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1.
Gynecol Oncol Rep ; 32: 100576, 2020 May.
Artigo em Inglês | MEDLINE | ID: mdl-32405521

RESUMO

•Small cell carcinoma of the ovary hypercalcemic type (SCCOHT) is a rare neoplasm that mostly affects young women.•The chances of future fertility in women are limited due to the aggressive nature of SCCOHT and need for adjuvant therapy.•We report the case of a 26y woman with stage IA SCCOHT who had a successful pregnancy following surgery and chemotherapy.

2.
Nat Commun ; 9(1): 107, 2018 01 09.
Artigo em Inglês | MEDLINE | ID: mdl-29317630

RESUMO

The original version of this Article was missing the ORCID ID of Professor Nicola Pugno.Also in the original version of this Article, the third to last sentence of the fourth paragraph of the Results incorrectly read 'However, the stepwise addition of CNTs increases the self-entanglement and thereby the compressive strength value as well as the Young's modulus (up to 2.5 MPa (normalized by density 6.4) and 24.5 MPa (normalized by density 62 MPa cm3 g-1).' The correct version adds the units 'MPa cm3 g-1' to '6.4'.Finally, in the original version of this Article, the y-axis label of Figure 3f incorrectly read 'Comp. strengthy'. The new version corrects that to 'Comp. Strength'.These errors have now been corrected in both the PDF and the HTML versions of the Article.

3.
Nat Commun ; 8(1): 1215, 2017 10 31.
Artigo em Inglês | MEDLINE | ID: mdl-29084950

RESUMO

Three-dimensional (3D) assemblies based on carbon nanomaterials still lag behind their individual one-dimensional building blocks in terms of mechanical and electrical properties. Here we demonstrate a simple strategy for the fabrication of an open porous 3D self-organized double-hierarchical carbon nanotube tube structure with properties advantageous to those existing so far. Even though no additional crosslinking exists between the individual nanotubes, a high reinforcement effect in compression and tensile characteristics is achieved by the formation of self-entangled carbon nanotube (CNT) networks in all three dimensions, employing the CNTs in their high tensile properties. Additionally, the tubular structure causes a self-enhancing effect in conductivity when employed in a 3D stretchable conductor, together with a high conductivity at low CNT concentrations. This strategy allows for an easy combination of different kinds of low-dimensional nanomaterials in a tube-shaped 3D structure, enabling the fabrication of multifunctional inorganic-carbon-polymer hybrid 3D materials.

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