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Tech_sem.pptx
1. ARKA Educational & Cultural Trust
JAIN INSTITUTE OF TECHNOLOGY
Davanagere-577003,KARNATAKA
DEPARTMENT OF ELECTRONICS AND COMMUNICATION
ENGINEERING
FINAL YEAR B.E. (2021-2022)
TECHNICAL SEMINAR PRESENTION ON
“Emergence of nanotechnology in sensing and actuation of
biorobotics”
1
Presented By
Abhishek K V
4JD18EC001
8th sem Dept. E&CE
Guide
Mrs. Savita M
Assistant Professor, Dept. of E&CE
JIT Davangere
3. 3
INTRODUCTION
Nanotechnology involve the ability to see and to control
individual atoms and molecules.
Bio-robotics that integrate biology with mechanical
systems by altering genetic information.
Artificial molecular machines provide an ideal approach
to nano-actuation.
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ADVANTAGES
Targeted drug delivery with minimal toxic effects.
Energy efficient products can be made due to small in size.
Improved understanding of chemicals at the cellular or
molecular level.
Flexible and lightweight materials.
8. 8
CONCLUSION
Nanotechnology has been widely studied for its potential
to advance the field of biotechnology and medical
research.
Nanotechnology opens several opportunities for the
advancement of micro-robots and studying of
supramolecule structure.
9. 9
REFERENCES
[1] U. Hassan, P. Bajaj, G. Damhorst, & R. Bashir, “Biomedical micro and
nanotechnology: From lab-on-chip to building systems with cells”, The 17th
International Conference on Solid-State Sensors, Actuators, and
Microsystems, Barcelona, Spain, June 16-20, 2013.
[2] Chang Kyu Jeong, Kwi II Park, Jungho Ryu, Geon-Tae Hwang, and Keon Jae
Lee, “Large-area and flexible lead-free nanocomposite generator using
alkaline niobate particles and metal nanorod filler”, Advance Functional
Material, vol. 24, pp. 2620–2629. (2014).
[3] Leonardo Ricotti, Arianna Menciassi, “Nanotechnology in biorobotics:
opportunities and chalanges”, Journal of Nanoparticle Research, vol. 17, issue
2, pp. 1-10. (2015).
[4] Roger D. Kamm, and Rashid Bashir, “Creating living cellular machines”,
Annals of Biomedical Engineering, vol. 42, issue 2, pp. 445- 459. (2013).