Clinical Intravoxel Incoherent Motion and Diffusion MR Imaging: Past, Present, and Future.
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[1] D. Norris,et al. Healthy and infarcted brain tissues studied at short diffusion times: The origins of apparent restriction and the reduction in apparent diffusion coefficient , 1994, NMR in biomedicine.
[2] Namkug Kim,et al. Intravoxel incoherent motion diffusion-weighted MR imaging of the liver: effect of triggering methods on regional variability and measurement repeatability of quantitative parameters. , 2015, Radiology.
[3] Y. Assaf,et al. Diffusion Tensor Imaging (DTI)-based White Matter Mapping in Brain Research: A Review , 2007, Journal of Molecular Neuroscience.
[4] H. Imhof,et al. Vertebral metastases: assessment with apparent diffusion coefficient. , 2002, Radiology.
[5] Thomas Doring,et al. The role of demyelination in neuromyelitis optica damage: diffusion-tensor MR imaging study. , 2012, Radiology.
[6] A. King,et al. Diffusion-weighted MR imaging in the head and neck. , 2012, Radiology.
[7] J. M. Taylor,et al. Diffusion magnetic resonance imaging: an early surrogate marker of therapeutic efficacy in brain tumors. , 2000, Journal of the National Cancer Institute.
[8] Dmitriy A Yablonskiy,et al. Theoretical models of the diffusion weighted MR signal , 2010, NMR in biomedicine.
[9] Qun Chen,et al. Optimization of b‐value sampling for diffusion‐weighted imaging of the kidney , 2012, Magnetic resonance in medicine.
[10] L. Shen,et al. Apparent diffusion coefficient: potential imaging biomarker for prediction and early detection of response to chemotherapy in hepatic metastases. , 2008, Radiology.
[11] Caroline Reinhold,et al. Liver Tumor Characterization: Comparison Between Liver-specific Gadoxetic Acid Disodium-enhanced MRI and Biphasic CT-A Multicenter Trial , 2006, Journal of computer assisted tomography.
[12] R R Edelman,et al. Clinical Outcome in Ischemic Stroke Predicted by Early Diffusion-Weighted and Perfusion Magnetic Resonance Imaging: A Preliminary Analysis , 1996, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[13] G. Weinstein,et al. Diffusion-Weighted Magnetic Resonance Imaging for Predicting and Detecting Early Response to Chemoradiation Therapy of Squamous Cell Carcinomas of the Head and Neck , 2009, Clinical Cancer Research.
[14] A. Luciani,et al. Liver Cirrhosis : Intravoxel Incoherent Motion MR Imaging — Pilot Study 1 , 2008 .
[15] Michael Collins,et al. Detection of central white matter injury underlying vestibulopathy after mild traumatic brain injury. , 2014, Radiology.
[16] Liuquan Cheng,et al. Optimization of apparent diffusion coefficient measured by diffusion-weighted MRI for diagnosis of breast lesions presenting as mass and non-mass-like enhancement , 2013, Tumor Biology.
[17] Koichi Oshio,et al. Biexponential apparent diffusion coefficients in prostate cancer. , 2009, Magnetic resonance imaging.
[18] Jeong Min Lee,et al. Evaluation of hepatic focal lesions using diffusion‐weighted MR imaging: Comparison of apparent diffusion coefficient and intravoxel incoherent motion‐derived parameters , 2014, Journal of magnetic resonance imaging : JMRI.
[19] Baris Turkbey,et al. Multiparametric MRI in prostate cancer management , 2014, Nature Reviews Clinical Oncology.
[20] Baris Turkbey,et al. Is apparent diffusion coefficient associated with clinical risk scores for prostate cancers that are visible on 3-T MR images? , 2011, Radiology.
[21] M. Oudkerk,et al. Effect of b value and pre-admission of contrast on diagnostic accuracy of 1.5-T breast DWI: a systematic review and meta-analysis , 2014, European Radiology.
[22] Thorsten Feiweier,et al. Combined intravoxel incoherent motion and diffusion tensor imaging of renal diffusion and flow anisotropy , 2015, Magnetic resonance in medicine.
