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For: Low G, Kruse SA, Lomas DJ. General review of magnetic resonance elastography. World J Radiol 2016; 8(1): 59-72 [PMID: 26834944 DOI: 10.4329/wjr.v8.i1.59]
URL: https://www.wjgnet.com/1949-8470/full/v8/i1/59.htm
Number Citing Articles
1
Kamal M Yakoub, David J Davies, Zhangjie Su, Conor Bentley, Mario Forcione, Emma Toman, Douglas Hammond, Callum N Watson, Jon Bishop, Lauren Cooper, Aron K Barbey, Vijay Sawlani, Valentina Di Pietro, Michael J Grey, Antonio Belli. Investigation into repetitive concussion in sport (RECOS): study protocol of a prospective, exploratory, observational cohort studyBMJ Open 2019; 9(7): e029883 doi: 10.1136/bmjopen-2019-029883
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Amit Kharat, Nikhith Soman Vanpully, Jacob Cheeran Jeeson. Simplified Guide to MR Elastography in Early Detection of Hepatic Fibrosis with Case ReportsIndian Journal of Radiology and Imaging 2021; 31(03): 644 doi: 10.1055/s-0041-1735929
3
Emily Steinkohl, Davide Bertoli, Tine Maria Hansen, Søren Schou Olesen, Asbjørn Mohr Drewes, Jens Brøndum Frøkjær. Practical and clinical applications of pancreatic magnetic resonance elastography: a systematic reviewAbdominal Radiology 2021; 46(10): 4744 doi: 10.1007/s00261-021-03143-3
4
Seyed M. Seyedpour, Mehdi Nabati, Lena Lambers, Sara Nafisi, Hans-Michael Tautenhahn, Ingolf Sack, Jürgen R. Reichenbach, Tim Ricken. Application of Magnetic Resonance Imaging in Liver Biomechanics: A Systematic ReviewFrontiers in Physiology 2021; 12 doi: 10.3389/fphys.2021.733393
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B. Wu, G. Warnock, M. Zaiss, C. Lin, M. Chen, Z. Zhou, L. Mu, D. Nanz, R. Tuura, G. Delso. An overview of CEST MRI for non-MR physicistsEJNMMI Physics 2016; 3(1) doi: 10.1186/s40658-016-0155-2
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Michitaka Tanaka, Tomokazu Numano, Tetsushi Habe, Daiki Ito, Toshiki Maeno, Takamichi Ueki, Keisuke Igarashi, Kazuyuki Mizuhara. Influence of Vibration Waveform on MR ElastographyJapanese Journal of Radiological Technology 2019; 75(3): 239 doi: 10.6009/jjrt.2019_JSRT_75.3.239
7
Heriberto Andres Nieves-Vazquez, Efe Ozkaya, Waiman Meinhold, Jun Ueda. Effects of Driver Placement and Phase on Multi-actuator Magnetic Resonance Elastography via Finite Element Analysis2023 American Control Conference (ACC) 2023; : 2234 doi: 10.23919/ACC55779.2023.10155915
8
Mitchell P Wilson, Prayash Katlariwala, Gavin Low. More Studies are Needed Evaluating the Diagnostic Accuracy of Magnetic Resonance Elastography for Allograft Renal Transplant RejectionKorean Journal of Radiology 2020; 21(8): 1024 doi: 10.3348/kjr.2020.0242
9
Benigno Marco Fanni, Alessandra Pizzuto, Giuseppe Santoro, Simona Celi. Introduction of a Novel Image-Based and Non-Invasive Method for the Estimation of Local Elastic Properties of Great VesselsElectronics 2022; 11(13): 2055 doi: 10.3390/electronics11132055
10
Wolfgang Kainz, Esra Neufeld, Wesley E. Bolch, Christian G. Graff, Chan Hyeong Kim, Niels Kuster, Bryn Lloyd, Tina Morrison, Paul Segars, Yeon Soo Yeom, Maria Zankl, X. George Xu, Benjamin M. W. Tsui. Advances in Computational Human Phantoms and Their Applications in Biomedical Engineering—A Topical ReviewIEEE Transactions on Radiation and Plasma Medical Sciences 2019; 3(1): 1 doi: 10.1109/TRPMS.2018.2883437
