Pros and Cons: Magnetic versus Optical Microrobots

Преимущества и недостатки: магнитные и оптические микророботы
Metin Sitti, Diederik S. Wiersma
2020-02-13

magnetic actuationmedical microrobotsmobile microroboticsoptical actuationorgan-on-a-chip
Mobile microrobotics has emerged as a new robotics field within the last decade to create untethered tiny robots that can access and operate in unprecedented, dangerous, or hard-to-reach small spaces noninvasively toward disruptive medical, biotechnology, desktop manufacturing, environmental remediation, and other potential applications. Magnetic and optical actuation methods are the most widely used actuation methods in mobile microrobotics currently, in addition to acoustic and biological (cell-driven) actuation approaches. The pros and cons of these actuation methods are reported here, depending on the given context. They can both enable long-range, fast, and precise actuation of single or a large number of microrobots in diverse environments. Magnetic actuation has unique potential for medical applications of microrobots inside nontransparent tissues at high penetration depths, while optical actuation is suitable for more biotechnology, lab-/organ-on-a-chip, and desktop manufacturing types of applications with much less surface penetration depth requirements or with transparent environments. Combining both methods in new robot designs can have a strong potential of combining the pros of both methods. There is still much progress needed in both actuation methods to realize the potential disruptive applications of mobile microrobots in real-world conditions.
1
Both magnetic and optical methods can actuate single or many microrobots over long ranges with high speed and precision in diverse environments.
2
Hybrid microrobot designs combining magnetic and optical actuation could integrate the advantages of both methods, although substantial development remains necessary for real-world applications.
3
Magnetic actuation is particularly promising for medical microrobots operating inside nontransparent tissues at substantial penetration depths.
4
Magnetic and optical actuation are currently the most widely used methods for mobile microrobots, alongside acoustic and biological approaches.
5
Optical actuation is better suited to biotechnology, lab-on-a-chip, organ-on-a-chip, and desktop manufacturing applications involving transparent environments or limited surface penetration.

magnetic and optical actuation methods for mobile microrobots

the advantages, limitations, application contexts, and prospects of combining magnetic and optical actuation methods

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2020-02-13
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Metin Sitti
Diederik S. Wiersma
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