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IV ECO, III ECO, Johnson DA. Clinical update for the diagnosis and treatment of |
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URL: | https://www.wjgnet.com/2150-5349/full/v5/i1/1.htm |
Number | Citing Articles |
1 |
Traian Tache, Răzvan Chirică, Marius-Daniel Radu, Gabriela Gegiu, Sorin Rugină. Prevalence of infections with Clostridium difficile on potential pathology groups. Ovidius University Annals of Chemistry 2019; 30(1): 21 doi: 10.2478/auoc-2019-0004
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2 |
Patrizia Spigaglia, Paola Mastrantonio, Fabrizio Barbanti. Updates on Clostridium difficile in Europe. Advances in Experimental Medicine and Biology 2018; 1050: 137 doi: 10.1007/978-3-319-72799-8_9
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3 |
Hüseyin Sancar Bozkurt, Banu Kara. Combination of oral vancomycin and intra-colonic vancomycin: Successful treatment of complicated pseudomembranous colitis in a child patient. SAGE Open Medical Case Reports 2019; 7 doi: 10.1177/2050313X19838442
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4 |
Astha Pokhrel, Asia Poudel, Kory B. Castro, Michael J. Celestine, Adenrele Oludiran, Alden J. Rinehold, Anthony M. Resek, Mariam A. Mhanna, Erin B. Purcell, Michael J. Federle. The (p)ppGpp Synthetase RSH Mediates Stationary-Phase Onset and Antibiotic Stress Survival in Clostridioides difficile. Journal of Bacteriology 2020; 202(19) doi: 10.1128/JB.00377-20
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5 |
Baoya Wang, Zhi Lv, Pingping Zhang, Jianrong Su. Molecular epidemiology and antimicrobial susceptibility of human Clostridium difficile isolates from a single institution in Northern China. Medicine 2018; 97(25): e11219 doi: 10.1097/MD.0000000000011219
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6 |
Sophie Fehlbaum, Christophe Chassard, Sophie Annick Poeker, Muriel Derrien, Candice Fourmestraux, Christophe Lacroix. Clostridium difficile colonization and antibiotics response in PolyFermS continuous model mimicking elderly intestinal fermentation. Gut Pathogens 2016; 8(1) doi: 10.1186/s13099-016-0144-y
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7 |
Ebrahim Kouhsari, Sara Abbasian, Mansour Sedighi, Hashem F. Yaseri, Shahram Nazari, Abed Z. Bialvaei, Parisa Dahim, Elnaze Z. Mirzaei, Mohammad Rahbar. Clostridium difficile infection: a review. Reviews in Medical Microbiology 2018; 29(3): 103 doi: 10.1097/MRM.0000000000000135
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8 |
Murali K. Yanda, William B. Guggino, Liudmila Cebotaru. A new role for heat shock factor 27 in the pathophysiology of Clostridium difficile toxin B. American Journal of Physiology-Gastrointestinal and Liver Physiology 2020; 318(1): G120 doi: 10.1152/ajpgi.00166.2019
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9 |
Sophie Fehlbaum, Christophe Chassard, Clarissa Schwab, Maarja Voolaid, Candice Fourmestraux, Muriel Derrien, Christophe Lacroix. In vitro Study of Lactobacillus paracasei CNCM I-1518 in Healthy and Clostridioides difficile Colonized Elderly Gut Microbiota. Frontiers in Nutrition 2019; 6 doi: 10.3389/fnut.2019.00184
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10 |
Jennifer Venhorst, Jos M. B. M. van der Vossen, Valeria Agamennone. Battling Enteropathogenic Clostridia: Phage Therapy for Clostridioides difficile and Clostridium perfringens. Frontiers in Microbiology 2022; 13 doi: 10.3389/fmicb.2022.891790
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11 |
