Updates in hepatic oncology imaging.
暂无分享,去创建一个
Ankur Pandey | Pallavi Pandey | Timothy M Pawlik | T. Pawlik | I. Kamel | P. Pandey | C. Schmidt | Ihab R Kamel | Carl Schmidt | Heather Lewis | Mary Dillhoff | M. Dillhoff | H. Lewis | A. Pandey
[1] E. Fishman,et al. Incremental Value of Advanced Image Processing of Multislice Computed Tomography Data in the Evaluation of Hypervascular Liver Lesions , 2003, Journal of computer assisted tomography.
[2] C. Ganter,et al. Characterization of focal liver lesions by ADC measurements using a respiratory triggered diffusion-weighted single-shot echo-planar MR imaging technique , 2008, European Radiology.
[3] Michael Laniado,et al. Diagnostic efficacy of gadoxetic acid (Primovist)-enhanced MRI and spiral CT for a therapeutic strategy: comparison with intraoperative and histopathologic findings in focal liver lesions , 2008, European Radiology.
[4] W D Foley,et al. Four multidetector-row helical CT: image quality and volume coverage speed. , 2000, Radiology.
[5] M. Macari,et al. Dual energy CT: preliminary observations and potential clinical applications in the abdomen , 2008, European Radiology.
[6] Kazuo Awai,et al. A simple method for accurate liver volume estimation by use of curve-fitting: a pilot study , 2012, Radiological Physics and Technology.
[7] I. Kamel,et al. Impact of multidetector CT on donor selection and surgical planning before living adult right lobe liver transplantation. , 2001, AJR. American journal of roentgenology.
[8] Mickael Tanter,et al. Viscoelastic shear properties of in vivo breast lesions measured by MR elastography. , 2005, Magnetic resonance imaging.
[9] V. Duddalwar,et al. Contrast-enhanced ultrasound of the liver and kidney. , 2014, Radiologic clinics of North America.
[10] Yoshikazu Maruyama,et al. Planning of anatomical liver segmentectomy and subsegmentectomy with 3-dimensional simulation software. , 2013, American journal of surgery.
[11] A. Altendorf-Hofmann,et al. Hepatic metastases from colorectal carcinoma: Impact of surgical resection on the natural history , 1990, The British journal of surgery.
[12] J. Pomposelli,et al. Accurate Estimation of Living Donor Right Hemi‐Liver Volume From Portal Vein Diameter Measurement and Standard Liver Volume Calculation , 2012, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[13] I. Yamada,et al. Diffusion coefficients in abdominal organs and hepatic lesions: evaluation with intravoxel incoherent motion echo-planar MR imaging. , 1999, Radiology.
[14] H. Zirngibl,et al. Intraoperative Ultrasonography versus Helical Computed Tomography and Computed Tomography with Arterioportography in Diagnosing Colorectal Liver Metastases: Lesion-by-lesion Analysis , 2000, World Journal of Surgery.
[15] Rong Tu,et al. Assessment of hepatic functional reserve by cirrhosis grading and liver volume measurement using CT. , 2007, World journal of gastroenterology.
[16] Young Kon Kim,et al. Validation of diagnostic criteria using gadoxetic acid-enhanced and diffusion-weighted MR imaging for small hepatocellular carcinoma (≤ 2.0 cm) in patients with hepatitis-induced liver cirrhosis , 2013, Acta radiologica.
[17] Assessment of future remnant liver regeneration after portal vein embolization using three-dimensional CT and MR volumetric analyses. , 2006, Australasian radiology.
[18] Bohyoung Kim,et al. Feasibility of semiautomated MR volumetry using gadoxetic acid–enhanced MRI at hepatobiliary phase for living liver donors , 2014, Magnetic resonance in medicine.
[19] Young Kon Kim,et al. Small intrahepatic mass-forming cholangiocarcinoma: target sign on diffusion-weighted imaging for differentiation from hepatocellular carcinoma , 2013, Abdominal Imaging.
[20] D. Le Bihan,et al. Separation of diffusion and perfusion in intravoxel incoherent motion MR imaging. , 1988, Radiology.
[21] S. Kumano,et al. Assessment of Gd-EOB-DTPA-enhanced MRI for HCC and dysplastic nodules and comparison of detection sensitivity versus MDCT , 2012, Journal of Gastroenterology.
[22] Marek Ancukiewicz,et al. Magnetic resonance imaging biomarkers in hepatocellular carcinoma: association with response and circulating biomarkers after sunitinib therapy , 2013, Journal of Hematology & Oncology.
