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Susannah B P McLaren

Showing results (1-10 of 5) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|July 15, 2024
Lumen Pressure Modulation in Chicken EmbryosSusannah B P McLaren, Fengzhu Xiong
Development (Cambridge, England)|June 4, 2021
Anterior expansion and posterior addition to the notochord mechanically coordinate zebrafish embryo axis elongationSusannah B P McLaren, Benjamin J Steventon
Developmental Cell|May 10, 2025
Differential tissue deformability underlies fluid pressure-driven shape divergence of the avian embryonic brain and spinal cordSusannah B P McLaren, Shi-Lei Xue, Siyuan Ding, et al.
Development (Cambridge, England)|January 20, 2026
TiFM2.0 - versatile mechanical measurement and actuation in live embryosAna R Hernandez-Rodriguez, Yisha Lan, Fengtong Ji, et al.
Nature Electronics|August 1, 2024
Imperceptible augmentation of living systems with organic bioelectronic fibresWenyu Wang, Yifei Pan, Yuan Shui, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Methods in Molecular Biology (Clifton, N.J.)|July 15, 2024
Lumen Pressure Modulation in Chicken EmbryosSusannah B P McLaren, Fengzhu Xiong
Development (Cambridge, England)|June 4, 2021
Anterior expansion and posterior addition to the notochord mechanically coordinate zebrafish embryo axis elongationSusannah B P McLaren, Benjamin J Steventon
Developmental Cell|May 10, 2025
Differential tissue deformability underlies fluid pressure-driven shape divergence of the avian embryonic brain and spinal cordSusannah B P McLaren, Shi-Lei Xue, Siyuan Ding, et al.
Development (Cambridge, England)|January 20, 2026
TiFM2.0 - versatile mechanical measurement and actuation in live embryosAna R Hernandez-Rodriguez, Yisha Lan, Fengtong Ji, et al.
Nature Electronics|August 1, 2024
Imperceptible augmentation of living systems with organic bioelectronic fibresWenyu Wang, Yifei Pan, Yuan Shui, et al.
Pageof 1