Massimo Sartelli, Mark A. Malangoni, Fikri M. Abu-Zidan, Ewen A. Griffiths, Stefano Di Bella, Lynne V. McFarland, Ian Eltringham, Vishal G. Shelat, George C. Velmahos, Ciarán P. Kelly, Sahil Khanna, Zaid M. Abdelsattar, Layan Alrahmani, Luca Ansaloni, Goran Augustin, Miklosh Bala, Frédéric Barbut, Offir Ben-Ishay, Aneel Bhangu, Walter L. Biffl, Stephen M. Brecher, Adrián Camacho-Ortiz, Miguel A. Caínzos, Laura A. Canterbury, Fausto Catena, Shirley Chan, Jill R. Cherry-Bukowiec, Jesse Clanton, Federico Coccolini, Maria Elena Cocuz, Raul Coimbra, Charles H. Cook, Yunfeng Cui, Jacek Czepiel, Koray Das, Zaza Demetrashvili, Isidoro Di Carlo, Salomone Di Saverio, Irina Magdalena Dumitru, Catherine Eckert, Christian Eckmann, Edward H. Eiland, Mushira Abdulaziz Enani, Mario Faro, Paula Ferrada, Joseph Derek Forrester, Gustavo P. Fraga, Jean Louis Frossard, Rita Galeiras, Wagih Ghnnam, Carlos Augusto Gomes, Venkata Gorrepati, Mohamed Hassan Ahmed, Torsten Herzog, Felicia Humphrey, Jae Il Kim, Arda Isik, Rao Ivatury, Yeong Yeh Lee, Paul Juang, Luis Furuya-Kanamori, Aleksandar Karamarkovic, Peter K Kim, Yoram Kluger, Wen Chien Ko, Francis D. LaBarbera, Jae Gil Lee, Ari Leppaniemi, Varut Lohsiriwat, Sanjay Marwah, John E. Mazuski, Gokhan Metan, Ernest E. Moore, Frederick Alan Moore, Carl Erik Nord, Carlos A. Ordoñez, Gerson Alves Pereira Júnior, Nicola Petrosillo, Francisco Portela, Basant K. Puri, Arnab Ray, Mansoor Raza, Miran Rems, Boris E. Sakakushev, Gabriele Sganga, Patrizia Spigaglia, David B. Stewart, Pierre Tattevin, Jean Francois Timsit, Kathleen B. To, Cristian Tranà, Waldemar Uhl, Libor Urbánek, Harry van Goor, Angela Vassallo, Jean Ralph Zahar, Emanuele Caproli, Pierluigi Viale. WSES guidelines for management of Clostridium difficile infection in surgical patients. World Journal of Emergency Surgery 2015; 10(1) doi: 10.1186/s13017-015-0033-6
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12 |
P.E. Marik, S. Shankaran, L. King. The effect of copper-oxide-treated soft and hard surfaces on the incidence of healthcare-associated infections: a two-phase study. Journal of Hospital Infection 2020; 105(2): 265 doi: 10.1016/j.jhin.2020.02.006
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13 |
Meera B. Avila, Nathaniel P. Avila, Andrew W. Dupont. Recent Advances in the Diagnosis and Treatment of Clostridium Difficile Infection. F1000Research 2016; 5: 118 doi: 10.12688/f1000research.7109.1
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14 |
Sarishna Singh, Mae Newton-Foot, Pieter Nel, Colette Pienaar. Comparison of commercial assays and two-step approach to detect Clostridioides difficile in South Africa. African Journal of Laboratory Medicine 2022; 11(1) doi: 10.4102/ajlm.v11i1.1809
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15 |
Manuel Méndez-Bailón, Rodrigo Jiménez-García, Valentín Hernández-Barrera, Javier de Miguel-Díez, José M. de Miguel-Yanes, Nuria Muñoz-Rivas, Noel Lorenzo-Villalba, David Carabantes-Alarcon, José J. Zamorano-León, Paloma Astasio-Arbiza, Paloma Ortega-Molina, Ana López-de-Andrés. Heart Failure Is a Risk Factor for Suffering and Dying of Clostridium difficile Infection. Results of a 15-Year Nationwide Study in Spain. Journal of Clinical Medicine 2020; 9(3): 614 doi: 10.3390/jcm9030614
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16 |
Declan Bolton, Pilar Marcos. The Environment, Farm Animals and Foods as Sources of Clostridioides difficile Infection in Humans. Foods 2023; 12(5): 1094 doi: 10.3390/foods12051094
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17 |
Melissa Jackson, Sidney Olefson, Jason T. Machan, Colleen R. Kelly. A High Rate of Alternative Diagnoses in Patients Referred for Presumed Clostridium difficile Infection. Journal of Clinical Gastroenterology 2016; 50(9): 742 doi: 10.1097/MCG.0000000000000447
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18 |
Bo-Young Hong, Nancy Paula Maulén, Alexander J. Adami, Hector Granados, María Elvira Balcells, Jorge Cervantes. Microbiome Changes during Tuberculosis and Antituberculous Therapy. Clinical Microbiology Reviews 2016; 29(4): 915 doi: 10.1128/CMR.00096-15
|
19 |
Ho-Joong Joo, Sang-Ha Kim, Pil-Seung Kwon, Jae-Ki Ryu, Keun-Dol Yook, Young-Bin Yu, Young-Kwon Kim. Evaluation of the Usefulness of GDH & Toxin Test for the Diagnosis ofClostridioides difficilein a Tertiary Hospital in Seoul. Biomedical Science Letters 2020; 26(3): 210 doi: 10.15616/BSL.2020.26.3.210
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20 |
Kristina Oresic Bender, Megan Garland, Jessica A. Ferreyra, Andrew J. Hryckowian, Matthew A. Child, Aaron W. Puri, David E. Solow-Cordero, Steven K. Higginbottom, Ehud Segal, Niaz Banaei, Aimee Shen, Justin L. Sonnenburg, Matthew Bogyo.
