The high-energy imaging beamline MOGNO was recently designed, installed and commissioned at the Sirius fourth-generation synchrotron radiation source at the LNLS in Brazil. MOGNO, a micro- and nano-imaging beamline, has as primary source a 3.2 T superbend permanent magnet dipole with a critical energy of 19.15 keV and operates in a cone-beam geometry. The present paper addresses the commissioning experiments in propagation-based phase-contrast imaging and microtomography, revealing high-precision details of a wide range of non-stained biological samples with minimal preparation. We illustrate the potential of non-destructive fast high-resolution microtomographic imaging, particularly for fine anatomical studies of Brazilian biological specimens. Three-dimensional investigations reveal the internal morphology of the head of a dengue fever vector mosquito ( Aedes aegypti ) and of the whole embryo of a reptile ( Brasiliscincus agilis ) and of an amphibian ( Eleutherodactylus cochranae ), as well as the features inherent in an archaeological artefact ( Galeocerdo cuvier tooth) and a fish fossil bone (Elopomorpha incertae sedis ).
Colaço et al. (Thu,) studied this question.