日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Education-based grant programmes for bottom-up distance learning and project catalysis: antimicrobial resistance in Sub-Saharan Africa

以教育为基础的资助计划,促进自下而上的远程学习和项目催化:撒哈拉以南非洲的抗菌素耐药性

Graham, Chris L B; Akligoh, Harry; Ori, Joy King; Adzaho, Gameli; Salekwa, Linda; Campbell, Patrick; Saba, Courage K S; Landrain, Thomas E; Santolini, Marc

Community review: a robust and scalable selection system for resource allocation within open science and innovation communities

社区评审:一个稳健且可扩展的开放科学与创新社区资源分配选择系统

Graham, Chris L B; Landrain, Thomas E; Vjestica, Amber; Masselot, Camille; Lawton, Elliot; Blondel, Leo; Haenal, Luca; Greshake Tzovaras, Bastian; Santolini, Marc

Implementing the Co-Immune Open Innovation Program to Address Vaccination Hesitancy and Access to Vaccines: Retrospective Study

实施“共同免疫开放创新计划”以解决疫苗接种犹豫和疫苗获取问题:回顾性研究

Masselot, Camille; Greshake Tzovaras, Bastian; Graham, Chris L B; Finnegan, Gary; Jeyaram, Rathin; Vitali, Isabelle; Landrain, Thomas; Santolini, Marc

Dynamic signal processing by ribozyme-mediated RNA circuits to control gene expression

核酶介导的RNA回路进行动态信号处理以控制基因表达

Shen, Shensi; Rodrigo, Guillermo; Prakash, Satya; Majer, Eszter; Landrain, Thomas E; Kirov, Boris; Daròs, José-Antonio; Jaramillo, Alfonso

Full design automation of multi-state RNA devices to program gene expression using energy-based optimization

利用基于能量的优化方法,实现多状态RNA器件的全自动化设计,以对基因表达进行编程。

Rodrigo, Guillermo; Landrain, Thomas E; Majer, Eszter; Daròs, José-Antonio; Jaramillo, Alfonso

Do-it-yourself biology: challenges and promises for an open science and technology movement

DIY生物学:开放科学技术运动的挑战与前景

Landrain, Thomas; Meyer, Morgan; Perez, Ariel Martin; Sussan, Remi

De novo automated design of small RNA circuits for engineering synthetic riboregulation in living cells.

从头开始自动设计小RNA回路,用于在活细胞中构建合成核糖调控系统

Rodrigo Guillermo, Landrain Thomas E, Jaramillo Alfonso