A small-molecule antivirulence agent for treating
Clostridium difficile
infection
. Science Translational Medicine 2015; 7(306) doi: 10.1126/scitranslmed.aac9103
|
21 |
Jane A. Petro. Fads, Fashion, and Facts. The American Journal of Cosmetic Surgery 2014; 31(3): 159 doi: 10.5992/AJCS-D-14-00030.1
|
22 |
A. Fisher, R. Varendran. Letter: clinical predictors of Clostridium difficile infection – advanced age and residential status are important factors for prediction and prevention. Alimentary Pharmacology & Therapeutics 2015; 41(2): 232 doi: 10.1111/apt.13014
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23 |
Elena-Stella Theophilou, Prerna Vohra, Maurice P. Gallagher, Ian R. Poxton, Garry W. Blakely, Maia Kivisaar.
Generation of Markerless Deletions in the Nosocomial Pathogen
Clostridium difficile
by Induction of DNA Double-Strand Breaks
. Applied and Environmental Microbiology 2019; 85(3) doi: 10.1128/AEM.02055-18
|
24 |
Mitsutoshi Senoh, Masaaki Iwaki, Akihiko Yamamoto, Haru Kato, Tadashi Fukuda, Keigo Shibayama. Inhibition of adhesion of Clostridium difficile to human intestinal cells after treatment with serum and intestinal fluid isolated from mice immunized with nontoxigenic C. difficile membrane fraction. Microbial Pathogenesis 2015; 81: 1 doi: 10.1016/j.micpath.2015.03.001
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25 |
Massimo Sartelli, Stefano Di Bella, Lynne V. McFarland, Sahil Khanna, Luis Furuya-Kanamori, Nadir Abuzeid, Fikri M. Abu-Zidan, Luca Ansaloni, Goran Augustin, Miklosh Bala, Offir Ben-Ishay, Walter L. Biffl, Stephen M. Brecher, Adrián Camacho-Ortiz, Miguel A. Caínzos, Shirley Chan, Jill R. Cherry-Bukowiec, Jesse Clanton, Federico Coccolini, Maria E. Cocuz, Raul Coimbra, Francesco Cortese, Yunfeng Cui, Jacek Czepiel, Zaza Demetrashvili, Isidoro Di Carlo, Salomone Di Saverio, Irina M. Dumitru, Christian Eckmann, Edward H. Eiland, Joseph D. Forrester, Gustavo P. Fraga, Jean L. Frossard, Donald E. Fry, Rita Galeiras, Wagih Ghnnam, Carlos A. Gomes, Ewen A. Griffiths, Xavier Guirao, Mohamed H. Ahmed, Torsten Herzog, Jae Il Kim, Tariq Iqbal, Arda Isik, Kamal M. F. Itani, Francesco M. Labricciosa, Yeong Y. Lee, Paul Juang, Aleksandar Karamarkovic, Peter K. Kim, Yoram Kluger, Ari Leppaniemi, Varut Lohsiriwat, Gustavo M. Machain, Sanjay Marwah, John E. Mazuski, Gokhan Metan, Ernest E. Moore, Frederick A. Moore, Carlos A. Ordoñez, Leonardo Pagani, Nicola Petrosillo, Francisco Portela, Kemal Rasa, Miran Rems, Boris E. Sakakushev, Helmut Segovia-Lohse, Gabriele Sganga, Vishal G. Shelat, Patrizia Spigaglia, Pierre Tattevin, Cristian Tranà, Libor Urbánek, Jan Ulrych, Pierluigi Viale, Gian L. Baiocchi, Fausto Catena. 2019 update of the WSES guidelines for management of Clostridioides (Clostridium) difficile infection in surgical patients. World Journal of Emergency Surgery 2019; 14(1) doi: 10.1186/s13017-019-0228-3
|
26 |
Nathaniel A Cohen, Tamar Miller, Wasef Na’aminh, Keren Hod, Amos Adler, Daniel Cohen, Hanan Guzner-Gur, Erwin Santo, Zamir Halpern, Yehuda Carmeli, Nitsan Maharshak. Clostridium difficile fecal toxin level is associated with disease severity and prognosis. United European Gastroenterology Journal 2018; 6(5): 773 doi: 10.1177/2050640617750809
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27 |
Ana López-de-Andrés, María D. Esteban-Vasallo, Javier de Miguel-Díez, Valentín Hernández-Barrera, José M. de Miguel-Yanes, Manuel Méndez-Bailón, Rodrigo Jiménez-García. Incidence and in-hospital outcomes ofClostridium difficileinfection among type 2 diabetes patients in Spain. International Journal of Clinical Practice 2018; 72(10): e13251 doi: 10.1111/ijcp.13251