[23] M Van Glabbeke,et al. New guidelines to evaluate the response to treatment in solid tumors. European Organization for Research and Treatment of Cancer, National Cancer Institute of the United States, National Cancer Institute of Canada. , 2000, Journal of the National Cancer Institute.
[24] Miss A.O. Penney. (b) , 1974, The New Yale Book of Quotations.
[25] Celia P. Corona-Villalobos,et al. Islet cell liver metastases: assessment of volumetric early response with functional MR imaging after transarterial chemoembolization. , 2012, Radiology.
[26] Brice Gayet,et al. Systematic review of the use of pre‐operative simulation and navigation for hepatectomy: current status and future perspectives , 2015, Journal of hepato-biliary-pancreatic sciences.
[27] Vivian S Lee,et al. Isotropic 3D T2-weighted MR cholangiopancreatography with parallel imaging: feasibility study. , 2006, AJR. American journal of roentgenology.
[28] Eleni Liapi,et al. Multidetector CT of hepatocellular carcinoma. , 2005, Best practice & research. Clinical gastroenterology.
[29] L Pagliaro,et al. Clinical management of hepatocellular carcinoma. Conclusions of the Barcelona-2000 EASL conference. European Association for the Study of the Liver. , 2001, Journal of hepatology.
[30] J. Tubiana,et al. Normal and pathologic features of the postoperative biliary tract at 3D MR cholangiopancreatography and MR imaging. , 2006, Radiographics : a review publication of the Radiological Society of North America, Inc.
[31] G. Zahlmann,et al. Impact of virtual reality imaging on hepatic liver tumor resection: calculation of risk , 2000, Langenbeck's Archives of Surgery.
[32] Leo Joskowicz,et al. A fully automatic end-to-end method for content-based image retrieval of CT scans with similar liver lesion annotations , 2017, International Journal of Computer Assisted Radiology and Surgery.
[33] T. de Baère,et al. Portal vein embolization: utility for inducing left hepatic lobe hypertrophy before surgery. , 1993, Radiology.
[34] Maximilian F Reiser,et al. MR imaging in patients with suspected liver metastases: value of liver-specific contrast agent Gd-EOB-DTPA. , 2007, Magnetic resonance in medical sciences : MRMS : an official journal of Japan Society of Magnetic Resonance in Medicine.
[35] Celia P. Corona-Villalobos,et al. Interobserver agreement of semi-automated and manual measurements of functional MRI metrics of treatment response in hepatocellular carcinoma. , 2014, European journal of radiology.
[36] J. Catheline,et al. Laparoscopic ultrasound of the liver. , 2000, European journal of ultrasound : official journal of the European Federation of Societies for Ultrasound in Medicine and Biology.
[37] D. Ganeshan,et al. Portal vein embolization: cross-sectional imaging of normal features and complications. , 2012, AJR. American journal of roentgenology.
[38] E. Fishman,et al. Recent advances in CT imaging of liver metastases. , 2004, Cancer journal.
[39] K Kaczirek,et al. Gadoxetic acid-enhanced 3.0 T MR imaging versus multidetector-row CT in the detection of colorectal metastases in fatty liver using intraoperative ultrasound and histopathology as a standard of reference. , 2012, European journal of surgical oncology : the journal of the European Society of Surgical Oncology and the British Association of Surgical Oncology.
[40] Bjørn Edwin,et al. Local tumor progression after radiofrequency ablation of colorectal liver metastases: evaluation of ablative margin and three-dimensional volumetric analysis. , 2007, Journal of vascular and interventional radiology : JVIR.
[41] Hirofumi Fujii,et al. Radiologic measurements of tumor response to treatment: practical approaches and limitations. , 2008, Radiographics : a review publication of the Radiological Society of North America, Inc.
[42] B. Choi,et al. Low tube voltage intermediate tube current liver MDCT: sinogram-affirmed iterative reconstruction algorithm for detection of hypervascular hepatocellular carcinoma. , 2013, AJR. American journal of roentgenology.
[43] C. Glover,et al. Accuracy of Investigations for Asymptomatic Colorectal Liver Metastases , 2002, Diseases of the colon and rectum.
[44] Celia P. Corona-Villalobos,et al. Unresectable hepatocellular carcinoma: MR imaging after intraarterial therapy. Part I. Identification and validation of volumetric functional response criteria. , 2013, Radiology.
