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The SAMAL Model for Affective Learning: A multidimensional model incorporating the body, mind and emotion in learning.

, , , и . DMS, стр. 216-221. Knowledge Systems Institute, (2011)

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Robotic manipulation of human red blood cells with optical tweezers for cell property characterization., , , , и . IROS, стр. 4269-4274. IEEE, (2010)Integrated vision and force control in suspended cell injection system: Towards automatic batch biomanipulation., , , и . ICRA, стр. 3413-3418. IEEE, (2008)Three-Dimensional Enhancement of Confocal Scanning Laser Fluorescence Microscope Images for Vascular Reconstruction., , и . ICPR (3), стр. 863-866. IEEE Computer Society, (2002)Robotic Cell Injection System With Position and Force Control: Toward Automatic Batch Biomanipulation., , , и . IEEE Trans. Robotics, 25 (3): 727-737 (2009)An adaptive impedance force control approach for robotic cell microinjection., , , и . IROS, стр. 907-912. IEEE, (2008)Automated in-vivo transportation of biological cells with a disturbance compensation controller., , , , , и . IROS, стр. 2561-2566. IEEE, (2016)Automated segmentation in confocal images using a density clustering method., , и . J. Electronic Imaging, 16 (4): 043003 (2007)Robotic cell manipulation with optical tweezers for biomechanical characterization., , , и . ICRA, стр. 4104-4109. IEEE, (2011)Development of a high throughput robot-aided cell injection system for human cells., , , , , и . ICRA, стр. 963-968. IEEE, (2014)Adaptive thresholding image series from fluorescence confocal scanning laser microscope using orientation intensity profiles., , и . Medical Imaging: Image Processing, том 5370 из SPIE Proceedings, SPIE, (2004)