Nedbal Jakub, Gao Lu, Suhling Klaus
Department of Physics, King's College London, Strand, London WC2R 2LS, UK.
Institute of Bio- and Geosciences/Plant Sciences (IBG-2), Forschungszentrum Jülich, Wilhelm-Johnen-Straße, D-52428 Jülich, Germany.
HardwareX. 2020 Oct;8:e00143. doi: 10.1016/j.ohx.2020.e00143.
A bottom-illuminated orbital shaker designed for the cultivation of microalgae suspensions is described in this open-source hardware report. The instrument agitates and illuminates microalgae suspensions grown inside flasks. It was optimized for low production cost, simplicity, low power consumption, design flexibility, consistent, and controllable growth light intensity. The illuminated orbital shaker is especially well suited for low-resource research laboratories and education. It is an alternative to commercial instruments for microalgae cultivation. It improves on typical do-it-yourself microalgae growth systems by offering consistent and well characterized illumination light intensity. The illuminated growth area is 20 cm × 15 cm, which is suitable for three T75 tissue culture flasks or six 100 ml Erlenmeyer flasks. The photosynthetic photon flux density, is variable in eight steps ( ) and programmable in a 24-h light/dark cycle. The agitation speed is variable ( ). The overall material cost is around £300, including an entry-level orbital shaker. The build takes two days, requiring electronics and mechanical assembly capabilities. The instrument build is documented in a set of open-source protocols, design files, and source code. The design can be readily modified, scaled, and adapted for other orbital shakers and specific experimental requirements. The instrument function was validated by growing fresh-water microalgae and . The cultivation protocols, microalgae growth curves, and doubling times are included in this report.
本开源硬件报告介绍了一种专为微藻悬浮液培养设计的底部照明式轨道振荡器。该仪器可对培养瓶内生长的微藻悬浮液进行搅拌和照明。它在低成本、简易性、低功耗、设计灵活性、一致且可控的生长光照强度方面进行了优化。这种带照明的轨道振荡器特别适合资源有限的研究实验室和教育用途。它是微藻培养商业仪器的一种替代选择。通过提供一致且特征明确的光照强度,它改进了典型的自制微藻生长系统。照明生长面积为20厘米×15厘米,适合三个T75组织培养瓶或六个100毫升锥形瓶。光合光子通量密度有八个可变步骤( ),并可在24小时光/暗周期中进行编程。搅拌速度可变( )。包括入门级轨道振荡器在内,总体材料成本约为300英镑。组装需要两天时间,需要具备电子和机械组装能力。仪器组装过程记录在一套开源协议、设计文件和源代码中。该设计可轻松修改、扩展,并适用于其他轨道振荡器和特定实验要求。通过培养淡水微藻 和 对仪器功能进行了验证。本报告包含培养方案、微藻生长曲线和倍增时间。