[23] Heidi Johansen-Berg,et al. Diffusion MRI at 25: Exploring brain tissue structure and function , 2012, NeuroImage.
[24] H. Thoeny,et al. Diffusion-weighted MR imaging including bi-exponential fitting for the detection of recurrent or residual tumour after (chemo)radiotherapy for laryngeal and hypopharyngeal cancers , 2013, European Radiology.
[25] G. Johnson,et al. Prostate cancer: feasibility and preliminary experience of a diffusional kurtosis model for detection and assessment of aggressiveness of peripheral zone cancer. , 2012, Radiology.
[26] D. Sodickson,et al. Intravoxel incoherent motion imaging of tumor microenvironment in locally advanced breast cancer , 2011, Magnetic resonance in medicine.
[27] R. Nunes,et al. Application of the diffusion kurtosis model for the study of breast lesions , 2014, European Radiology.
[28] P. Basser,et al. Axcaliber: A method for measuring axon diameter distribution from diffusion MRI , 2008, Magnetic resonance in medicine.
[29] Dongmei Wu,et al. Characterization of Breast Tumors Using Diffusion Kurtosis Imaging (DKI) , 2014, PloS one.
[30] Namkug Kim,et al. Histogram Analysis of Intravoxel Incoherent Motion for Differentiating Recurrent Tumor from Treatment Effect in Patients with Glioblastoma: Initial Clinical Experience , 2014, American Journal of Neuroradiology.
[31] Lin-Feng Yan,et al. Intravoxel incoherent motion diffusion-weighted MR imaging of gliomas: efficacy in preoperative grading , 2014, Scientific Reports.
[32] Daniel C. Alexander,et al. NODDI: Practical in vivo neurite orientation dispersion and density imaging of the human brain , 2012, NeuroImage.
[33] Koichi Oshio,et al. Diffusion‐weighted imaging of prostate cancer using a statistical model based on the gamma distribution , 2015, Journal of magnetic resonance imaging : JMRI.
[34] Namkug Kim,et al. Quantitative analysis of diffusion‐weighted magnetic resonance imaging of the pancreas: Usefulness in characterizing solid pancreatic masses , 2008, Journal of magnetic resonance imaging : JMRI.
[35] M Deimling,et al. Diffusion-weighted MR imaging of bone marrow: differentiation of benign versus pathologic compression fractures. , 1998, Radiology.
[36] Cheng Guan Koay,et al. Analytically exact correction scheme for signal extraction from noisy magnitude MR signals. , 2006, Journal of magnetic resonance.
[37] Neil J Sebire,et al. Tumors in pediatric patients at diffusion-weighted MR imaging: apparent diffusion coefficient and tumor cellularity. , 2007, Radiology.
[38] C. Sotak,et al. The role of diffusion tensor imaging in the evaluation of ischemic brain injury – a review , 2002, NMR in biomedicine.
[39] F. Fornasa,et al. Diffusion‐weighted magnetic resonance imaging in the characterization of axillary lymph nodes in patients with breast cancer , 2012, Journal of magnetic resonance imaging : JMRI.
[40] A. Luciani,et al. Whole-Body Diffusion-weighted Imaging in Hodgkin Lymphoma and Diffuse Large B-Cell Lymphoma. , 2015, Radiographics : a review publication of the Radiological Society of North America, Inc.
[41] R. Meuli,et al. Perfusion Measurement in Brain Gliomas with Intravoxel Incoherent Motion MRI , 2014, American Journal of Neuroradiology.
[42] Myeong-Jin Kim,et al. Comparison of gadoxetic acid‐enhanced dynamic imaging and diffusion‐weighted imaging for the preoperative evaluation of colorectal liver metastases , 2011, Journal of magnetic resonance imaging : JMRI.
[43] Daisuke Takenaka,et al. High signal intensity in the dentate nucleus and globus pallidus on unenhanced T1-weighted MR images: relationship with increasing cumulative dose of a gadolinium-based contrast material. , 2014, Radiology.
[44] H. Merisaari,et al. Optimization of b‐value distribution for biexponential diffusion‐weighted MR imaging of normal prostate , 2014, Journal of magnetic resonance imaging : JMRI.