11
Christoph Dietrich, Jeffrey Bamber. Editorial on the Special Issue of Applied Sciences on the Topic of ElastographyApplied Sciences 2018; 8(8): 1232 doi: 10.3390/app8081232
12
Rencheng Zheng, Chunzi Shi, Chengyan Wang, Nannan Shi, Tian Qiu, Weibo Chen, Yuxin Shi, He Wang. Imaging-Based Staging of Hepatic Fibrosis in Patients with Hepatitis B: A Dynamic Radiomics Model Based on Gd-EOB-DTPA-Enhanced MRIBiomolecules 2021; 11(2): 307 doi: 10.3390/biom11020307
13
Frederick H Silver. Measurement of Mechanical Properties of Natural and Engineered ImplantsAdvances in Tissue Engineering & Regenerative Medicine: Open Access 2016; 1(1) doi: 10.15406/atroa.2016.01.00004
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Alexander G. Chartrain, Mehmet Kurt, Amy Yao, Rui Feng, Kambiz Nael, J Mocco, Joshua B. Bederson, Priti Balchandani, Raj K. Shrivastava. Utility of preoperative meningioma consistency measurement with magnetic resonance elastography (MRE): a reviewNeurosurgical Review 2019; 42(1): 1 doi: 10.1007/s10143-017-0862-8
15
Efstathios T. Detorakis. Ocular Rigidity, Biomechanics and Hydrodynamics of the Eye2021; : 51 doi: 10.1007/978-3-030-64422-2_4
16
Vladimir Egorov. Biomechanical Mapping of the Female Pelvic Floor2023; : 291 doi: 10.1016/B978-0-323-85161-9.00009-9
17
Frederick H. Silver, Michael Jaffe, Ruchit G. Shah. Handbook of Properties of Textile and Technical Fibres2018; : 345 doi: 10.1016/B978-0-08-101272-7.00011-0
18
Rijo Mathew Choorakuttil, Rajas N. Chaubal, Venkatesh K. Arunachalam, Neha Bagri, Anjali Gupta, Jitender Bansal, Thara Pratap, Varsha Sodani, Praveen K. Nirmalan. Practical Steps of Shear Wave Elastography for Nonalcoholic Fatty Liver Disease in an Adult PopulationIndographics 2022; 1(02): 171 doi: 10.1055/s-0042-1759544
19
Oisín Morrison, Michel Destrade, Bharat B. Tripathi. An atlas of the heterogeneous viscoelastic brain with local power-law attenuation synthesised using Prony-seriesActa Biomaterialia 2023; 169: 66 doi: 10.1016/j.actbio.2023.07.040
20
Teodóra Filipov, Brigitta Teutsch, Anett Szabó, Attila Forintos, Júlia Ács, Alex Váradi, Péter Hegyi, Tibor Szarvas, Nándor Ács, Péter Nyirády, Pál Ákos Deák. Investigating the role of ultrasound-based shear wave elastography in kidney transplanted patients: correlation between non-invasive fibrosis detection, kidney dysfunction and biopsy results—a systematic review and meta-analysisJournal of Nephrology 2024;  doi: 10.1007/s40620-023-01856-w
21
James P. Charles, Freddie H. Fu, William J. Anderst. Predictions of Anterior Cruciate Ligament Dynamics From Subject-Specific Musculoskeletal Models and Dynamic Biplane RadiographyJournal of Biomechanical Engineering 2021; 143(3) doi: 10.1115/1.4048710
22
Damian R. Sowinski, Matthew D. J. McGarry, Elijah E. W. Van Houten, Scott Gordon-Wylie, John B Weaver, Keith D. Paulsen. Poroelasticity as a Model of Soft Tissue Structure: Hydraulic Permeability Reconstruction for Magnetic Resonance Elastography in SilicoFrontiers in Physics 2021; 8 doi: 10.3389/fphy.2020.617582
