scholarly journals Low-Dose Imaging Techniques for Transmission Electron Microscopy

Author(s):  
David B. ◽  
James E.
2014 ◽  
Vol 20 (S3) ◽  
pp. 2140-2141
Author(s):  
Anchi Cheng ◽  
James Pulokas ◽  
Sargis Dallakyan ◽  
Amber Herold ◽  
Clinton S. Potter ◽  
...  

2020 ◽  
Vol 117 (12) ◽  
pp. 6866-6874 ◽  
Author(s):  
Urszula Cendrowska ◽  
Paulo Jacob Silva ◽  
Nadine Ait-Bouziad ◽  
Marie Müller ◽  
Zekiye Pelin Guven ◽  
...  

Increasing evidence suggests that amyloid polymorphism gives rise to different strains of amyloids with distinct toxicities and pathology-spreading properties. Validating this hypothesis is challenging due to a lack of tools and methods that allow for the direct characterization of amyloid polymorphism in hydrated and complex biological samples. Here, we report on the development of 11-mercapto-1-undecanesulfonate-coated gold nanoparticles (NPs) that efficiently label the edges of synthetic, recombinant, and native amyloid fibrils derived from different amyloidogenic proteins. We demonstrate that these NPs represent powerful tools for assessing amyloid morphological polymorphism, using cryogenic transmission electron microscopy (cryo-EM). The NPs allowed for the visualization of morphological features that are not directly observed using standard imaging techniques, including transmission electron microscopy with use of the negative stain or cryo-EM imaging. The use of these NPs to label native paired helical filaments (PHFs) from the postmortem brain of a patient with Alzheimer’s disease, as well as amyloid fibrils extracted from the heart tissue of a patient suffering from systemic amyloid light-chain amyloidosis, revealed a high degree of homogeneity across the fibrils derived from human tissue in comparison with fibrils aggregated in vitro. These findings are consistent with, and strongly support, the emerging view that the physiologic milieu is a key determinant of amyloid fibril strains. Together, these advances should not only facilitate the profiling and characterization of amyloids for structural studies by cryo-EM, but also pave the way to elucidate the structural basis of amyloid strains and toxicity, and possibly the correlation between the pathological and clinical heterogeneity of amyloid diseases.


Author(s):  
Yu Zhu ◽  
Jemima Gonsalves

Abstract For 22nm technology node and beyond, fully depleted devices such as FinFET and ETSOI are leading candidates. Certain critical dimensions of such devices are well below 10nm, and only transmission electron microscopy (TEM) has the resolution to provide measurement with sub-nanometer accuracy. Due to the projection effect of TEM technique, comprehensive understanding of the 3D structure from 2D images is needed for process development of FinFET. This paper will address sample preparations and TEM imaging techniques for FinFET device at sub-100nm pitch.


2018 ◽  
Vol 24 (S1) ◽  
pp. 1968-1969 ◽  
Author(s):  
David F. Yancey ◽  
Christian Kisielowski ◽  
Petra Specht ◽  
Steve Rozeveld ◽  
Joo Kang ◽  
...  

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