[45] Thorsten Feiweier,et al. Diffusion-weighted imaging of the liver with multiple b values: effect of diffusion gradient polarity and breathing acquisition on image quality and intravoxel incoherent motion parameters--a pilot study. , 2013, Radiology.
[46] W. T. Dixon,et al. Separation of diffusion and perfusion in intravoxel incoherent motion MR imaging: a modest proposal with tremendous potential. , 1988, Radiology.
[47] Joon Koo Han,et al. Nonalcoholic fatty liver disease: intravoxel incoherent motion diffusion-weighted MR imaging-an experimental study in a rabbit model. , 2013, Radiology.
[48] D. Collins,et al. Predicting response of colorectal hepatic metastasis: value of pretreatment apparent diffusion coefficients. , 2007, AJR. American journal of roentgenology.
[49] L. Mazzoni,et al. Diffusion‐weighted signal models in healthy and cancerous peripheral prostate tissues: Comparison of outcomes obtained at different b‐values , 2014, Journal of magnetic resonance imaging : JMRI.
[50] H. Lee,et al. Tumor perfusion‐related parameter of diffusion‐weighted magnetic resonance imaging: Correlation with histological microvessel density , 2014, Magnetic resonance in medicine.
[51] Pierre Croisille,et al. In Vivo Cardiac Diffusion-Weighted Magnetic Resonance Imaging: Quantification of Normal Perfusion and Diffusion Coefficients With Intravoxel Incoherent Motion Imaging , 2012, Investigative radiology.
[52] Utaroh Motosugi,et al. Intravoxel incoherent motion imaging of the kidney: alterations in diffusion and perfusion in patients with renal dysfunction. , 2013, Magnetic resonance imaging.
[53] K. Balashov,et al. Acute Multiple Sclerosis Lesion: Conversion of Restricted Diffusion Due to Vasogenic Edema , 2011, Journal of neuroimaging : official journal of the American Society of Neuroimaging.
[54] Makoto Obara,et al. Salivary gland tumors: use of intravoxel incoherent motion MR imaging for assessment of diffusion and perfusion for the differentiation of benign from malignant tumors. , 2012, Radiology.
[55] N. Shah,et al. Non-Gaussian Diffusion Imaging for Enhanced Contrast of Brain Tissue Affected by Ischemic Stroke , 2014, PloS one.
[56] Lei Tang,et al. Locally advanced rectal carcinoma treated with preoperative chemotherapy and radiation therapy: preliminary analysis of diffusion-weighted MR imaging for early detection of tumor histopathologic downstaging. , 2010, Radiology.
[57] W Dreher,et al. Temporal and regional changes during focal ischemia in rat brain studied by proton spectroscopic imaging and quantitative diffusion NMR imaging , 1998, Magnetic resonance in medicine.
[58] G. Cowin,et al. Microscopic diffusion properties of fixed breast tissue: Preliminary findings , 2015, Magnetic resonance in medicine.
[59] C. Meyer,et al. Evaluation of the functional diffusion map as an early biomarker of time-to-progression and overall survival in high-grade glioma. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[60] A. Luciani,et al. Diffusion-weighted MR imaging of the pancreas: current status and recommendations. , 2015, Radiology.
[61] Peter R Luijten,et al. ADC measurements of lymph nodes: inter- and intra-observer reproducibility study and an overview of the literature. , 2010, European journal of radiology.
[62] Denis Le Bihan,et al. Intravoxel incoherent motion perfusion MR imaging: a wake-up call. , 2008, Radiology.
[63] Lihua Chen,et al. Meta‐analysis of diffusion‐weighted MRI in the differential diagnosis of lung lesions , 2013, Journal of magnetic resonance imaging : JMRI.
[64] D. Bihan. Apparent Diffusion Coefficient and Beyond: What Diffusion MR Imaging Can Tell Us about Tissue Structure , 2013 .
[65] J. Helpern,et al. Diffusional kurtosis imaging: The quantification of non‐gaussian water diffusion by means of magnetic resonance imaging , 2005, Magnetic resonance in medicine.
[66] Berthold Kiefer,et al. Intravoxel incoherent motion diffusion-weighted MR imaging for characterization of focal pancreatic lesions. , 2013, Radiology.