23
Tomokazu NUMANO. The Basics of MR ElastographyJapanese Journal of Magnetic Resonance in Medicine 2020; 40(3): 110 doi: 10.2463/jjmrm.2020-1712
24
Ciara Durcan, Mokarram Hossain, Grégory Chagnon, Djordje Perić, Edouard Girard. Mechanical experimentation of the gastrointestinal tract: a systematic reviewBiomechanics and Modeling in Mechanobiology 2024; 23(1): 23 doi: 10.1007/s10237-023-01773-8
25
Ryan McAuley, A. Nolan, A. Curatolo, S. Alexandrov, F. Zvietcovich, A. Varea Bejar, S. Marcos, M. Leahy, J. S. Birkenfeld. Co-axial acoustic-based optical coherence vibrometry probe for the quantification of resonance frequency modes in ocular tissueScientific Reports 2022; 12(1) doi: 10.1038/s41598-022-21978-8
26
Manickam Subramanian, Michael S. M. Chin, Wilfred C. G. Peh. Imaging of the KneeMedical Radiology 2023; : 65 doi: 10.1007/174_2022_350
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M. Neidhardt, M. Bengs, S. Latus, M. Schlüter, T. Saathoff, A. Schlaefer. 4D deep learning for real-time volumetric optical coherence elastographyInternational Journal of Computer Assisted Radiology and Surgery 2021; 16(1): 23 doi: 10.1007/s11548-020-02261-5
28
Marco Andrea Zampini, Martina Guidetti, Thomas J. Royston, Dieter Klatt. Measuring viscoelastic parameters in Magnetic Resonance Elastography: a comparison at high and low magnetic field intensityJournal of the Mechanical Behavior of Biomedical Materials 2021; 120: 104587 doi: 10.1016/j.jmbbm.2021.104587
29
Xiaowei Hong, Ramkumar T. Annamalai, Tyler S. Kemerer, Cheri X. Deng, Jan P. Stegemann. Multimode ultrasound viscoelastography for three-dimensional interrogation of microscale mechanical properties in heterogeneous biomaterialsBiomaterials 2018; 178: 11 doi: 10.1016/j.biomaterials.2018.05.057
30
Diana Feier, Delia Muntean, Nina Bastati, Ahmed Ba-Ssalamah. Nonalcoholic Fatty Liver Disease - An Update2019;  doi: 10.5772/intechopen.82096
31
Yulia Alexandrovskaya, Olga Baum, Alexander Sovetsky, Alexander Matveyev, Lev Matveev, Emil Sobol, Vladimir Zaitsev. Optical Coherence Elastography as a Tool for Studying Deformations in Biomaterials: Spatially-Resolved Osmotic Strain Dynamics in Cartilaginous SamplesMaterials 2022; 15(3): 904 doi: 10.3390/ma15030904
32
Frederick H. Silver, Nikita Kelkar, Tanmay Deshmukh. Use of Vibrational Optical Coherence Tomography to Analyze the Mechanical Properties of Composite MaterialsSensors 2021; 21(6): 2001 doi: 10.3390/s21062001
33
Chunxiang Wang, Yingdan Wu, Xiaoguang Dong, Milena Armacki, Metin Sitti. In situ sensing physiological properties of biological tissues using wireless miniature soft robotsScience Advances 2023; 9(23) doi: 10.1126/sciadv.adg3988
34
Mohammadreza Ramzanpour, Mohammad Hosseini-Farid, Mariusz Ziejewski, Ghodrat Karami. A constrained particle swarm optimization algorithm for hyperelastic and visco-hyperelastic characterization of soft biological tissuesInternational Journal for Computational Methods in Engineering Science and Mechanics 2020; 21(4): 169 doi: 10.1080/15502287.2020.1767725
35
Christian Guenthner, Sweta Sethi, Marian Troelstra, Ayse Sila Dokumaci, Ralph Sinkus, Sebastian Kozerke. Ristretto MRE: A generalized multi‐shot GRE‐MRE sequenceNMR in Biomedicine 2019; 32(5) doi: 10.1002/nbm.4049
