211 to 220 of 259 Results
May 17, 2022 -
Data for: Galvanotaxis of ciliates: Spatiotemporal dynamics of Coleps hirtus under electric fields
Unknown - 749.5 MB -
MD5: 84fde8979ff523e38b764640bcb95dca
Unprocessed data "v2_EX.czi", where X is the applied electric field in [Volt/cm] |
May 17, 2022 -
Data for: Galvanotaxis of ciliates: Spatiotemporal dynamics of Coleps hirtus under electric fields
Unknown - 742.1 MB -
MD5: b505abbf1b274f682f1ac903f188d1c3
Unprocessed data "v2_EX.czi", where X is the applied electric field in [Volt/cm] |
May 17, 2022 -
Data for: Galvanotaxis of ciliates: Spatiotemporal dynamics of Coleps hirtus under electric fields
Unknown - 743.6 MB -
MD5: 17418db135e765a2737710d07b0b79e2
Unprocessed data "v2_EX.czi", where X is the applied electric field in [Volt/cm] |
Mar 20, 2022 - AG_IntBioSys
Erben, Amelie; Lissner, Josefine; Heymann, Michael, 2022, "Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip", https://doi.org/10.18419/DARUS-2612, DaRUS, V1
Vascularized alveoli designs generated from parametric design synthesis to realize context specific 3D design cues. Implemented variations include component type (#string1), alveoli size (#num1), degree of vascularization (#num2), and wall thickness (#num3) as specified in the respective file names: AV_#string1_#num1_#num2_#num3.STL , and illustrat... |
Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
PNG Image - 391.8 KB -
MD5: 4060af931a5f424c6e33d74bc3c1c109
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Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
STL Format - 26.3 MB -
MD5: cdd6188213310ecf3aeb28089fb10d5c
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Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
STL Format - 26.5 MB -
MD5: a879dc032185ed2b1cdb1b5b4d9631cd
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Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
STL Format - 24.2 MB -
MD5: f4ec8250c4c2e0a5db2b44e6c8694bfe
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Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
STL Format - 43.5 MB -
MD5: 7293d55d3ad8c7788a9fdd4694299ff2
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Mar 20, 2022 -
Data for: Engineering Principles and Algorithmic Design Synthesis for Ultracompact Bio-Hybrid Perfusion Chip
STL Format - 50.8 MB -
MD5: f37bb0c187e2b5c1ee5c93f410eb2ab8
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