[67] S. Aoki,et al. Diffusion tensor imaging analysis for psychiatric disorders. , 2013, Magnetic resonance in medical sciences : MRMS : an official journal of Japan Society of Magnetic Resonance in Medicine.
[68] Ernst J. Rummeny,et al. Detection, classification, and characterization of focal liver lesions: Value of diffusion-weighted MR imaging, gadoxetic acid-enhanced MR imaging and the combination of both methods , 2012, Abdominal Imaging.
[69] Bram Stieltjes,et al. Toward an optimal distribution of b values for intravoxel incoherent motion imaging. , 2011, Magnetic resonance imaging.
[70] L. Jacks,et al. Accuracy of unenhanced MR imaging in the detection of axillary lymph node metastasis: study of reproducibility and reliability. , 2012, Radiology.
[71] Y. Akiyama,et al. Biexponential Signal Attenuation Analysis of Diffusion-weighted Imaging of Breast. , 2010, Magnetic resonance in medical sciences : MRMS : an official journal of Japan Society of Magnetic Resonance in Medicine.
[72] R. Kikinis,et al. A review of magnetic resonance imaging and diffusion tensor imaging findings in mild traumatic brain injury , 2012, Brain Imaging and Behavior.
[73] Ruopeng Wang,et al. Preoperative and Intraoperative Diffusion Tensor Imaging-based Fiber Tracking in Glioma Surgery , 2005, Neurosurgery.
[74] Gottfried Schlaug,et al. Ischemic lesion volumes in acute stroke by diffusion‐weighted magnetic resonance imaging correlate with clinical outcome , 1997, Annals of neurology.
[75] Kaori Togashi,et al. Apparent diffusion coefficient as an MR imaging biomarker of low-risk ductal carcinoma in situ: a pilot study. , 2011, Radiology.
[76] Ulrike I Attenberger,et al. Diffusion Tensor Imaging of the Kidney With Parallel Imaging: Initial Clinical Experience , 2008, Investigative radiology.
[77] Catherine D. Chong,et al. White Matter Damage and Brain Network Alterations in Concussed Patients: A Review of Recent Diffusion Tensor Imaging and Resting-State Functional Connectivity Data , 2015, Current Pain and Headache Reports.
[78] T. Barrick,et al. From diffusion‐weighted MRI to anomalous diffusion imaging , 2008, Magnetic resonance in medicine.
[79] Sandra Nuyts,et al. Diffusion-weighted magnetic resonance imaging early after chemoradiotherapy to monitor treatment response in head-and-neck squamous cell carcinoma. , 2012, International journal of radiation oncology, biology, physics.
[80] T. Takahara,et al. Diffusion weighted whole body imaging with background body signal suppression (DWIBS): technical improvement using free breathing, STIR and high resolution 3D display. , 2004, Radiation medicine.
[81] Y. Kajiya,et al. FDG PET/CT and diffusion-weighted imaging for breast cancer: prognostic value of maximum standardized uptake values and apparent diffusion coefficient values of the primary lesion , 2010, European Journal of Nuclear Medicine and Molecular Imaging.
[82] J. Soto,et al. Characterizing non‐gaussian, high b‐value diffusion in liver fibrosis: Stretched exponential and diffusional kurtosis modeling , 2014, Journal of magnetic resonance imaging : JMRI.
[83] Jianrong Xu,et al. Intravoxel incoherent motion diffusion‐weighted MR imaging of breast cancer at 3.0 tesla: Comparison of different curve‐fitting methods , 2015, Journal of magnetic resonance imaging : JMRI.
[84] N. Bulakbaşı,et al. The Added Value of the Apparent Diffusion Coefficient Calculation to Magnetic Resonance Imaging in the Differentiation and Grading of Malignant Brain Tumors , 2004, Journal of computer assisted tomography.
[85] S. Cowper,et al. Gadolinium is detectable within the tissue of patients with nephrogenic systemic fibrosis. , 2007, Journal of the American Academy of Dermatology.
[86] Daniel K Sodickson,et al. Comparison of fitting methods and b‐value sampling strategies for intravoxel incoherent motion in breast cancer , 2015, Magnetic resonance in medicine.
