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1.
J Magn Reson ; 347: 107357, 2023 Feb.
Article in English | MEDLINE | ID: mdl-36563418

ABSTRACT

The analysis of nuclear magnetic resonance (NMR) spectra to detect peaks and characterize their parameters, often referred to as deconvolution, is a crucial step in the quantification, elucidation, and verification of the structure of molecular systems. However, deconvolution of 1D NMR spectra is a challenge for both experts and machines. We propose a robust, expert-level quality deep learning-based deconvolution algorithm for 1D experimental NMR spectra. The algorithm is based on a neural network trained on synthetic spectra. Our customized pre-processing and labeling of the synthetic spectra enable the estimation of critical peak parameters. Furthermore, the neural network model transfers well to the experimental spectra and demonstrates low fitting errors and sparse peak lists in challenging scenarios such as crowded, high dynamic range, shoulder peak regions as well as broad peaks. We demonstrate in challenging spectra that the proposed algorithm is superior to expert results.

2.
Science ; 290(5493): 969-72, 2000 Nov 03.
Article in English | MEDLINE | ID: mdl-11062126

ABSTRACT

A 290-million-year-old reptilian skeleton from the Lower Permian (Asselian) of Germany provides evidence of abilities for cursorial bipedal locomotion, employing a parasagittal digitigrade posture. The skeleton is of a small bolosaurid, Eudibamus cursoris, gen. et sp. nov. and confirms the widespread distribution of Bolosauridae across Laurasia during this early stage of amniote evolution. E. cursoris is the oldest known representative of Parareptilia, a major clade of reptiles.


Subject(s)
Fossils , Reptiles/anatomy & histology , Animals , Biological Evolution , Forelimb/anatomy & histology , Gait , Germany , Hindlimb/anatomy & histology , Locomotion , Posture , Reptiles/physiology , Running , Skeleton , Skull/anatomy & histology , Spine/anatomy & histology , Tail/anatomy & histology
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