The scientist’s investigation covers issues in Microbiology, Antibacterial agent, Helicobacter pylori, Internal medicine and Drug resistance. His biological study spans a wide range of topics, including Plasmid, Enterobacteriaceae, Klebsiella pneumoniae, Streptococcus pyogenes and Virulence. The study incorporates disciplines such as Penicillin, Minimum inhibitory concentration, Antimicrobial and Cefotaxime in addition to Antibacterial agent.
His Helicobacter pylori study combines topics in areas such as Cell culture, Virology, Immunology and Bacteria. His Internal medicine research is multidisciplinary, incorporating elements of Gastroenterology, Surgery and Bacteremia. His Drug resistance study integrates concerns from other disciplines, such as Antibiotic resistance, Etest and Levofloxacin.
His primary areas of study are Microbiology, Helicobacter pylori, Internal medicine, Streptococcus pyogenes and Immunology. His work focuses on many connections between Microbiology and other disciplines, such as Virulence, that overlap with his field of interest in Pathogenesis. His research integrates issues of Gastric mucosa and Antigen in his study of Helicobacter pylori.
His Internal medicine research integrates issues from Gastroenterology, Surgery and Bacteremia. His Streptococcus pyogenes study combines topics from a wide range of disciplines, such as Exotoxin, Mutant, Molecular biology, Streptococcus and Streptococcaceae. He interconnects Stomach and Genotype in the investigation of issues within Immunology.
Jiunn Jong Wu focuses on Microbiology, Molecular biology, Cell biology, Antibiotic resistance and Intracellular. The various areas that Jiunn Jong Wu examines in his Microbiology study include Escherichia coli, Polymerase chain reaction and Bacteria. His study ties his expertise on Helicobacter pylori together with the subject of Bacteria.
Jiunn Jong Wu has researched Molecular biology in several fields, including Plasma protein binding, Computational biology and Apoptotic cell clearance. His Cell biology research is multidisciplinary, relying on both Autophagy, Internalization and Mutant. His research investigates the link between Intracellular and topics such as Bafilomycin that cross with problems in Immune system, Streptococcus, Group A, Cell culture and Phagosome.
His scientific interests lie mostly in Microbiology, Imipenem, Bacteria, Meropenem and Quinolone. The Microbiology study combines topics in areas such as Beta-lactamase and Polymerase chain reaction. His Bacteria research incorporates themes from Bacterial adhesin, Virulence, Helicobacter pylori and Antibiotics.
Jiunn Jong Wu has included themes like Virulence factor, Immunology, Pathogenesis, Transcriptome and Pathogenicity island in his Helicobacter pylori study. His Meropenem research incorporates elements of Plasmid, Amikacin, Cefepime, Fosfomycin and Escherichia coli. Within one scientific family, Jiunn Jong Wu focuses on topics pertaining to Nucleic acid under Quinolone, and may sometimes address concerns connected to Molecular biology.
Cheng Yen Kao;Bor Shyang Sheu;Jiunn Jong Wu;Jiunn Jong Wu
Jing-Jou Yan;Po-Ren Hsueh;Wen-Chien Ko;Kwen-Tay Luh
Bor-Shyang Sheu;Jiunn-Jong Wu;C. Y. Lo;H. W. Wu
Jiunn Jong Wu;Wen Chien Ko;Shu Huei Tsai;Jing Jou Yan
Wen-Chien Ko;Hsin-Chun Lee;Yin-Ching Chuang;Ching-Chuan Liu
B. S. Sheu;S. M. Sheu;H. B. Yang;A. H. Huang
Nina Tsao;Tien Yau Luh;Chen Kung Chou;Tsuey Yu Chang
Chih Feng Kuo;Jiunn Jong Wu;Kuei Yuan Lin;Pei Jane Tsai
Bor Shyang Sheu;Hsiu Chi Cheng;Ai Wen Kao;Shan Tair Wang
Jing Jou Yan;Shiou Mei Wu;Shu Huei Tsai;Jiunn Jong Wu
Jing Jou Yan;Jiunn Jong Wu;Wen Chien Ko;Shu Huei Tsai
Po Ren Hsueh;Tzuen Ren Hsiue;Jiunn Jong Wu;Lee Jene Teng
Jing-Jou Yan;Wen-Chien Ko;Shu-Huei Tsai;Hsiu-Mei Wu
Jing Jou Yan;Jiunn Jong Wu;Shu Huei Tsai;Chin Luan Chuang
Jing-Jou Yan;Wen-Chien Ko;Shu-Huei Tsai;Hsiu-Mei Wu
Po Ren Hsueh;Yeu Jun Lau;Yin Ching Chuang;Jen Hsien Wan
Chi-Jung Wu;Jiunn-Jong Wu;Jing-Jou Yan;Hsin-Chun Lee
Jing-Jou Yan;Wen-Chien Ko;Jiunn-Jong Wu
Jing Jou Yan;Wen Chien Ko;Chin Luan Chuang;Jiunn Jong Wu
Kwen-Tay Luh;Po-Ren Hsueh;Lee-Jene Teng;Hui-Ju Pan
If you think any of the details on this page are incorrect, let us know.
Studying Microbiology in the USA opens doors to a variety of related online degrees and career paths that complement this field. For those interested in healthcare administration, pursuing a fast track medical billing and coding certificate online can provide quick access to a valuable skill set with growing demand.
If you want to stay closer to clinical and diagnostic roles, exploring other online medical degrees can broaden your expertise without interrupting your current commitments. These programs allow microbiology graduates to transition into related medical fields efficiently.
Public health is another excellent pathway, where easy entry points like easy mph online programs to get into offer a chance to specialize in community health and epidemiology. This can enhance your impact on population-level health issues.
For those interested in child development and healthcare, careers such as becoming a child life specialist salary offer rewarding opportunities working directly with young patients, often requiring an understanding of biological sciences like microbiology.
Hong Kong University of Science and Technology
University of California, San Diego
Huazhong University of Science and Technology
University of North Texas Health Science Center
Gembloux Agro-Bio Tech
Texas A&M University
Aalborg University
University of Parma
Carnegie Mellon University
Queen Mary University of London
Kyoto University
Centre national de la recherche scientifique, CNRS
Stanford University
Medical University of Vienna
University of Tennessee at Knoxville
Centre national de la recherche scientifique, CNRS