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Titlebook: Electromagnetic Actuation and Sensing in Medical Robotics; Hongliang Ren,Jinji Sun Book 2018 Springer Nature Singapore Pte Ltd. 2018 Magne

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楼主: energy
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https://doi.org/10.1007/978-3-662-42966-2red and analyzed by the created tracking algorithm to determine the efficiency and accuracy of the algorithm. It is necessary to ensure an efficient and accurate tracking method of the particles in order to evaluate future in vitro or in vivo applications of the microbubbles, when implanted into an
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Thomas Stompe,Alexander Friedmannverview of the working principle and methods of the passive magnetic tracking technology was presented. Implementation of the technology in actual medical interventions were also demonstrated. Lastly, the challenges in the development of this technology were explored and discussed.
发表于 2025-3-27 10:58:52 | 显示全部楼层
2196-8861 rging field of magnetic resonance imaging (MRI) guided actua.This book highlights electromagnetic actuation (EMA) and sensing systems for a broad range of applications including targeted drug delivery, drug-release-rate control, catheterization, intravitreal needleless injections, wireless magnetic
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,Körperbau und seelische Anlage,like the permanent magnets which can be further refined to meet ever-increasing demands in untethered and safe-regulated medical environments. In this chapter, we focus mostly on different avenues and facets of flexible polymer materials in adaptable actuation and sensing in the context of magnetic field for range of biomedical applications.
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Passive Magnetic Localization in Medical Intervention,verview of the working principle and methods of the passive magnetic tracking technology was presented. Implementation of the technology in actual medical interventions were also demonstrated. Lastly, the challenges in the development of this technology were explored and discussed.
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https://doi.org/10.1007/978-3-662-36322-5gneto-responsive microcapsules for targeted Drug Delivery (TDD) applications. In this part, we will provide a brief literature review in the nexus of magnetic micro robotics with design specifications for drug delivery. Finally, we will illustrate magnetically manipulated self-propelled microjets for biosensing as future perspectives.
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K. Beringer,K. Birnbaum,Oswald Bumkeem driven by magnetic actuators based on the magnetically suspended technology. The configuration analysis and the design method of magnetic bearing with current bias are presented, and then the analysis and method of the 1-DOF (Degree of Freedom), 3-DOF, and 4-DOF magnetic suspension-based robotic actuator systems are proposed in details.
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