|
28 |
Fawziah Marra, Karen Ng. Controversies Around Epidemiology, Diagnosis and Treatment of Clostridium difficile Infection. Drugs 2015; 75(10): 1095 doi: 10.1007/s40265-015-0422-x
|
29 |
Pilar Marcos, Paul Whyte, Catherine Burgess, Daniel Ekhlas, Declan Bolton. Detection and Genomic Characterisation of Clostridioides difficile from Spinach Fields. Pathogens 2022; 11(11): 1310 doi: 10.3390/pathogens11111310
|
30 |
Patrizia Spigaglia, Paola Mastrantonio, Fabrizio Barbanti. Updates on Clostridioides difficile in Europe. Advances in Experimental Medicine and Biology 2024; 1435: 169 doi: 10.1007/978-3-031-42108-2_9
|
31 |
Felix Broecker, Jochen Klumpp, Karin Moelling. Long‐term microbiota and virome in a Zürich patient after fecal transplantation against Clostridium difficile infection. Annals of the New York Academy of Sciences 2016; 1372(1): 29 doi: 10.1111/nyas.13100
|
32 |
Kamila Mielniczuk, Mieczysława Czerwionka-Szaflarska. Rzekomobłoniaste zapalenie jelit u dzieci. Pediatria Polska 2015; 90(1): 48 doi: 10.1016/j.pepo.2014.12.001
|
33 |
Kristie Chow, Yingfu Li. Functional Nucleic Acids as Bacterial Biosensors: A Focus on Clostridioides difficile Infection. Analysis & Sensing 2024; doi: 10.1002/anse.202400056
|
34 |
M.J. Pucci, C. Callebaut, A. Cathcart, K. Bush. Comprehensive Medicinal Chemistry III. 2017; : 511 doi: 10.1016/B978-0-12-409547-2.12405-9
|
35 |
Ines B. Moura, Charmaine Normington, Duncan Ewin, Emma Clark, Mark H. Wilcox, Anthony M. Buckley, Caroline H. Chilton. Method comparison for the direct enumeration of bacterial species using a chemostat model of the human colon. BMC Microbiology 2020; 20(1) doi: 10.1186/s12866-019-1669-2
|
36 |
Y. N. Yarushina, G. B. Kolotova, V. A. Rudnov, V. A. Bagin. Prevalence and predictors for the development of Clostridium difficile infection in patients of the therapeutic hospital. Medical Almanac 2019; (1): 37 doi: 10.21145/2499-9954-2019-1-37-40
|
37 |
Patrizia Spigaglia. Recent advances in the understanding of antibiotic resistance in Clostridium difficile infection. Therapeutic Advances in Infectious Disease 2016; 3(1): 23 doi: 10.1177/2049936115622891
|
38 |
Mitsutoshi Senoh, Masaaki Iwaki, Akihiko Yamamoto, Haru Kato, Tadashi Fukuda, Keigo Shibayama. Development of vaccine for Clostridium difficile infection using membrane fraction of nontoxigenic Clostridium difficile. Microbial Pathogenesis 2018; 123: 42 doi: 10.1016/j.micpath.2018.06.039
|
39 |
N. Jan, R. A. Hays, D. N. Oakland, P. Kumar, G. Ramakrishnan, B. W. Behm, W. A. Petri, C. Marie, Craig D. Ellermeier. Fecal Microbiota Transplantation Increases Colonic IL-25 and Dampens Tissue Inflammation in Patients with Recurrent Clostridioides difficile. mSphere 2021; 6(5) doi: 10.1128/mSphere.00669-21
|
40 |
Brandon M. Carius, Stephen Y. Liang, Alex Koyfman, Brit Long. Clostridioides difficile infection evaluation and management in the emergency department. The American Journal of Emergency Medicine 2020; 38(10): 2203 doi: 10.1016/j.ajem.2020.06.083
|
41 |
J. González-Altamirano, H.J. Maldonado-Garza, E. Garza-González, F.J. Bosques-Padilla. Fecal microbiota transplantation. Medicina Universitaria 2015; 17(68): 192 doi: 10.1016/j.rmu.2015.06.003
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42 |