36
Spencer T. Brinker, Dieter Klatt. MR elastography of soft porous tissue phantoms with varying macrostructure and pore pressureJournal of the Mechanics and Physics of Solids 2023; 174: 105243 doi: 10.1016/j.jmps.2023.105243
37
Kanokwan Suwankanit, Miki Shimizu, Kazuhiko Suzuki, Masahiro Kaneda. Usefulness of Ultrasound Shear Wave Elastography for Detection of Quadriceps Contracture in Immobilized RatsAnimals 2023; 14(1): 76 doi: 10.3390/ani14010076
38
Gavin Low, Craig Ferguson, Stephanie Locas, Wendy Tu, Florin Manolea, Medica Sam, Mitchell P. Wilson. Multiparametric MR assessment of liver fat, iron, and fibrosis: a concise overview of the liver “Triple Screen”Abdominal Radiology 2023; 48(6): 2060 doi: 10.1007/s00261-023-03887-0
39
Seungtae Lee, Bio Joo, Mina Park, Sung Jun Ahn, Sang Hyun Suh. Magnetic Resonance Elastography for Clinicians and Researchers Unfamiliar With the FieldInvestigative Magnetic Resonance Imaging 2023; 27(4): 182 doi: 10.13104/imri.2023.0029
40
Rustam N Karanjia, Mary M E Crossey, I Jane Cox, Haddy K S Fye, Ramou Njie, Robert D Goldin, Simon D Taylor-Robinson. Hepatic steatosis and fibrosis: Non-invasive assessmentWorld Journal of Gastroenterology 2016; 22(45): 9880-9897 doi: 10.3748/wjg.v22.i45.9880
41
Hamid Helmi, Adeel Siddiqui, Yan Yan, Maryam Basij, Edgar Hernandez-Andrade, Juri Gelovani, Chaur-Dong Hsu, Sonia S. Hassan, Mohammad Mehrmohammadi. The role of noninvasive diagnostic imaging in monitoring pregnancy and detecting patients at risk for preterm birth: a review of quantitative approachesThe Journal of Maternal-Fetal & Neonatal Medicine 2022; 35(3): 568 doi: 10.1080/14767058.2020.1722099
42
Kiaran P. McGee, Ken‐Pin Hwang, Daniel C. Sullivan, John Kurhanewicz, Yanle Hu, Jihong Wang, Wen Li, Josef Debbins, Eric Paulson, Jeffrey R. Olsen, Chia‐ho Hua, Lizette Warner, Daniel Ma, Eduardo Moros, Neelam Tyagi, Caroline Chung. Magnetic resonance biomarkers in radiation oncology: The report of AAPM Task Group 294Medical Physics 2021; 48(7) doi: 10.1002/mp.14884
43
Chalida Aphinives, Watcharaphon Kiatsayompoo, Kulyada Eurboonyanun, Prin Twinprai, Saranya Jaruchainiwat. Tissue stiffness in BPH patients from magnetic resonance elastographyEgyptian Journal of Radiology and Nuclear Medicine 2021; 52(1) doi: 10.1186/s43055-021-00679-8
44
Fernando Zvietcovich, Kirill V Larin. Wave-based optical coherence elastography: the 10-year perspectiveProgress in Biomedical Engineering 2022; 4(1): 012007 doi: 10.1088/2516-1091/ac4512
45
Sílvio Leão Vieira, Lucas Nonato de Oliveira, Antonio Adilton O. Carneiro. Quantitative magnetic resonance elastography for polymer-gel dosimetry phantomsMedical Engineering & Physics 2019; 66: 102 doi: 10.1016/j.medengphy.2019.02.011
46
Zijie Wang, Haiwei Yang, Chuanjian Suo, Jifu Wei, Ruoyun Tan, Min Gu. Application of Ultrasound Elastography for Chronic Allograft Dysfunction in Kidney TransplantationJournal of Ultrasound in Medicine 2017; 36(9): 1759 doi: 10.1002/jum.14221
47
