日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Extreme diversity of phage amplification rates and phage-antibiotic interactions revealed by PHORCE.

PHORCE 揭示了噬菌体扩增速率和噬菌体-抗生素相互作用的极端多样性

Mulla Yuval, Müller Janina, Trimcev Denny, Bollenbach Tobias

Trace elements increase replicability of microbial growth.

微量元素可提高微生物生长的可复制性

Shimoga Nadig Amit, Gross Rotem, Bollenbach Tobias, Ansmann Gerrit

Assessing the precision of morphogen gradients in neural tube development

评估神经管发育过程中形态发生素梯度的精确性

Zagorski, Marcin; Brandenberg, Nathalie; Lutolf, Matthias; Tkacik, Gasper; Bollenbach, Tobias; Briscoe, James; Kicheva, Anna

Correction to: Distribution of fitness effects of cross-species transformation reveals potential for fast adaptive evolution

更正:跨物种转化适应性效应的分布揭示了快速适应性进化的潜力

Rathmann, Isabel; Förster, Mona; Yüksel, Melih; Horst, Lucas; Petrungaro, Gabriela; Bollenbach, Tobias; Maier, Berenike

Distribution of fitness effects of cross-species transformation reveals potential for fast adaptive evolution

跨物种转化适应性效应的分布揭示了快速适应性进化的潜力

Rathmann, Isabel; Förster, Mona; Yüksel, Melih; Horst, Lucas; Petrungaro, Gabriela; Bollenbach, Tobias; Maier, Berenike

Single-cell isogrowth profiling: Uniform inhibition uncovers non-uniform drug responses

单细胞同源生长分析:均匀抑制揭示药物反应的不均匀性

Lukačišin, Martin; Espinosa-Cantú, Adriana; Bollenbach, Tobias

Uncovering Key Metabolic Determinants of the Drug Interactions Between Trimethoprim and Erythromycin in Escherichia coli

揭示大肠杆菌中甲氧苄啶和红霉素药物相互作用的关键代谢决定因素

Qi, Qin; Angermayr, S Andreas; Bollenbach, Tobias

Building clone-consistent ecosystem models

构建克隆一致的生态系统模型

Ansmann, Gerrit; Bollenbach, Tobias

MOVEMENT COMPLEXITY IN REHABILITATION OF GERIATRIC INPATIENTS

老年住院患者康复中的运动复杂性

Zagorski, Marcin; Tabata, Yoji; Brandenberg, Nathalie; Lutolf, Matthias P; Tkačik, Gašper; Bollenbach, Tobias; Briscoe, James; Kicheva, Anna; Major, K; El Achkar, CM; Lenoble-Hoskovec, C; Krief, H; Paraschiv-Ionescu, A; Aminian, K; Bula, C; Paraschiv-Ionescu, A; Major, K; Lenoble-Hoskovec, C; El Achkar, CM; Krief, H; Aminian, K; Bula, C; Aminian, K; Ionescu, A; El Achkar, CM; Rapp, K; Klenk, J; Becker, C

Embryo-lethal phenotypes in early abp1 mutants are due to disruption of the neighboring BSM gene

早期abp1突变体的胚胎致死表型是由于邻近的BSM基因遭到破坏所致。

Michalko, Jaroslav; Dravecká, Marta; Bollenbach, Tobias; Friml, Jiří