposed includes two main parts: filtering in sinogram domain and smoothing in image domain. The acquired projection sinograms were first treated by our previously proposed Karhunen-Loeve (K-L) domain penalized weighted least-square (PWLS) filtering, which fully utilizes the prior statistical noise property and three-dimensional (3D) spatial information for an accurate restoration of the low-dose projections. To treat the streak artifacts due to photon starvation, we also incorporated an adaptive filtering into our PWLS framework, which selectively smoothes those channels contributing most to the streak artifacts. After the sinogram filtering, the image was reconstructed by the conventional filtered backprojection (FBP) method. The image is assumed as piecewise regions each has a unique texture. Therefore, an edge-preserving smoothing (EPS) with locally-adaptive parameters to the noise variation was applied for further noise reduction in image domain. Experimental phantom projections acquired by a GE spiral computed tomography (CT) scanner under 10 mAs tube current were used to evaluate the proposed smoothing scheme. The reconstructed imaged demonstrated that the smoothing scheme with appropriate control parameters provides a significant improvement on noise suppression without sacrificing the spatial resolution.

Original languageEnglish
Pages (from-to)759-766
Number of pages8
JournalProceedings of SPIE - The International Society for Optical Engineering
Volume5030 II
DOIs
StatePublished - 2003
EventMedical Imaging 2003: Physics of Medical Imaging - San Diego, CA, United States
Duration: Feb 16 2003Feb 18 2003

Keywords

  • Adaptive filtering
  • Computed tomography
  • Dose reduction
  • Edge-preserving smoothing
  • Noise reduction
  • Nonstationary noise
  • Streak artifacts

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