박사

Comparison of Signal to Noise Ratio and Geometric Accuracy between Conventional Bore and Wide Bore 3-T MRI

장지성 2020년
논문상세정보
' Comparison of Signal to Noise Ratio and Geometric Accuracy between Conventional Bore and Wide Bore 3-T MRI' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Conventional bore
  • Magnetic Resonance Imaging
  • Wide bore
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
76 0

0.0%

' Comparison of Signal to Noise Ratio and Geometric Accuracy between Conventional Bore and Wide Bore 3-T MRI' 의 참고문헌

  • [28] L. Geerts-Ossevoort, d.W.E., A. Duijndam, G. Van Ijperen, H. Peeters, M. Doneva, M. Nijenhuis, A. Huang. [cited 2018 16 May]; Available from: https://philipsproductcontent.blob.core.windows.net/assets/2018010 9/619119731f2a42c4acd4a863008a46c7.pdf.
    [2018]
  • Wide , short bore magnetic resonance at 1.5 t : reducing the failure rate in claustrophobic patients
    21:141-144 [2011]
  • Tsugawa T. Geometric accuracy in three-dimensional coordinates of Leksell stereotactic skull frame with wide-bore 1.5-T MRI compared with conventional 1.5-T MRI .
    58:595-600 [2014]
  • Steady-state MR imaging sequences : physics , classification , and clinical applications
    28:1147-1160 [2008]
  • Sparse MRI : The application ofCompressed sensing for rapid MR imaging
    58:1182-1195 [2007]
  • Slaughter R. Geometric distortion inClinical MRI systems Part I : evaluation using a 3D phantom .
    22:1211-1221 [2004]
  • Sensitivity and interrater agreement ofCT and diffusion-weighted MR imaging in hyperacute stroke
    [2003]
  • Seiberlich N. Recent advances in parallel imaging for MRI .
    101:71-95 [2017]
  • Scheffler K. Fundamentals of balanced steady state free precession MRI .
    38:2-11 [2013]
  • RoutineClinical brain MRI sequences for use at 3.0 Tesla .
    22:13-22 [2005]
  • Quantifying metal-induced susceptibility artifacts of the instrumented spine at 1.5T using fast-spin echo and 3D-multispectral MRI .
    45:51-58 [2017]
  • Quality assurance methods and phantoms for magnetic resonance imaging : report of AAPM nuclear magnetic resonance Task Group
    No . 1 . Med P hys [1990]
  • Principles , techniques , and applications of T2 * -based MR imaging and its special applications
    29:1433-1449 [2009]
  • Perkins G. Development and validation of a novel large field of view phantom and a software module for the quality assurance of geometric distortion in magnetic resonance imaging
    33:939-949 [2015]
  • Othomo K. TrueFISP -- technical considerations and cardiovascular applications
    46:28-32 [2003]
  • Optimization of a novel large field of view distortion phantom for MR-only treatment planning
    P hys18:51-61 [2017]
  • Mossa-Basha M. Compressed Sensing-Sensitivity Encoding ( CS-SENSE ) Accelerated Brain Imaging : Reduced Scan Time without Reduced Image Quality
    40:92-98 [2019]
  • Measuring signal-to-noise ratio in partially parallel imaging MRI .
    38:5049-5057 [2011]
  • MR-guided liver biopsy within a short , wide-bore 1.5 Tesla MR system
    18:2865-2873 [2008]
  • MR imaging of claustrophobic patients in an open 1.0T scanner : motion artifacts and patient acceptability compared with closed bore magnets .
    64:152-157 [2007]
  • MR imaging : acronyms and clinical applications
    9:979-997 [1999]
  • Image quality assessment of single-shot turbo spin echo diffusion-weighted imaging with parallel imaging technique : a phantom study
    89:20160512 [2016]
  • Image quality assessment : from error visibility to structural similarity
    13:600-612 [2004]
  • Hashido T. Liver acquisition with volume acceleration flex on 70-cm wide-bore and 60-cm conventional-bore 3.0-T MRI .
    9:154-160 [2016]
  • Generalized autocalibrating partially parallel acquisitions ( GRAPPA )
    47:1202-1210 [2002]
  • GRAPPA : how to choose the optimal method .
    15:223-236 [2004]
  • Full-brain T1 mapping through inversion recovery fast spin echo imaging with time-efficient slice ordering
    54:725-731 [2005]
  • Efficient Compressed Sensing SENSE pMRI Reconstruction With Joint Sparsity Promotion
    35:354-368 [2016]
  • Crozier S. A Hybrid Field-Harmonics Approach for Passive Shimming Design in MRI .
    21:60-67 [2011]
  • Compressed sensing MRI : a review of the clinical literature
    88:20150487 [2015]
  • Commissioning of a new wide-bore MRI scanner for radiotherapy planning of head and neck cancer .
    86:20130150 [2013]
  • Boesiger P. SENSE : sensitivity encoding for fast MRI .
    [1999]
  • Avruch L. Practical applications of balanced steady-state free-precession ( bSSFP ) imaging in the abdomen and pelvis .
    45:11-20 [2017]
  • Adrenal Biopsy under Wide-Bore MR Imaging Guidance
    29:285-290 [2018]