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Ecosystem functions of rare arable plants - field experiment: Aphidoidea data
Taken from materials and methods of https://doi.org/10.1016/j.baae.2022.12.003:Aphids were counted on 50 randomly selected shoots in two crop rows (100 shoots in total) per plot... -
Ecosystem functions of rare arable plants - field study: Aphidoidea data
Taken from materials and methods of https://doi.org/10.1016/j.baae.2022.12.003:Aphids were counted on 50 randomly selected shoots in two crop rows (100 shoots in total) per plot... -
Ecosystem functions of rare arable plants - field study: Araneae data
Partly taken from the materials and methods of https://doi.org/10.1016/j.baae.2022.12.003:To compare the activity densities of ground-dwelling predators between treatments with... -
Ecosystem functions of rare arable plants - field experiment: Araneae data
Partly taken from the materials and methods of https://doi.org/10.1016/j.baae.2022.12.003:To compare the activity densities of ground-dwelling predators between treatments with... -
Pleistocene evolution of the coccolith morphology and flux in the Tropical In...
Data describing the Pleistocene history of the morphology and the accumulation rate of Noelaerhabdaceae (Genus Emiliania, Gephyrocapsa, Reticulofenestra and Pseudoemiliania)... -
Lab experiment data of leaf litter from two different species of mangroves
To test why mangrove crabs store leaf litter inside their burrows, we study the effect of burying mangrove leaf litter of two different species (Bruguiera gymnorhiza, Ceriops... -
Supplementary Video 1
Video showing how 24 hpf body explants have beating hearts and undergo normal heart development until 48 hpf:Wholemount timelapse movies of beating hearts and blood flow in 24... -
Supplementary Video 3
Thin cECM regions run extensively across the myocardium in a 48 hpf ventricle:Video showing the rotating maximum intensity projection of a 48 hpf heart created with Imaris. -
Supplementary Video 4
Thin cECM regions are stable across heart beats: Video showing the maximum intensity projection of a 48 hpf beating heart temporally registered with Beatsync, acquired at 100... -
Supplementary Video 5
Cells delaminate into thin cECM regions at 55 hpf: Video showing the rotating maximum intensity projection of a 55 hpf heart created with Imaris. Delaminating cells... -
Supplementary Video 6
24 hpf beating heart showing the optical resolution with the body explant method Video showing a maximum intensity projection of a beating 24 hpf heart temporally registered... -
Supplementary Video 7
cECM is homogenous at 24 hpf and starts to remodel at 30 hpf Midsagittal timelapse movies of a 24 hpf and 30 hpf heart, acquired at 100 fps. Asterisks indicate areas of thin cECM. -
Supplementary Video 9
Strain maps of a beating 48 hpf heart showing higher strain in the outer curvature -
Supplementary Video 10
Simulated cECM fracture dynamics of a beating 48 hpf heart showing fractures emerging in the outer curvature -
Supplementary Video 11
Strain maps of a beating 48 hpf amhc morphant heart showing lower strain -
Supplementary Video 12
Simulated cECM fracture dynamics of a beating 48 hpf amhc morphant heart showing less fractures emerging -
Supplementary Video 13
Strain maps of beating 30, 36 and 42 hpf hearts showing the shift in strain patterns as ventricle geometry evolves -
Supplementary Video 15
Strain maps of a beating 48 hpf tbx5a morphant heart showing homogenous strain aligned perpendicular to the long axis of the heart -
Supplementary Video 16
Simulated cECM fracture dynamics of a beating 48 hpf tbx5a morphant heart showing linear fractures running along the long axis of the heart -
Supplementary Video 14
Simulated cECM fracture dynamics of beating 30, 36 and 42 hpf hearts showing the shift in cECM fracture patterns as ventricle geometry evolves
