Tai, C.-S.; Chung, H.-Y.; Lin, T.-H.; Chang, C.-K.; Perng, C.-L.; Hsieh, P.-S.; Shang, H.-S.; Jian, M.-J.
Rapid Nanopore Sequencing of Positive Blood Cultures Using Automated Benzyl-Alcohol Extraction Improves Time-Critical Sepsis Management. Antibiotics 2025, 14, 1001.
https://doi.org/10.3390/antibiotics14101001
AMA Style
Tai C-S, Chung H-Y, Lin T-H, Chang C-K, Perng C-L, Hsieh P-S, Shang H-S, Jian M-J.
Rapid Nanopore Sequencing of Positive Blood Cultures Using Automated Benzyl-Alcohol Extraction Improves Time-Critical Sepsis Management. Antibiotics. 2025; 14(10):1001.
https://doi.org/10.3390/antibiotics14101001
Chicago/Turabian Style
Tai, Chi-Sheng, Hsing-Yi Chung, Tai-Han Lin, Chih-Kai Chang, Cherng-Lih Perng, Po-Shiuan Hsieh, Hung-Sheng Shang, and Ming-Jr Jian.
2025. "Rapid Nanopore Sequencing of Positive Blood Cultures Using Automated Benzyl-Alcohol Extraction Improves Time-Critical Sepsis Management" Antibiotics 14, no. 10: 1001.
https://doi.org/10.3390/antibiotics14101001
APA Style
Tai, C.-S., Chung, H.-Y., Lin, T.-H., Chang, C.-K., Perng, C.-L., Hsieh, P.-S., Shang, H.-S., & Jian, M.-J.
(2025). Rapid Nanopore Sequencing of Positive Blood Cultures Using Automated Benzyl-Alcohol Extraction Improves Time-Critical Sepsis Management. Antibiotics, 14(10), 1001.
https://doi.org/10.3390/antibiotics14101001