[45] Holger Bourquain,et al. Role of three-dimensional imaging in operative planning for hilar cholangiocarcinoma. , 2007, Surgery.
[46] Caroline Reinhold,et al. Consensus statements from a multidisciplinary expert panel on the utilization and application of a liver-specific MRI contrast agent (gadoxetic acid). , 2015, AJR. American journal of roentgenology.
[47] N. Rofsky,et al. Abdominal MR imaging with a volumetric interpolated breath-hold examination. , 1999, Radiology.
[48] N. Michels,et al. Blood supply and anatomy of the upper abdominal organs, with a descriptive atlas , 1955 .
[49] B. Hamm,et al. Liver volume measurement: reason of the difference between in vivo CT-volumetry and intraoperative ex vivo determination and how to cope it , 2010, European journal of medical research.
[50] R. Constable,et al. MR physics of body MR imaging. , 2003, Radiologic clinics of North America.
[51] E. Hecht,et al. Focal liver lesion detection and characterization with diffusion-weighted MR imaging: comparison with standard breath-hold T2-weighted imaging. , 2008, Radiology.
[52] T. Winter,et al. Hepatic arterial anatomy: demonstration of normal supply and vascular variants with three-dimensional CT angiography. , 1995, Radiographics : a review publication of the Radiological Society of North America, Inc.
[53] A. Halefoglu. Magnetic resonance cholangiopancreatography: a useful tool in the evaluation of pancreatic and biliary disorders. , 2007, World journal of gastroenterology.
[54] E. Hatano,et al. Usefulness of operative planning based on 3-dimensional CT cholangiography for biliary malignancies. , 2015, Surgery.
[55] John Eng,et al. Neuroendocrine liver metastasis treated by using intraarterial therapy: volumetric functional imaging biomarkers of early tumor response and survival. , 2013, Radiology.
[56] Chi-hua Fang,et al. Impact of three-dimensional reconstruction technique in the operation planning of centrally located hepatocellular carcinoma. , 2015, Journal of the American College of Surgeons.
[57] J. Marrero,et al. ACG Clinical Guideline: The Diagnosis and Management of Focal Liver Lesions , 2014, The American Journal of Gastroenterology.
[58] Yoshihiro Sakamoto,et al. Virtual liver resection: computer-assisted operation planning using a three-dimensional liver representation , 2013, Journal of hepato-biliary-pancreatic sciences.
[59] Elliot K Fishman,et al. Surgically staged focal liver lesions: accuracy and reproducibility of dual-phase helical CT for detection and characterization. , 2003, Radiology.
[60] A. Benson,et al. 90Y Radioembolization for Metastatic Neuroendocrine Liver Tumors: Preliminary Results From a Multi-institutional Experience , 2008, Annals of surgery.
[61] I. Kamel,et al. Living donor liver transplantation in adults: vascular variants important in surgical planning for donors and recipients. , 2003, AJR. American journal of roentgenology.
[62] N. Hosten,et al. Visualization of hepatic uptake transporter function in healthy subjects by using gadoxetic acid-enhanced MR imaging. , 2012, Radiology.
[63] Ehsan Samei,et al. Hypervascular liver tumors: low tube voltage, high tube current multidetector CT during late hepatic arterial phase for detection--initial clinical experience. , 2009, Radiology.
[64] Celia P. Corona-Villalobos,et al. Unresectable hepatocellular carcinoma: MR imaging after intraarterial therapy. Part II. Response stratification using volumetric functional criteria after intraarterial therapy. , 2013, Radiology.
[65] V. Vilgrain,et al. Ultrasonographic surveillance of hepatocellular carcinoma in cirrhosis: A randomized trial comparing 3‐ and 6‐month periodicities , 2011, Hepatology.
[66] M. van Glabbeke,et al. New guidelines to evaluate the response to treatment in solid tumors , 2000, Journal of the National Cancer Institute.
[67] Alvin C. Silva,et al. Innovations in CT dose reduction strategy: application of the adaptive statistical iterative reconstruction algorithm. , 2010, AJR. American journal of roentgenology.
[68] Heinz-Otto Peitgen,et al. Improved assessment of functional resectability in repeated hepatectomy by computer-assisted operation planning. , 2005, Hepato-gastroenterology.
[69] M. Lafortune,et al. Segmental anatomy of the liver: a sonographic approach to the Couinaud nomenclature. , 1991, Radiology.
[70] Simone Perandini,et al. The diagnostic contribution of CT volumetric rendering techniques in routine practice , 2010, The Indian journal of radiology & imaging.
