Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Performance Evaluation of a Magnetically Driven Microrobot for Targeted Drug Delivery

View through CrossRef
Given that the current microrobot cannot achieve fixed-point and quantitative drug application in the gastrointestinal (GI) tract, a targeted drug delivery microrobot is proposed, and its principle and characteristics are studied. Through the control of an external magnetic field, it can actively move to the affected area to realize the targeted drug delivery function. The microrobot has a cam structure connected with a radially magnetized permanent magnet, which can realize two movement modes: movement and targeted drug delivery. Firstly, the magnetic actuated capsule microrobotic system (MACMS) is analyzed. Secondly, the dynamic model and quantitative drug delivery model of the targeted drug delivery microrobot driven by the spiral jet structure are established, and the motion characteristics of the targeted drug delivery microrobot are simulated and analyzed by the method of Computational Fluid Dynamics (CFD). Finally, the whole process of the targeted drug delivery task of the microrobot is simulated. The results show that the targeted drug delivery microrobot can realize basic movements such as forward, backward, fixed-point parking and drug delivery through external magnetic field control, which lays the foundation for gastrointestinal diagnosis and treatment.
Title: Performance Evaluation of a Magnetically Driven Microrobot for Targeted Drug Delivery
Description:
Given that the current microrobot cannot achieve fixed-point and quantitative drug application in the gastrointestinal (GI) tract, a targeted drug delivery microrobot is proposed, and its principle and characteristics are studied.
Through the control of an external magnetic field, it can actively move to the affected area to realize the targeted drug delivery function.
The microrobot has a cam structure connected with a radially magnetized permanent magnet, which can realize two movement modes: movement and targeted drug delivery.
Firstly, the magnetic actuated capsule microrobotic system (MACMS) is analyzed.
Secondly, the dynamic model and quantitative drug delivery model of the targeted drug delivery microrobot driven by the spiral jet structure are established, and the motion characteristics of the targeted drug delivery microrobot are simulated and analyzed by the method of Computational Fluid Dynamics (CFD).
Finally, the whole process of the targeted drug delivery task of the microrobot is simulated.
The results show that the targeted drug delivery microrobot can realize basic movements such as forward, backward, fixed-point parking and drug delivery through external magnetic field control, which lays the foundation for gastrointestinal diagnosis and treatment.

Related Results

Selection of Injectable Drug Product Composition using Machine Learning Models (Preprint)
Selection of Injectable Drug Product Composition using Machine Learning Models (Preprint)
BACKGROUND As of July 2020, a Web of Science search of “machine learning (ML)” nested within the search of “pharmacokinetics or pharmacodynamics” yielded over 100...
Non-Recommended Publishing Lists: Strategies for Detecting Deceitful Journals
Non-Recommended Publishing Lists: Strategies for Detecting Deceitful Journals
Abstract The rapid growth of open access publishing (OAP) has significantly improved the accessibility and dissemination of scientific knowledge. However, this expansion has also c...
The Promise of Exosomes as Drug Delivery Systems
The Promise of Exosomes as Drug Delivery Systems
Exosomes are small extracellular vesicles that play a role in cell-to-cell communication by transferring bioactive molecules such as proteins, nucleic acids, and lipids between cel...
Fabrication of 3D Microrobotic Parallel Actuator Architecture
Fabrication of 3D Microrobotic Parallel Actuator Architecture
ABSTRACT In this paper, we report on the micro/nanofabrication of a 2×1 microrobotic parallel actuato...
Safety-Guided Deep Reinforcement Learning for Magnetic Microrobot Navigation and Precision Drug Delivery in Complex Vascular Networks
Safety-Guided Deep Reinforcement Learning for Magnetic Microrobot Navigation and Precision Drug Delivery in Complex Vascular Networks
Magnetic microrobots are a promising approach for targeted drug delivery because they can be remotely guided toward localized therapeutic regions while reducing non-specific drug d...
Acoustically Actuated Flow in Microrobots Powered by Axisymmetric Resonant Bubbles
Acoustically Actuated Flow in Microrobots Powered by Axisymmetric Resonant Bubbles
Bubble‐driven microsystems inspired by the therapeutic use of microbubbles under clinical ultrasound actuation offer innovative remote manipulation in biological settings. Ultrasou...
HOLLOW MAGNETIC NANOCARRIER-BASED MICROROBOT SWARMS FOR DEFENCE APPLICATIONS
HOLLOW MAGNETIC NANOCARRIER-BASED MICROROBOT SWARMS FOR DEFENCE APPLICATIONS
Recent advances in swarm robotics and nanomaterials have enabled the development of intelligent microrobotic systems with potential applications extending beyond biomedical domains...
Design, fabrication and control of a microrobot for laser phonomicrosurgery
Design, fabrication and control of a microrobot for laser phonomicrosurgery
Conception, fabrication et commande d'un microrobot dédié à la phonomicrochirurgie Cette thèse présente la conception, la fabrication et la commande d’un microrobot...

Back to Top