Till Stephan
Overview
Explore the profile of Till Stephan including associated specialties, affiliations and a list of published articles.
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Articles
19
Citations
395
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Recent Articles
1.
Elancheliyan P, Maruszczak K, Serwa R, Stephan T, Gulgec A, Borrero-Landazabal M, et al.
Cell Rep
. 2024 Dec;
43(12):115038.
PMID: 39630581
Mitochondrial proteins are transported and sorted to the matrix or inner mitochondrial membrane by the presequence translocase TIM23. In yeast, this essential and highly conserved machinery is composed of the...
2.
Scholz J, Stephan T, Perez A, Csiszar A, Hersch N, Fischer L, et al.
Sci Adv
. 2024 Oct;
10(44):eadp5929.
PMID: 39475610
Cortical formins, pivotal for the assembly of linear actin filaments beneath the membrane, exert only minor effects on unconfined cell migration of weakly and moderately adherent cells. However, their impact...
3.
Stephan T, Ilgen P, Jakobs S
Light Sci Appl
. 2024 Sep;
13(1):244.
PMID: 39251586
The study of mitochondria is a formidable challenge for super-resolution microscopy due to their dynamic nature and complex membrane architecture. In this issue, Ren et al. introduce HBmito Crimson, a...
4.
Chen J, Stephan T, Gaedke F, Liu T, Li Y, Schauss A, et al.
Proc Natl Acad Sci U S A
. 2024 Apr;
121(19):e2317703121.
PMID: 38687792
Fluorescence labeling of chemically fixed specimens, especially immunolabeling, plays a vital role in super-resolution imaging as it offers a convenient way to visualize cellular structures like mitochondria or the distribution...
5.
Stephan T, Stoldt S, Barbot M, Carney T, Lange F, Bates M, et al.
Life Sci Alliance
. 2024 Jan;
7(4).
PMID: 38253420
Cristae are invaginations of the mitochondrial inner membrane that are crucial for cellular energy metabolism. The formation of cristae requires the presence of a protein complex known as MICOS, which...
6.
Ebrahimi V, Stephan T, Kim J, Carravilla P, Eggeling C, Jakobs S, et al.
Commun Biol
. 2023 Aug;
6(1):831.
PMID: 37563357
No abstract available.
7.
Ebrahimi V, Stephan T, Kim J, Carravilla P, Eggeling C, Jakobs S, et al.
Commun Biol
. 2023 Jun;
6(1):674.
PMID: 37369761
STED microscopy is widely used to image subcellular structures with super-resolution. Here, we report that restoring STED images with deep learning can mitigate photobleaching and photodamage by reducing the pixel...
8.
Ebrahimi V, Stephan T, Kim J, Carravilla P, Eggeling C, Jakobs S, et al.
bioRxiv
. 2023 Feb;
PMID: 36747618
STED microscopy is widely used to image subcellular structures with super-resolution. Here, we report that denoising STED images with deep learning can mitigate photobleaching and photodamage by reducing the pixel...
9.
Liu T, Stephan T, Chen P, Keller-Findeisen J, Chen J, Riedel D, et al.
Proc Natl Acad Sci U S A
. 2022 Dec;
119(52):e2215799119.
PMID: 36534799
Capturing mitochondria's intricate and dynamic structure poses a daunting challenge for optical nanoscopy. Different labeling strategies have been demonstrated for live-cell stimulated emission depletion (STED) microscopy of mitochondria, but orthogonal...
10.
Tameling C, Stoldt S, Stephan T, Naas J, Jakobs S, Munk A
Nat Comput Sci
. 2022 Jul;
1:199-211.
PMID: 35874932
Super-resolution fluorescence microscopy is a widely used technique in cell biology. Stimulated emission depletion (STED) microscopy enables the recording of multiple-color images with subdiffraction resolution. The enhanced resolution leads to...