蓝色起源新谢泼德M7首次亚轨道飞行在微重力细胞研究实验(CRExIM)中的挑战

P. Llanos, K. Andrijauskaite, V. Duraisamy, Francisco F Pastrana, E. Seedhouse, S. Gangadharan, L. Bunegin, Mariel Rico
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引用次数: 3

摘要

2017年12月12日星期二,蓝色起源公司的新谢泼德亚轨道飞行器在德克萨斯州范霍恩的西德克萨斯发射场发射了微重力细胞研究实验(CRExIM)。这项科学实验的目的之一是评估在亚轨道飞行过程中微重力对小鼠t细胞的影响。这些细胞被放置在一个带有数据记录仪的纳米实验室中,在飞行前、飞行中和飞行后的操作中,这些数据记录仪可以感知加速度、温度和相对湿度。注意到传感器测量中的一些差异,这些误差部分归因于采样率的差异,部分归因于传感器的不同位置,这使得难以获得高度精确的加速度测量和将两组数据联系起来。本文讨论了挫折和经验教训,这使我们的团队在满足NanoRacks和Blue Origin规定的所有里程碑的同时找到了新的替代方案。这份手稿强调了这些导致任务成功的替代方案,并给出了建议,使客户能够在未来的飞行中减轻这些挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges of ERAU’s First Suborbital Flight Aboard Blue Origin’s New Shepard M7 for the Cell Research Experiment In Microgravity (CRExIM)
Abstract Cell Research Experiment In Microgravity (CRExIM) was launched aboard Blue Origin’s New Shepard suborbital vehicle on Tuesday, December 12, 2017, from the West Texas Launch Site in Van Horn, Texas. One of the aims of this science experiment was to assess the effects of microgravity on murine T-cells during suborbital flight. These cells were placed in a NanoLab with a data logger that sensed the acceleration, temperature, and relative humidity during preflight, flight, and postflight operations. Some discrepancies in sensor measurement were noticed, and these errors were attributed partly to the difference in sampling rates and partly to the different locations of the sensors, which made it difficult to obtain highly accurate measurements of the accelerations and to correlate both sets of data. This paper discusses the setbacks and lessons learned, which made our team find new alternatives while meeting all milestones as mandated by NanoRacks and Blue Origin. This manuscript highlights these alternatives that led to the success of the mission and gives recommendations that will enable customers to alleviate some of these challenges in future flights.
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