Anne-Sophie van Schelt, Kim Johanna Beek, Nienke Petronella Maria Wassenaar, Eric M. Schrauben, Jurgen H. Runge, Krisztina Barbara Gecse, Jarmila D. W. van der Bilt, E. Andra Neefjes-Borst, Christianne Johanna Buskens, Aart J. Nederveen, Jaap Stoker. Viscoelastic properties of small bowel mesentery at MR elastography in Crohn’s disease: a prospective cross-sectional exploratory studyEuropean Radiology Experimental 2023; 7(1) doi: 10.1186/s41747-023-00366-5
48
Shufang Pei, Bin Zhang, Shuzhen Cong, Juanjuan Liu, Suqing Wu, Yuhao Dong, Lu Zhang, Shuixing Zhang. Ultrasound Real-Time Tissue Elastography Improves the Diagnostic Performance of the ACR Thyroid Imaging Reporting and Data System in Differentiating Malignant from Benign Thyroid Nodules: A Summary of 1525 Thyroid NodulesInternational Journal of Endocrinology 2020; 2020: 1 doi: 10.1155/2020/1749351
49
Ian C. Y. Chang, Arvin Arani, Shivaram Poigai Arunachalam, Martha Grogan, Angela Dispenzieri, Philip A. Araoz. Feasibility study of cardiac magnetic resonance elastography in cardiac amyloidosisAmyloid 2017; 24(sup1): 161 doi: 10.1080/13506129.2017.1278689
50
Ryouna Abe, Kei Fukuzawa, Chiharu Yoshihara, Masakatsu Tano, Satoshi Saitoh. Comparison of spin-echo echo planar imaging and gradient-recalled echo sequences in magnetic resonance elastography of liver at 1.5T same MRI scannerAbdominal Radiology 2023; 49(3): 694 doi: 10.1007/s00261-023-04098-3
51
Kartik S. Jhaveri, Hooman Hosseini-Nik, Nima Sadoughi, Harry Janssen, Jordan J. Feld, Sandra Fischer, Ravi Menezes, Angela C. Cheung. The development and validation of magnetic resonance elastography for fibrosis staging in primary sclerosing cholangitisEuropean Radiology 2019; 29(2): 1039 doi: 10.1007/s00330-018-5619-4
52
О. P. Sharmazanova, I. N. Safonova, Y. S. Mityakova. Applicability of sonoelastography in leiomyoma and adenomyosisУкраїнський радіологічний та онкологічний журнал 2021; 29(1): 78 doi: 10.46879/ukroj.1.2021.78-88
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Robert M. Hackett. Hyperelasticity Primer2018; : 29 doi: 10.1007/978-3-319-73201-5_5
54
ByukGyung Choi, In Young Choi, Sang Hoon Cha, Suk Keu Yeom, Hwan Hoon Chung, Seung Hwa Lee, Jaehyung Cha, Ju-Han Lee. Feasibility of computed tomography texture analysis of hepatic fibrosis using dual-energy spectral detector computed tomographyJapanese Journal of Radiology 2020; 38(12): 1179 doi: 10.1007/s11604-020-01020-5
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A. Berzigotti, M. França, D. Martí-Aguado, L. Martí-Bonmatí. Cuantificación de la fibrosis hepática mediante biomarcadores de imagenRadiología 2018; 60(1): 74 doi: 10.1016/j.rx.2017.09.003
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M. Plaikner, C. Kremser, H. Zoller, M. Steurer, B. Glodny, W. Jaschke, B. Henninger. Does gadoxetate disodium affect MRE measurements in the delayed hepatobiliary phase?European Radiology 2019; 29(2): 829 doi: 10.1007/s00330-018-5616-7
57
Chongyang Wang, Jiang Zhu, Jiawei Ma, Xiaochen Meng, Zongqing Ma, Fan Fan. Optical coherence elastography and its applications for the biomechanical characterization of tissuesJournal of Biophotonics 2023; 16(12) doi: 10.1002/jbio.202300292
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Moomal Rose Haris, Harun Gupta. Orthopedics of the Upper and Lower Limb2020; : 613 doi: 10.1007/978-3-030-43286-7_35
