Journal Article (69)
51.
Journal Article
129 (1), pp. 7 - 8 (2016)
Cell scientist to watch – Melina Schuh. Journal of Cell Science 52.
Journal Article
4, e11389 (2015)
Sister kinetochore splitting and precocious disintegration of bivalents could explain the maternal age effect. eLife 53.
Journal Article
524 (7564), pp. 239 - 242 (2015)
Live imaging RNAi screen reveals genes essential for meiosis in mammalian oocytes. Nature 54.
Journal Article
6, 7217 (2015)
A three-step MTOC fragmentation mechanism facilitates bipolar spindle assembly in mouse oocytes. Nature Communications 55.
Journal Article
348 (6239), pp. 1143 - 1147 (2015)
Error-prone chromosome-mediated spindle assembly favors chromosome segregation defects in human oocytes. Science 56.
Journal Article
24 (13), pp. R605 - R607 (2014)
Nuclear envelope breakdown: Actin’ quick to tear down the wall. Current Biology 57.
Journal Article
204 (7), pp. 1080 - 1081 (2014)
Melina Schuh: First comes the egg. Journal of Cell Biology 58.
Journal Article
12 (2), e1001795 (2014)
Spire and Formin 2 synergize and antagonize in regulating actin assembly in meiosis by a ping-pong mechanism. PLoS Biology 59.
Journal Article
14 (9), pp. 549 - 562 (2013)
Restarting life: Fertilization and the transition from meiosis to mitosis. Nature Reviews Molecular Cell Biology 60.
Journal Article
15 (8), pp. 937 - 947 (2013)
Vesicles modulate an actin network for asymmetric spindle positioning. Nature Cell Biology 61.
Journal Article
198 (3), pp. 357 - 370 (2012)
The transition from meiotic to mitotic spindle assembly is gradual during early mammalian development. Journal of Cell Biology 62.
Journal Article
13 (12), p. 410 (2012)
Goodbye homunculus. Nature Reviews Molecular Cell Biology 63.
Journal Article
21 (11), pp. 955 - 960 (2011)
Spire-type actin nucleators cooperate with formin-2 to drive asymmetric oocyte division. Current Biology 64.
Journal Article
13 (12), pp. 1431 - 1436 (2011)
An actin-dependent mechanism for long-range vesicle transport. Nature Cell Biology 65.
Journal Article
18 (24), pp. 1986 - 1992 (2008)
A new model for asymmetric spindle positioning in mouse oocytes. Current Biology 66.
Journal Article
130 (3), pp. 484 - 498 (2007)
Self-organization of MTOCs replaces centrosome function during acentrosomal spindle assembly in live mouse oocytes. Cell 67.
Journal Article
17 (3), pp. 237 - 243 (2007)
Incorporation of Drosophila CID/CENP-A and CENP-C into centromeres during early embryonic anaphase. Current Biology 68.
Journal Article
126 (1), pp. 135 - 146 (2006)
Resolution of chiasmata in oocytes requires separase-mediated proteolysis. Cell 69.
Journal Article
16 (9), pp. R321 - R323 (2006)
Nuclear actin: A lack of export allows formation of filaments. Current Biology Book (2)
70.
Book
Mitosis and Meiosis. Part B. Elsevier, Amsterdam (2018), xvii, 371 pp.
71.
Book
Mitosis and Meiosis. Part A. Elsevier, Amsterdam (2018), xix, 474 pp.
Book Chapter (4)
72.
Book Chapter
Schuh, M.). Elsevier, Amsterdam (2018)
Preface. In: Mitosis and meiosis Part A, p. xix (Eds. Maiato, H.; 73.
Book Chapter
Schuh, M.). Elsevier, Amsterdam (2018)
Preface. In: Mitosis and meiosis Part B, p. XVII (Eds. Maiato, H.; 74.
Book Chapter
Schuh, M.). Elsevier, Cambridge, Mass (2018)
Superresolution imaging of the synaptonemal complex. In: Mitosis and meiosis. Part B, pp. 335 - 346 (Eds. Maiato, H.; 75.
Book Chapter
A microscopy-based approach for studying meiosis in live and fixed human oocytes. In: Mitosis and Meiosis Part B, pp. 315 - 333 (Eds. Maiato, H.; Schuh, M.). Elsevier, Amsterdam (2018)