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Development of an X-ray HARP–FEA detector system for high-throughput protein crystallography

机译:用于高通量蛋白质晶体学的X射线HARP–FEA检测器系统的开发

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摘要

A new detector system for protein crystallography is now being developed based on an X-ray HARP–FEA (high-gain avalanche rushing amorphous photoconductor–field emitter array), which consists of an amorphous selenium membrane and a matrix field emitter array. The combination of the membrane avalanche effect with a single driven FEA has several advantages over currently available area detectors, including higher sensitivity, higher spatial resolution and a higher frame rate. Preliminary evaluation of the detector has been carried out and its effectiveness has been confirmed. Next, diffraction images were measured with continuous rotation of a protein crystal, and the images were compared with those measured by the existing CCD detector; the system successfully obtained high-spatial-resolution images. Using shutterless measurement, the total measurement time can be reduced significantly, making the method appropriate for high-throughput protein crystallography. The X-ray HARP–FEA detector is an attractive candidate for the next generation of X-ray area detectors.
机译:基于X射线HARP–FEA(高增益雪崩冲激非晶光电导体-场发射器阵列),目前正在开发一种新的蛋白质晶体检测器系统,该系统由非晶硒膜和矩阵场发射器阵列组成。膜雪崩效应与单个驱动的FEA的组合比当前可用的区域检测器具有多个优势,包括更高的灵敏度,更高的空间分辨率和更高的帧频。已经对探测器进行了初步评估,并确认了其有效性。接下来,通过连续旋转蛋白质晶体来测量衍射图像,并将该图像与通过现有的CCD检测器测量的图像进行比较;该系统成功获得了高空间分辨率的图像。使用无快门测量,可以大大减少总的测量时间,从而使该方法适用于高通量蛋白质晶体学。 X射线HARP–FEA检测器是下一代X射线区域检测器的理想选择。

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