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Imaging System For Measuring Macromolecule Crystal Growth Rates in Microgravity

机译:用于测量微重力下大分子晶体生长速率的成像系统

摘要

In order to determine how macromolecule crystal quality improvement in microgravity is related to crystal growth characteristics, a team of scientists and engineers at NASA's Marshal Space Flight Center (MSFC) developed flight hardware capable of measuring the crystal growth rates of a population of crystals growing under the same conditions. As crystal growth rate is defined as the change or delta in a defined dimension or length (L) of crystal over time, the hardware was named Delta-L. Delta-L consists of three sub assemblies: a fluid unit including a temperature-controlled growth cell, an imaging unit, and a control unit (consisting of a Data Acquisition and Control Unit (DACU), and a thermal control unit). Delta-L will be used in connection with the Glovebox Integrated Microgravity Isolation Technology (g-LIMIT) inside the Microgravity Science Glovebox (MSG), onboard the International Space Station. This paper will describe the Delta-L imaging system. The Delta-L imaging system was designed to locate, resolve, and capture images of up to 10 individual crystals ranging in size from 10 to 500 microns with a point-to-point accuracy of +/- 2.0 microns within a quartz growth cell observation area of 20 mm x 10 mm x 1 mm. The optical imaging system is comprised of a video microscope camera mounted on computer controlled translation stages. The 3-axis translation stages and control units provide crewmembers the ability to search throughout the growth cell observation area for crystals forming in size of approximately 10 microns. Once the crewmember has selected ten crystals of interest, the growth of these crystals is tracked until the size reaches approximately 500 microns. In order to resolve these crystals an optical system with a magnification of 10X was designed. A black and white NTSC camera was utilized with a 20X microscope objective and a 0.5X custom designed relay lens with an inline light to meet the magnification requirement. The design allows a 500 pm crystal to be viewed in the vertical dimension on a standard NTSC monitor (4:3 aspect ratio). Images of the 10 crystals are collected periodically and stored in sets by the DACU.
机译:为了确定微重力下大分子晶体质量的改善与晶体生长特性之间的关系,美国宇航局元帅太空飞行中心(MSFC)的科学家和工程师团队开发了一种飞行硬件,能够测量在相同的条件。由于晶体生长速率定义为晶体的定义尺寸或长度(L)随时间变化或变化,因此硬件称为Delta-L。 Delta-L由三个子组件组成:流体单元,包括温度控制的生长池,成像单元和控制单元(由数据采集和控制单元(DACU)和热控制单元组成)。 Delta-L将与国际空间站上微重力科学手套箱(MSG)内的手套箱集成微重力隔离技术(g-LIMIT)结合使用。本文将介绍Delta-L成像系统。 Delta-L成像系统旨在定位,分辨和捕获多达10个单个晶体的图像,这些晶体的大小在10至500微米之间,在石英生长池观察中的点对点精度为+/- 2.0微米面积为20毫米x 10毫米x 1毫米。光学成像系统由安装在计算机控制的平移台上的视频显微镜摄像机组成。 3轴平移台和控制单元为机组人员提供了在整个生长细胞观察区域内搜索约10微米大小的晶体的能力。一旦机组人员选择了十个感兴趣的晶体,就会跟踪这些晶体的生长,直到大小达到大约500微米。为了解析这些晶体,设计了放大倍数为10倍的光学系统。黑白NTSC摄像机与20倍显微镜物镜和0.5倍定制设计的中继透镜配合使用,并带有嵌入式光,以满足放大倍数的要求。该设计允许在标准NTSC监视器(纵横比为4:3)上以垂直尺寸查看500 pm的晶体。定期收集10个晶体的图像,并由DACU固定存储。

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