Bessel beam optical coherence microscopy enables multiscale assessment of cerebrovascular network morphology and function
Lukas Glandorf Daniel Razansky Bastian Wittmann Jeanne Droux Chaim Glück Bruno Weber Susanne Wegener Mohamad El Amki Rainer Leitgeb Bjoern Menze
Bessel beam optical coherence microscopy enables multiscale assessment of cerebrovascular network morphology and function
Bessel beam optical coherence microscopy enables multiscale assessment of cerebrovascular network morphology and function
摘要
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Lukas Glandorf,Daniel Razansky,Bastian Wittmann,Jeanne Droux,Chaim Glück,Bruno Weber,Susanne Wegener,Mohamad El Amki,Rainer Leitgeb,Bjoern Menze..Bessel beam optical coherence microscopy enables multiscale assessment of cerebrovascular network morphology and function[J].光:科学与应用(英文版),2024,13(12):3210-3223,14.基金项目
Daniel Razansky acknowledges funding from the Swiss National Science Foundation(310030_192757)and the US National Institutes of Health(RF1-NS126102).Bjoern Menze is supported through a Helmut-Horten-Professorship for Biomedical Informatics by the Helmut Horten Foundation.Bastian Wittmann is supported through the Helmut Horten Foundation.Susanne Wegener acknowledges funding from the Swiss National Science Foundation(310030_200703)and the UZH CRPP stroke.The authors appreciate the help of Paul-James Marchand with setting up the OCM system and the fruitful discussions.We also thank Sabina Stefan for elaborating her segmentation pipeline and sharing comparative training data. (310030_192757)