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Christopher Ebersole, Rizwan Ahmad, Adam V. Rich, Lee C. Potter, Huiming Dong, Arunark Kolipaka. A bayesian method for accelerated magnetic resonance elastography of the liverMagnetic Resonance in Medicine 2018; 80(3): 1178 doi: 10.1002/mrm.27083
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Michaela Plaikner, Christian Kremser, André Viveiros, Heinz Zoller, Benjamin Henninger. Magnetresonanzelastographie der LeberDer Radiologe 2020; 60(10): 966 doi: 10.1007/s00117-020-00690-6
61
Frederick H. Silver, Nikita Kelkar, Tanmay Deshmukh, Kelly Ritter, Nicole Ryan, Hari Nadiminti. Characterization of the Biomechanical Properties of Skin Using Vibrational Optical Coherence Tomography: Do Changes in the Biomechanical Properties of Skin Stroma Reflect Structural Changes in the Extracellular Matrix of Cancerous Lesions?Biomolecules 2021; 11(11): 1712 doi: 10.3390/biom11111712
62
Jayanti Mishra, Bhumika Kumar, Monika Targhotra, P. K. Sahoo. Advanced and futuristic approaches for breast cancer diagnosisFuture Journal of Pharmaceutical Sciences 2020; 6(1) doi: 10.1186/s43094-020-00113-2
63
Artur Hahn, Felix T. Kurz. Tissue Engineering Using Ceramics and Polymers2022; : 281 doi: 10.1016/B978-0-12-820508-2.00016-7
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Arvin Arani, Armando Manduca, Richard L Ehman, John Huston III. Harnessing brain waves: a review of brain magnetic resonance elastography for clinicians and scientists entering the fieldThe British Journal of Radiology 2021; 94(1119): 20200265 doi: 10.1259/bjr.20200265
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Barbora Kopecká, David Ravnik, Karel Jelen, Václav Bittner. Objective Methods of Muscle Tone Diagnosis and Their Application—A Critical ReviewSensors 2023; 23(16): 7189 doi: 10.3390/s23167189
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Robert M. Hackett. Hyperelasticity Primer2018; : 119 doi: 10.1007/978-3-319-73201-5_15
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Ross Mandeville, Swati Deshmukh, Ek Tsoon Tan, Viksit Kumar, Benjamin Sanchez, Arriyan S Dowlatshahi, Justin Luk, Reiner Henson B See, Carl Froilan D Leochico, Jasmine A Thum, Stanley Bazarek, Benjamin Johnston, Justin Brown, Jim Wu, Darryl Sneag, Seward Rutkove. A scoping review of current and emerging techniques for evaluation of peripheral nerve health, degeneration and regeneration: part 2, non-invasive imagingJournal of Neural Engineering 2023; 20(4): 041002 doi: 10.1088/1741-2552/ace217
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Simone Mastrogiacomo, Weiqiang Dou, John A. Jansen, X. Frank Walboomers. Magnetic Resonance Imaging of Hard Tissues and Hard Tissue Engineered Bio-substitutesMolecular Imaging and Biology 2019; 21(6): 1003 doi: 10.1007/s11307-019-01345-2
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Lisa Krainz, Ekaterina Sherina, Simon Hubmer, Mengyang Liu, Wolfgang Drexler, Otmar Scherzer. Quantitative Optical Coherence Elastography: A Novel Intensity-Based Inversion Method Versus Strain-Based ReconstructionsIEEE Journal of Selected Topics in Quantum Electronics 2023; 29(4: Biophotonics): 1 doi: 10.1109/JSTQE.2022.3225108
