Autonomous Robot-Aided Optical Manipulation for Biological Cells | Buch | 978-0-12-823449-5 | www.sack.de

Buch, Englisch, 190 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 250 g

Autonomous Robot-Aided Optical Manipulation for Biological Cells


Erscheinungsjahr 2021
ISBN: 978-0-12-823449-5
Verlag: William Andrew Publishing

Buch, Englisch, 190 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 250 g

ISBN: 978-0-12-823449-5
Verlag: William Andrew Publishing


Autonomous Robot-Aided Optical Manipulation for Biological Cells gives a systematically and almost self-contained description of the many facets of modeling, sensing, and control techniques or experimentally exploring emerging trends in optical manipulation of biological cell in micro/nanorobotics systems.

To achieve biomedical applications, reliability design, modeling, and precision control are vitally important for the development of engineering systems. With the advances in modeling, sensing, and control techniques, it is opportunistic to exploit them for the benefit of reliability design, actuation, and precision control of micro/nanomanipulation systems to expanding the applications of robot at the micro and nano scales, especially in biomedical engineering.

This book presents new techniques in reliability modeling and advanced control of robot-aided optical manipulation of biological cells systems. The book will be beneficial to the researchers within robotics, mechatronics, biomedical engineering, and automatic control society, including both academic and industrial parts.

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Weitere Infos & Material


Section A: Principle of optical manipulation of biological cells1. Principle of Optical Tweezers Trapping2. Principle of Holographic Optical Tweezers coherence of the edited book volume3. Modeling of robot-tweezers manipulation of biological cells

Section B: Autonomous Frameworks for Cell Position Control4. Direct optical manipulation of biological cells5. Indirect optical manipulation of biological cells6. Advanced intelligent control techniques for cell position control7. Advances cell orientation control8. Integrated optical tweezers with other manipulation platforms

Section C: Case studies9. Cell sorting, arraying, pairing and patterning using cell positioning techniques10. Cell fusion using cell positioning techniques11. Cell injection using combined cell positioning and reorientation techniques12. Cell biopsy using combined cell positioning and reorientation techniques13. Current challenges and future research directions of optical manipulation of biological cells



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