[87] Jing Zhang,et al. The Histogram Analysis of Diffusion-Weighted Intravoxel Incoherent Motion (IVIM) Imaging for Differentiating the Gleason grade of Prostate Cancer , 2015, European Radiology.
[88] Bernard Van Beers. Science to Practice: Can We Diagnose Nonalcoholic Steatohepatitis with Intravoxel Incoherent Motion Diffusion-weighted MR Imaging? , 2014 .
[89] Luisa Ciobanu,et al. Characterization of Glioma Microcirculation and Tissue Features Using Intravoxel Incoherent Motion Magnetic Resonance Imaging in a Rat Brain Model , 2014, Investigative radiology.
[90] G. L. Bretthorst,et al. Statistical model for diffusion attenuated MR signal , 2003, Magnetic resonance in medicine.
[91] Jian Xu,et al. Diffusion‐weighted imaging of the liver: Comparison of navigator triggered and breathhold acquisitions , 2009, Journal of magnetic resonance imaging : JMRI.
[92] G. Fan,et al. Usefulness of diffusion/perfusion-weighted MRI in rat gliomas: correlation with histopathology. , 2005, Academic radiology.
[93] Bram Stieltjes,et al. Enhancing pancreatic adenocarcinoma delineation in diffusion derived intravoxel incoherent motion f‐maps through automatic vessel and duct segmentation , 2011, Magnetic resonance in medicine.
[94] R. Meuli,et al. Intravoxel incoherent motion perfusion imaging in acute stroke: initial clinical experience , 2014, Neuroradiology.
[95] D. Collins,et al. Therapy monitoring of skeletal metastases with whole‐body diffusion MRI , 2014, Journal of magnetic resonance imaging : JMRI.
[96] Qiong Li,et al. A systematic review and meta-analysis of the accuracy of diffusion-weighted MRI in the detection of malignant pulmonary nodules and masses. , 2014, Academic Radiology.
[97] Jean-Luc Daire,et al. Evaluation of liver diffusion isotropy and characterization of focal hepatic lesions with two single-shot echo-planar MR imaging sequences: prospective study in 66 patients. , 2003, Radiology.
[98] L H Schwamm,et al. Diffusion-weighted MR imaging: diagnostic accuracy in patients imaged within 6 hours of stroke symptom onset. , 1999, Radiology.
[99] Michael K Gould,et al. Evidence-Based Clinical Practice Guidelines Nodules : When Is It Lung Cancer ? : ACCP Evaluation of Patients With Pulmonary , 2007 .
[100] Harsh Kandpal,et al. Respiratory-triggered versus breath-hold diffusion-weighted MRI of liver lesions: comparison of image quality and apparent diffusion coefficient values. , 2009, AJR. American journal of roentgenology.
[101] Henry Rusinek,et al. Diffusion-Weighted Intravoxel Incoherent Motion Imaging of Renal Tumors With Histopathologic Correlation , 2012, Investigative radiology.
[102] D. Le Bihan,et al. Quantitative Non-Gaussian Diffusion and Intravoxel Incoherent Motion Magnetic Resonance Imaging: Differentiation of Malignant and Benign Breast Lesions , 2015, Investigative radiology.
[103] Hiroshi Honda,et al. Phyllodes tumor of the breast: correlation between MR findings and histologic grade. , 2006, Radiology.
[104] M. Sumi,et al. Head and Neck Tumors: Assessment of Perfusion-Related Parameters and Diffusion Coefficients Based on the Intravoxel Incoherent Motion Model , 2013, American Journal of Neuroradiology.
[105] E. Scurr,et al. Colorectal hepatic metastases: quantitative measurements using single-shot echo-planar diffusion-weighted MR imaging , 2006, European Radiology.
[106] Toshinori Hirai,et al. Usefulness of diffusion‐weighted MRI with echo‐planar technique in the evaluation of cellularity in gliomas , 1999, Journal of magnetic resonance imaging : JMRI.
[107] P. Basser,et al. MR diffusion tensor spectroscopy and imaging. , 1994, Biophysical journal.
[108] S. Haker,et al. On high b diffusion imaging in the human brain: ruminations and experimental insights. , 2009, Magnetic resonance imaging.