[71] S. Venkatesh,et al. Magnetic resonance elastography for the detection and staging of liver fibrosis in chronic hepatitis B , 2013, European Radiology.
[72] James H Thrall,et al. Radiation dose reduction with hybrid iterative reconstruction for pediatric CT. , 2012, Radiology.
[73] Nancy A Obuchowski,et al. Characteristics and distinguishing features of hepatocellular adenoma and focal nodular hyperplasia on gadoxetate disodium-enhanced MRI. , 2012, AJR. American journal of roentgenology.
[74] Frank H. Miller,et al. The ins and outs of liver imaging. , 2015, Clinics in liver disease.
[75] V. Gulani,et al. Multiparametric MR Imaging in Abdominal Malignancies. , 2016, Magnetic resonance imaging clinics of North America.
[76] J. Bussink,et al. Diffusion-weighted MR imaging in liver metastases of colorectal cancer: reproducibility and biological validation , 2013, European Radiology.
[77] Dushyant V. Sahani,et al. Vascular and biliary variants in the liver: implications for liver surgery. , 2008, Radiographics : a review publication of the Radiological Society of North America, Inc.
[78] Elmar M Merkle,et al. Gadoxetate disodium-enhanced MRI of the liver: part 1, protocol optimization and lesion appearance in the noncirrhotic liver. , 2010, AJR. American journal of roentgenology.
[79] Yuan Ji,et al. Contribution of Diffusion-Weighted Magnetic Resonance Imaging in the Characterization of Hepatocellular Carcinomas and Dysplastic Nodules in Cirrhotic Liver , 2010, Journal of computer assisted tomography.
[80] Gaofeng Shi,et al. Quantitative analysis of the dual-energy CT virtual spectral curve for focal liver lesions characterization. , 2014, European journal of radiology.
[81] Hui Zhu,et al. Performance of magnetic resonance elastography and diffusion‐weighted imaging for the staging of hepatic fibrosis: A meta‐analysis , 2012, Hepatology.
[82] M. Haberal,et al. Imaging of hepatic arterial anatomy for depicting vascular variations in living related liver transplant donor candidates with multidetector computed tomography: comparison with conventional angiography. , 2005, Transplantation proceedings.
[83] Fabian Kiessling,et al. Recent advances in molecular, multimodal and theranostic ultrasound imaging. , 2014, Advanced drug delivery reviews.
[84] T. Baère,et al. Preoperative portal vein embolization for extension of hepatectomy indications , 1996, Hepatology.
[85] Namkug Kim,et al. Malignant hepatic tumors: short-term reproducibility of apparent diffusion coefficients with breath-hold and respiratory-triggered diffusion-weighted MR imaging. , 2010, Radiology.
[86] Volumetric low-tube-voltage CT imaging for evaluating hypervascular hepatocellular carcinoma; effects on radiation exposure, image quality, and diagnostic performance , 2013, Japanese Journal of Radiology.
[87] L. Fayad,et al. Functional magnetic resonance cholangiography (fMRC) of the gallbladder and biliary tree with contrast‐enhanced magnetic resonance cholangiography , 2003, Journal of magnetic resonance imaging : JMRI.
[88] R. Ehman,et al. Magnetic resonance elastography of liver: Technique, analysis, and clinical applications , 2013, Journal of magnetic resonance imaging : JMRI.
[89] Ralph Sinkus,et al. MR elastography of the liver: defining thresholds for detecting viscoelastic changes. , 2013, Radiology.
[90] Katsuhiro Nasu,et al. Diffusion-weighted imaging of surgically resected hepatocellular carcinoma: imaging characteristics and relationship among signal intensity, apparent diffusion coefficient, and histopathologic grade. , 2009, AJR. American journal of roentgenology.
[91] T. Johnson,et al. Dual-energy CT: general principles. , 2012, AJR. American journal of roentgenology.
[92] Mannudeep K. Kalra,et al. Comparison of Hybrid and Pure Iterative Reconstruction Techniques With Conventional Filtered Back Projection: Dose Reduction Potential in the Abdomen , 2012, Journal of computer assisted tomography.
[93] Jae Young Lee,et al. Navigator‐triggered isotropic three‐dimensional magnetic resonance cholangiopancreatography in the diagnosis of malignant biliary obstructions: Comparison with direct cholangiography , 2008, Journal of magnetic resonance imaging : JMRI.
[94] S Schaller,et al. Subsecond multi-slice computed tomography: basics and applications. , 1999, European journal of radiology.
