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

Lossless single-molecule counting to absolute quantify proteoforms

无损单分子计数法对蛋白质异构体进行绝对定量

Gross, Tobias; Hundertmark, Tobias; Csiszár, Villő; Sulyok, András Attila; Gross, Nina; Breiden, Maike; Kitschen, Niklas; von Groll, Uritza; Niemöller, Christoph; Sánchez-Martín, Pablo; Heine, Anne; Göpfert, Jens; Szórádi, Tamás; Lübbert, Philipp; Koltay, Peter; Porschewski, Peter; Zengerle, Roland; Jeney, Csaba

Sentinel-2-Based Forest Health Survey of ICP Forests Level I and II Plots in Hungary

基于Sentinel-2卫星数据的匈牙利ICP森林一级和二级样地森林健康调查

Molnár, Tamás; Bolla, Bence; Szabó, Orsolya; Koltay, András

Tissue expanders - an innovative approach in the management of hepatic venous outflow obstruction after liver transplantation: A case report

组织扩张器——肝移植术后肝静脉流出道梗阻治疗的一种创新方法:病例报告

Petrovic, Igor; Brekalo, Klara; Romic, Ivan; Silovski, Hrvoje; Sesa, Vibor; Galunic Cicak, Ruzica; Bulic, Kresimir; Koltay, Oliver M; Strajher, Iva Martina; Mrzljak, Anna

Towards Automation in 3D Cell Culture: Selective and Gentle High-Throughput Handling of Spheroids and Organoids via Novel Pick-Flow-Drop Principle

迈向三维细胞培养自动化:基于新型拾取-流动-滴落原理的球状体和类器官的选择性、温和高通量处理

Zieger, Viktoria; Frejek, Daniel; Zimmermann, Stefan; Miotto, Guilherme A A; Koltay, Peter; Zengerle, Roland; Kartmann, Sabrina

Automated Nanodroplet Dispensing for Large-Scale Spheroid Generation via Hanging Drop and Parallelized Lossless Spheroid Harvesting

通过悬滴法和并行无损球体收集实现大规模球体生成的自动化纳米液滴分配

Zieger, Viktoria; Woehr, Ellen; Zimmermann, Stefan; Frejek, Daniel; Koltay, Peter; Zengerle, Roland; Kartmann, Sabrina

Particle Detection in Free-Falling Nanoliter Droplets

自由落体纳升液滴中的粒子检测

Sturm, Fabian; Zieger, Viktoria; Koltay, Peter; Frejek, Daniel; Kartmann, Sabrina

Delayed postpancreatectomy hemorrhage as the role of endovascular approach: Four case reports

胰腺切除术后延迟性出血:血管内治疗的作用——四例病例报告

Petrovic, Igor; Romic, Ivan; Alduk, Ana M; Ticinovic, Nino; Koltay, Oliver M; Brekalo, Klara; Bogut, Ante

A Drop-on-Demand Bioprinting Approach to Spatially Arrange Multiple Cell Types and Monitor Their Cell-Cell Interactions towards Vascularization Based on Endothelial Cells and Mesenchymal Stem Cells

基于内皮细胞和间充质干细胞的按需滴注生物打印方法,用于空间排列多种细胞类型并监测其细胞间相互作用以实现血管化

Joshua Weygant, Fritz Koch, Katrin Adam, Kevin Tröndle, Roland Zengerle, Günter Finkenzeller, Sabrina Kartmann, Peter Koltay, Stefan Zimmermann

Deep Learning-Assisted Nephrotoxicity Testing with Bioprinted Renal Spheroids

利用生物打印肾球体进行深度学习辅助肾毒性检测

Kevin Tröndle, Guilherme Miotto, Ludovica Rizzo, Roman Pichler, Fritz Koch, Peter Koltay, Roland Zengerle, Soeren S Lienkamp, Sabrina Kartmann, Stefan Zimmermann

Evaluation of a Novel Thiol-Norbornene-Functionalized Gelatin Hydrogel for Bioprinting of Mesenchymal Stem Cells

新型硫醇-降冰片烯功能化明胶水凝胶用于间充质干细胞生物打印的评估

Vadym Burchak, Fritz Koch, Leonard Siebler, Sonja Haase, Verena K Horner, Xenia Kempter, G Björn Stark, Ute Schepers, Alisa Grimm, Stefan Zimmermann, Peter Koltay, Sandra Strassburg, Günter Finkenzeller, Filip Simunovic, Florian Lampert