[109] H. Gudbjartsson,et al. The rician distribution of noisy mri data , 1995, Magnetic resonance in medicine.
[110] H. L. Dryden,et al. Investigations on the Theory of the Brownian Movement , 1957 .
[111] K. Siziopikou,et al. Rosen's Breast Pathology , 2009 .
[112] Younan Liu,et al. Apparent diffusion coefficient ratio between axillary lymph node with primary tumor to detect nodal metastasis in breast cancer patients , 2013, Journal of magnetic resonance imaging : JMRI.
[113] H. Hricak,et al. Mazaheri Y, Vargas HA, Akin O, Goldman DA, Hricak H. Reducing the influence of b‐value selection on diffusion‐weighted imaging of the prostate: evaluation of a revised monoexponential model within a clinical setting. J Magn Reson Imaging 2012;35:660–668 , 2012 .
[114] S. Warach,et al. Pitfalls and potential of clinical diffusion-weighted MR imaging in acute stroke. , 1997, Stroke.
[115] Young Kon Kim,et al. Diagnostic Accuracy and Sensitivity of Diffusion-Weighted and of Gadoxetic Acid-Enhanced 3-T MR Imaging Alone or in Combination in the Detection of Small Liver Metastasis (⩽1.5 cm in Diameter) , 2012, Investigative radiology.
[116] P. Choyke,et al. Diffusion-weighted magnetic resonance imaging as a cancer biomarker: consensus and recommendations. , 2009, Neoplasia.
[117] Julien Cohen-Adad,et al. The Human Connectome Project and beyond: Initial applications of 300mT/m gradients , 2013, NeuroImage.
[118] Carolin Reischauer,et al. Early Treatment Response in Non-Small Cell Lung Cancer Patients Using Diffusion-Weighted Imaging and Functional Diffusion Maps – A Feasibility Study , 2014, PloS one.
[119] Yaniv Assaf,et al. Composite hindered and restricted model of diffusion (CHARMED) MR imaging of the human brain , 2005, NeuroImage.
[120] Kathleen M Schmainda,et al. The effect of low b‐values on the intravoxel incoherent motion derived pseudodiffusion parameter in liver , 2015, Magnetic resonance in medicine.
[121] Hiroki Shirato,et al. Intravoxel incoherent motion diffusion-weighted imaging in head and neck squamous cell carcinoma: assessment of perfusion-related parameters compared to dynamic contrast-enhanced MRI. , 2014, Magnetic resonance imaging.
[122] Dorothee P. Auer,et al. Quantitative imaging biomarkers in neuro-oncology , 2009, Nature Reviews Clinical Oncology.
[123] R R Edelman,et al. Time course of the apparent diffusion coefficient (ADC) abnormality in human stroke , 1997, Neurology.
[124] Bram Stieltjes,et al. Intravoxel Incoherent Motion (IVIM) Diffusion Imaging in Prostate Cancer - What Does It Add? , 2014, Journal of computer assisted tomography.
[125] Reto Meuli,et al. Dependence of Brain Intravoxel Incoherent Motion Perfusion Parameters on the Cardiac Cycle , 2013, PloS one.
[126] J C Gore,et al. Analysis and correction of motion artifacts in diffusion weighted imaging , 1994, Magnetic resonance in medicine.
[127] N. D. de Souza,et al. Diffusion‐weighted imaging of the prostate and rectal wall: comparison of biexponential and monoexponential modelled diffusion and associated perfusion coefficients , 2009, NMR in biomedicine.
[128] D. Bihan,et al. Relationship between the diffusion time and the diffusion MRI signal observed at 17.2 tesla in the healthy rat brain cortex , 2014, Magnetic resonance in medicine.
[129] Xiaohong Joe Zhou,et al. Studies of anomalous diffusion in the human brain using fractional order calculus , 2010, Magnetic resonance in medicine.
[130] Shuixing Zhang,et al. Intravoxel incoherent motion (IVIM) in evaluation of breast lesions: comparison with conventional DWI. , 2013, European journal of radiology.
[131] D. Collins,et al. Combining diffusion-weighted MRI with Gd-EOB-DTPA-enhanced MRI improves the detection of colorectal liver metastases. , 2012, The British journal of radiology.
