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@INBOOK{Zimmermann:837815,
author = {Zimmermann, Olav},
title = {{B}ackbone {D}ihedral {A}ngle {P}rediction},
volume = {1484},
address = {New York, NY},
publisher = {Springer New York},
reportid = {FZJ-2017-06604},
isbn = {978-1-4939-6404-8 (print)},
series = {Methods in Molecular Biology},
pages = {65 - 82},
year = {2017},
comment = {Prediction of Protein Secondary Structure / Zhou, Yaoqi
(Editor) ; New York, NY : Springer New York, 2017, Chapter 7
; ISSN: 1064-3745=1940-6029 ; ISBN:
978-1-4939-6404-8=978-1-4939-6406-2 ;
doi:10.1007/978-1-4939-6406-2},
booktitle = {Prediction of Protein Secondary
Structure / Zhou, Yaoqi (Editor) ; New
York, NY : Springer New York, 2017,
Chapter 7 ; ISSN: 1064-3745=1940-6029 ;
ISBN:
978-1-4939-6404-8=978-1-4939-6406-2 ;
doi:10.1007/978-1-4939-6406-2},
abstract = {More than two decades of research have enabled dihedral
angle predictions at an accuracy that makes them an
interesting alternative or supplement to secondary structure
prediction that provides detailed local structure
information for every residue of a protein. The evolution of
dihedral angle prediction methods is closely linked to
advancements in machine learning and other relevant
technologies. Consequently recent improvements in
large-scale training of deep neural networks have led to the
best method currently available, which achieves a mean
absolute error of 19° for phi, and 30° for psi. This
performance opens interesting perspectives for the
application of dihedral angle prediction in the comparison,
prediction, and design of protein structures.},
cin = {JSC},
ddc = {570},
cid = {I:(DE-Juel1)JSC-20090406},
pnm = {511 - Computational Science and Mathematical Methods
(POF3-511)},
pid = {G:(DE-HGF)POF3-511},
typ = {PUB:(DE-HGF)7},
UT = {WOS:000400734600008},
doi = {10.1007/978-1-4939-6406-2_7},
url = {https://juser.fz-juelich.de/record/837815},
}