William A. Davis Birch, Ines B. Moura, Duncan J. Ewin, Mark H. Wilcox, Anthony M. Buckley, Peter R. Culmer, Nikil Kapur. MiGut: A scalable in vitro platform for simulating the human gut microbiome—Development, validation and simulation of antibiotic‐induced dysbiosis. Microbial Biotechnology 2023; 16(6): 1312 doi: 10.1111/1751-7915.14259
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43 |
Jingyu Yang, Xiaoxia Zhang, Xiaohua Liu, Lin Cai, Ping Feng, Xiaohui Wang, Zhiyong Zong. Antimicrobial susceptibility of Clostridium difficile isolates from ICU colonized patients revealed alert to ST-37 (RT 017) isolates. Diagnostic Microbiology and Infectious Disease 2017; 89(2): 161 doi: 10.1016/j.diagmicrobio.2017.06.021
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44 |
Bernhard Lembcke, Hermann Schulze, Axel Dignaß, Hubert Scheuerlein, Utz Settmacher, Andreas Tromm, Joachim F. Erckenbrecht, Sven Jonas, Lutz Mirow, Philipp Hildebrand, Wolfgang F. Caspary, Jürgen Stein. Viszeralmedizin. 2015; : 221 doi: 10.1007/978-3-642-14301-4_21
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45 |
Ines B. Moura, Anthony M. Buckley, Duncan Ewin, Sharie Shearman, Emma Clark, Mark H. Wilcox, Caroline H. Chilton. Omadacycline Gut Microbiome Exposure Does Not Induce Clostridium difficile Proliferation or Toxin Production in a Model That Simulates the Proximal, Medial, and Distal Human Colon. Antimicrobial Agents and Chemotherapy 2019; 63(2) doi: 10.1128/AAC.01581-18
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46 |
Thomaz Oliveira, Ilana Costa, Victor Marinho, Valécia Carvalho, Karla Uchôa, Carla Ayres, Silmar Teixeira, Daniel F P Vasconcelos. Human foreskin fibroblasts: from waste bag to important biomedical applications. Journal of Clinical Urology 2018; 11(6): 385 doi: 10.1177/2051415818761526
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47 |
Mohammed Qutub, Prasanth Govindan, Anupama Vattappillil. Effectiveness of a Two-Step Testing Algorithm for Reliable and Cost-Effective Detection of Clostridium difficile Infection in a Tertiary Care Hospital in Saudi Arabia. Medical Sciences 2019; 7(1): 6 doi: 10.3390/medsci7010006
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48 |
Mahmoud AbdEl-Mongy, Said El-Feky, Heba Masoud, Amira El-Hendi. Rapid Assays for Detection of Clostridium difficile and Its Toxins in Hospitalized Patients. Journal of Pure and Applied Microbiology 2018; 12(3): 1247 doi: 10.22207/JPAM.12.3.26
|
49 |
Brian Kullin, Valerie R. Abratt, Sharon J. Reid, Thomas V. Riley. Clostridioides difficile infection in Africa: A narrative review. Anaerobe 2022; 74: 102549 doi: 10.1016/j.anaerobe.2022.102549
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50 |
Hoda Jaffal, Robert Achram, George Araj, Rami Mahfouz. Diagnosis of Clostridiodes difficile infection: Assessing the performance of Quik Chek complete kit assay versus the GeneXpert PCR assay at a major tertiary care center in Lebanon. Meta Gene 2020; 25: 100715 doi: 10.1016/j.mgene.2020.100715
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51 |
Hamideh Raeisi, Masoumeh Azimirad, Hamid Asadzadeh Aghdaei, Abbas Yadegar, Mohammad Reza Zali. Rapid-format recombinant antibody-based methods for the diagnosis of Clostridioides difficile infection: Recent advances and perspectives. Frontiers in Microbiology 2022; 13 doi: 10.3389/fmicb.2022.1043214
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52 |
Thanush D, M.P. Venkatesh. Fecal microbiota transplantation: History, procedure and regulatory considerations. La Presse Médicale 2023; 52(4): 104204 doi: 10.1016/j.lpm.2023.104204
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