[95] Atilla P Kiraly,et al. Hepatocellular carcinoma: response to TACE assessed with semiautomated volumetric and functional analysis of diffusion-weighted and contrast-enhanced MR imaging data. , 2011, Radiology.
[96] D. Lu,et al. CT and MRI improve detection of hepatocellular carcinoma, compared with ultrasound alone, in patients with cirrhosis. , 2011, Clinical gastroenterology and hepatology : the official clinical practice journal of the American Gastroenterological Association.
[97] Myeong-Jin Kim,et al. Characterization of Incidental Liver Lesions: Comparison of Multidetector CT versus Gd-EOB-DTPA-Enhanced MR Imaging , 2013, PloS one.
[98] A. Sodickson,et al. Three-dimensional fast-recovery fast spin-echo MRCP: comparison with two-dimensional single-shot fast spin-echo techniques. , 2006, Radiology.
[99] E. Hecht,et al. Focal Liver Lesion Detection and Characterization with Diffusion- weighted MR Imaging: ComparisonwithStandard , 2008 .
[100] Eun Sun Lee,et al. MR elastography for noninvasive assessment of hepatic fibrosis: Reproducibility of the examination and reproducibility and repeatability of the liver stiffness value measurement , 2014, Journal of magnetic resonance imaging : JMRI.
[101] S. Msika,et al. Liver angulometry: a simple method to estimate liver volume and ratios. , 2013, HPB : the official journal of the International Hepato Pancreato Biliary Association.
[102] Janet M. Busey,et al. Dual-energy liver CT: effect of monochromatic imaging on lesion detection, conspicuity, and contrast-to-noise ratio of hypervascular lesions on late arterial phase. , 2014, AJR. American journal of roentgenology.
[103] P. Choyke,et al. Diffusion-weighted magnetic resonance imaging as a cancer biomarker: consensus and recommendations. , 2009, Neoplasia.
[104] Mathias Prokop,et al. Multislice CT: technical principles and future trends , 2003, European radiology.
[105] E. Hecht,et al. Diagnosis of liver metastases: value of diffusion-weighted MRI compared with gadolinium-enhanced MRI , 2010, European Radiology.
[106] R. Nelson,et al. Imaging in the preoperative evaluation of adult liver-transplant candidates: goals, merits of various procedures, and recommendations. , 1995, AJR. American journal of roentgenology.
[107] U. Motosugi,et al. Multi-organ perfusion CT in the abdomen using a 320-detector row CT scanner: preliminary results of perfusion changes in the liver, spleen, and pancreas of cirrhotic patients. , 2012, European journal of radiology.
[108] E. J. van der Jagt,et al. Increase in volume of ablation zones during follow-up is highly suggestive of ablation site recurrence in colorectal liver metastases treated with radiofrequency ablation. , 2012, Journal of vascular and interventional radiology : JVIR.
[109] P Stolzmann,et al. CT- and MRI-based volumetry of resected liver specimen: comparison to intraoperative volume and weight measurements and calculation of conversion factors. , 2010, European journal of radiology.
[110] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[111] N. Rofsky,et al. Hepatobiliary MR imaging with gadolinium‐based contrast agents , 2012, Journal of magnetic resonance imaging : JMRI.
[112] Mirko D'Onofrio,et al. Liver volumetry: Is imaging reliable? Personal experience and review of the literature. , 2014, World journal of radiology.
[113] B. Song,et al. Preoperative Evaluation of the Histological Grade of Hepatocellular Carcinoma with Diffusion-Weighted Imaging: A Meta-Analysis , 2015, PloS one.
[114] L. Trinquart,et al. New MR imaging criteria with a diffusion-weighted sequence for the diagnosis of hepatocellular carcinoma in chronic liver diseases. , 2011, Journal of hepatology.
[115] Y. Ohno,et al. Perfusion measurement of the whole upper abdomen of patients with and without liver diseases: initial experience with 320-detector row CT. , 2012, European journal of radiology.
[116] T. de Baère,et al. Preoperative portal vein embolization for extension of hepatectomy indications , 1996, Hepatology.
[117] G. Wakabayashi,et al. Impact of three-dimensional analysis of multidetector row computed tomography cholangioportography in operative planning for hilar cholangiocarcinoma. , 2011, American journal of surgery.
[118] T. Ichikawa,et al. Diffusion-weighted MR imaging with single-shot echo-planar imaging in the upper abdomen: preliminary clinical experience in 61 patients , 1999, Abdominal Imaging.