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Robert M. Hackett. Hyperelasticity Primer2018; : 19 doi: 10.1007/978-3-319-73201-5_4
71
Dominik Weidlich, Mark Zamskiy, Marcus Maeder, Stefan Ruschke, Steffen Marburg, Dimitrios C. Karampinos. Reduction of vibration‐induced signal loss by matching mechanical vibrational states: Application in high b‐value diffusion‐weighted MRSMagnetic Resonance in Medicine 2020; 84(1): 39 doi: 10.1002/mrm.28128
72
Gamal Shiha, Alaa Ibrahim, Ahmed Helmy, Shiv Kumar Sarin, Masao Omata, Ashish Kumar, David Bernstien, Hitushi Maruyama, Vivek Saraswat, Yogesh Chawla, Saeed Hamid, Zaigham Abbas, Pierre Bedossa, Puja Sakhuja, Mamun Elmahatab, Seng Gee Lim, Laurentius Lesmana, Jose Sollano, Ji-Dong Jia, Bahaa Abbas, Ashraf Omar, Barjesh Sharma, Diana Payawal, Ahmed Abdallah, Abdelhamid Serwah, Abdelkhalek Hamed, Aly Elsayed, Amany AbdelMaqsod, Tarek Hassanein, Ahmed Ihab, Hamsik GHaziuan, Nizar Zein, Manoj Kumar. Asian-Pacific Association for the Study of the Liver (APASL) consensus guidelines on invasive and non-invasive assessment of hepatic fibrosis: a 2016 updateHepatology International 2017; 11(1): 1 doi: 10.1007/s12072-016-9760-3
73
Anikó Folhoffer, Aladár D. Rónaszéki, Bettina K. Budai, Petra Borsos, Vince Orbán, Gabriella Győri, Ferenc Szalay, Pál N. Kaposi. Follow-Up of Liver Stiffness with Shear Wave Elastography in Chronic Hepatitis C Patients in Sustained Virological Response Augments Clinical Risk AssessmentProcesses 2021; 9(5): 753 doi: 10.3390/pr9050753
74
S. Martínez-Sanchis, M. J. Rupérez, E. Nadal, E. Pareja, S. Brugger, D. Borzacchiello, R. López-Andújar, C. Monserrat. Estimating the Relative Stiffness between a Hepatic Lesion and the Liver Parenchyma through Biomechanical Simulations of the Breathing ProcessMathematical Problems in Engineering 2018; 2018: 1 doi: 10.1155/2018/5317324
75
Marta Zerunian, Benedetta Masci, Damiano Caruso, Francesco Pucciarelli, Michela Polici, Stefano Nardacci, Domenico De Santis, Elsa Iannicelli, Andrea Laghi. Liver Magnetic Resonance Elastography: Focus on Methodology, Technique, and FeasibilityDiagnostics 2024; 14(4): 379 doi: 10.3390/diagnostics14040379
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Matthew Caius, Abbas Samani. Comparative Study of Ultrasound Tissue Motion Tracking Techniques for Effective Breast Ultrasound ElastographyApplied Sciences 2023; 13(21): 11912 doi: 10.3390/app132111912
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Yahua Wang, He Li, Yuexin Guo, Wei-Ning Lee. Bidirectional Ultrasound Elastographic Imaging Framework for Non-invasive Assessment of the Non-linear Behavior of a Physiologically Pressurized ArteryUltrasound in Medicine & Biology 2019; 45(5): 1184 doi: 10.1016/j.ultrasmedbio.2019.01.014
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Christian Guenthner, Sebastian Kozerke. Encoding and readout strategies in magnetic resonance elastographyNMR in Biomedicine 2018; 31(10) doi: 10.1002/nbm.3919
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Sayantan Patra, Shabnam Bhandari Grover. Physical Principles of Elastography: A Primer for RadiologistsIndographics 2022; 1(01): 027 doi: 10.1055/s-0042-1742575