[132] Bram Stieltjes,et al. Intravoxel Incoherent Motion MRI for the Differentiation Between Mass Forming Chronic Pancreatitis and Pancreatic Carcinoma , 2011, Investigative radiology.
[133] J. Shah,et al. Comparing Primary Tumors and Metastatic Nodes in Head and Neck Cancer Using Intravoxel Incoherent Motion Imaging: A Preliminary Experience , 2013, Journal of computer assisted tomography.
[134] Jean-Francois Mangin,et al. Parallel MRI Noise Correction: An Extension of the LMMSE to Non Central χ Distributions , 2011, MICCAI.
[135] Erez Eyal,et al. Parametric Diffusion Tensor Imaging of the Breast , 2012, Investigative radiology.
[136] Kaoru Kurisu,et al. Apparent diffusion coefficient of human brain tumors at MR imaging. , 2005, Radiology.
[137] Yanqi Huang,et al. Liver diffusion-weighted MR imaging: reproducibility comparison of ADC measurements obtained with multiple breath-hold, free-breathing, respiratory-triggered, and navigator-triggered techniques. , 2014, Radiology.
[138] Hersh Chandarana,et al. Comparison of Biexponential and Monoexponential Model of Diffusion Weighted Imaging in Evaluation of Renal Lesions: Preliminary Experience , 2010, Investigative radiology.
[139] D. Le Bihan,et al. The clinical utility of reduced-distortion readout-segmented echo-planar imaging in the head and neck region: initial experience , 2014, European Radiology.
[140] Reducing the influence of b‐value selection on diffusion‐weighted imaging of the prostate: Evaluation of a revised monoexponential model within a clinical setting , 2012, Journal of magnetic resonance imaging : JMRI.
[141] R. Luechinger,et al. Whole-Body Diffusion Kurtosis Imaging: Initial Experience on Non-Gaussian Diffusion in Various Organs , 2014, Investigative radiology.
[142] M. Sumi,et al. Head and neck tumours: combined MRI assessment based on IVIM and TIC analyses for the differentiation of tumors of different histological types , 2013, European Radiology.
[143] I. Yamada,et al. Diffusion coefficients in abdominal organs and hepatic lesions: evaluation with intravoxel incoherent motion echo-planar MR imaging. , 1999, Radiology.
[144] C Baldock,et al. Test liquids for quantitative MRI measurements of self‐diffusion coefficient in vivo , 2000, Magnetic resonance in medicine.
[145] Hersh Chandarana,et al. Subtype Differentiation of Renal Tumors Using Voxel-Based Histogram Analysis of Intravoxel Incoherent Motion Parameters , 2015, Investigative radiology.
[146] Sandra Nuyts,et al. Head and neck squamous cell carcinoma: value of diffusion-weighted MR imaging for nodal staging. , 2009, Radiology.
[147] Tatsumi Kaji,et al. An intravoxel incoherent motion diffusion-weighted imaging study of prostate cancer. , 2012, AJR. American journal of roentgenology.
[148] W. Hoge,et al. Statistical noise analysis in GRAPPA using a parametrized noncentral Chi approximation model , 2011, Magnetic resonance in medicine.
[149] E. McVeigh,et al. Signal‐to‐noise measurements in magnitude images from NMR phased arrays , 1997 .
[150] Baris Turkbey,et al. Intravoxel incoherent motion MR imaging for prostate cancer: An evaluation of perfusion fraction and diffusion coefficient derived from different b‐value combinations , 2013, Magnetic resonance in medicine.
[151] J. Hyde,et al. Characterization of continuously distributed cortical water diffusion rates with a stretched‐exponential model , 2003, Magnetic resonance in medicine.
[152] A. Zwinderman,et al. Colorectal liver metastases: CT, MR imaging, and PET for diagnosis--meta-analysis. , 2005, Radiology.
[153] D. Le Bihan. The ‘wet mind’: water and functional neuroimaging , 2007, Physics in medicine and biology.
[154] H. Rusinek,et al. Diagnosis of cirrhosis with intravoxel incoherent motion diffusion MRI and dynamic contrast‐enhanced MRI alone and in combination: Preliminary experience , 2010, Journal of magnetic resonance imaging : JMRI.
