5 papers · ranked by Valyu relevance
Knut Rand, Ivar Grytten, Milena Pavlovic, Chakravarthi Kanduri + 1 more
Python is a popular and widespread programming language for scientific computing, in large part due to the powerful array programming library NumPy, which makes it easy to write clean, vectorized and efficient code for handling large datasets. A challenge with using array programming for biological data is that the…
Martina Pfeiffer, Fiona Cole, Dongfang Wang, Yonggang Ke + 1 more
DNA origami nanodevices allow us to mimic cellular functions in a rationally controlled manner. They describe machineries which respond to environmental stimuli by conducting different tasks. To date, this mostly is achieved by constructing conformational two-state switches which upon activation by stimuli change their…
Christopher S. Dunham, Madelynn E. Mackenzie, Haruko Nakano, Alexis R. Kim + 3 more
Open source analytical software for the analysis of electrophysiological cardiomyocyte data offers a variety of new functionalities to complement closed-source, proprietary tools. Here, we present the Cardio PyMEA application, a free, modifiable, and open source program for the analysis of microelectrode array (MEA)…
Alex Laverick, Katherine Convey, Catherine Harrison, Jenny Tomlinson + 2 more
OT-Mation is an open-source Python script designed to automate the programming of OT-2 liquid handling robots, making combinatorial experiments more accessible to researchers. By parsing user-defined CSV files containing information on labware, reagents, pipettes, and experimental design, OT-Mation generates a bespoke…
Jean-Christophe Galas, André Estevez-Torres, Marc Van Der Hofstadt
DNA molecular programs are emerging as promising pharmaceutical approaches due to their versatility for biomolecular sensing and actuation. However, the implementation of DNA programs has been mainly limited to serum-deprived in vitro assays due to the fast deterioration of the DNA reaction networks by the nucleases…