[155] Louisa Bokacheva,et al. Intravoxel incoherent motion diffusion‐weighted MRI at 3.0 T differentiates malignant breast lesions from benign lesions and breast parenchyma , 2014, Journal of magnetic resonance imaging : JMRI.
[156] J. Kucharczyk,et al. Early detection of regional cerebral ischemia in cats: Comparison of diffusion‐ and T2‐weighted MRI and spectroscopy , 1990, Magnetic resonance in medicine.
[157] Hiroshi Honda,et al. Detection of axillary node metastasis using diffusion-weighted MRI in breast cancer. , 2013, Clinical imaging.
[158] D. Le Bihan,et al. Separation of diffusion and perfusion in intravoxel incoherent motion MR imaging. , 1988, Radiology.
[159] P. Grenier,et al. MR imaging of intravoxel incoherent motions: application to diffusion and perfusion in neurologic disorders. , 1986, Radiology.
[160] Mara Cercignani,et al. Corpus callosum damage predicts disability progression and cognitive dysfunction in primary‐progressive MS after five years , 2013, Human brain mapping.
[161] R. Kamble,et al. Diffusion-weighted imaging and proton MR spectroscopy in the characterization of acute disseminated encephalomyelitis , 2007, Neuroradiology.
[162] D. Yeung,et al. Non-Gaussian Analysis of Diffusion Weighted Imaging in Head and Neck at 3T: A Pilot Study in Patients with Nasopharyngeal Carcinoma , 2014, PloS one.
[163] Hervé Saint-Jalmes,et al. Optimization of intra‐voxel incoherent motion imaging at 3.0 Tesla for fast liver examination , 2015, Journal of magnetic resonance imaging : JMRI.
[164] Ning-Yu An,et al. Differentiation of clinically benign and malignant breast lesions using diffusion‐weighted imaging , 2002, Journal of magnetic resonance imaging : JMRI.
[165] O. Ciccarelli,et al. Diffusion MRI in multiple sclerosis , 2005, Neurology.
[166] Phillip Zhe Sun,et al. Stratification of Heterogeneous Diffusion MRI Ischemic Lesion With Kurtosis Imaging: Evaluation of Mean Diffusion and Kurtosis MRI Mismatch in an Animal Model of Transient Focal Ischemia , 2012, Stroke.
[167] D. Collins,et al. Whole-body diffusion-weighted MR imaging in cancer: current status and research directions. , 2011, Radiology.
[168] H. Schild,et al. Diffusion-Weighted Magnetic Resonance Imaging of the Pancreas: Diagnostic Benefit From an Intravoxel Incoherent Motion Model–Based 3 b-Value Analysis , 2014, Investigative radiology.
[169] Denis Le Bihan,et al. Imagerie de diffusion in-vivo par résonance magnétique nucléaire , 1985 .
[170] David J Collins,et al. Technology Insight: water diffusion MRI—a potential new biomarker of response to cancer therapy , 2008, Nature Clinical Practice Oncology.
[171] D. Yousem,et al. ADC values and prognosis of malignant astrocytomas: does lower ADC predict a worse prognosis independent of grade of tumor?--a meta-analysis. , 2013, AJR. American journal of roentgenology.
[172] Andreas Lemke,et al. Investigation of prostate cancer using diffusion-weighted intravoxel incoherent motion imaging. , 2011, Magnetic resonance imaging.
[173] Toshihiro Kumabe,et al. Malignant astrocytic tumors: clinical importance of apparent diffusion coefficient in prediction of grade and prognosis. , 2006, Radiology.
[174] Pierre Croisille,et al. Low b-Value Diffusion-Weighted Cardiac Magnetic Resonance Imaging: Initial Results in Humans Using an Optimal Time-Window Imaging Approach , 2011, Investigative radiology.
[175] D. Collins,et al. Diffusion-weighted MRI in the body: applications and challenges in oncology. , 2007, AJR. American journal of roentgenology.
[176] D. Le Bihan,et al. Diffusion tensor imaging: Concepts and applications , 2001, Journal of magnetic resonance imaging : JMRI.