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Feasibility study of electromagnetic guidance system for intestinal capsule endoscope.

, , , , , and . ROBIO, page 1542-1547. IEEE, (2016)

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Conceptual design of micro-hydraulics system for active and biopsy capsule endoscope robot., , , , , and . BioRob, page 1068-1072. IEEE, (2014)Feasibility study of electromagnetic guidance system for intestinal capsule endoscope., , , , , and . ROBIO, page 1542-1547. IEEE, (2016)Novel active locomotive capsule endoscope with micro-hydraulic pump for drug delivery function., , , , , , , , , and . BioRob, page 311-316. IEEE, (2016)Effect of Chitosan on Motility of Bacteria-Driven Liposomal Microrobots., , , , , , and . BIBE, page 137-142. IEEE Computer Society, (2016)Non-invasive active capsule endoscope integrated targeting biopsy function based on electro-mangetic actuation system., , , , , , , , and . ROBIO, page 2309-2313. IEEE, (2017)Untethered Robotic Motion and Rotating Blade Mechanism for Actively Locomotive Biopsy Capsule Endoscope., , , , , , and . IEEE Access, (2019)Towards a Webshell Detection Approach Using Rule-Based and Deep HTTP Traffic Analysis., , , , and . ICCCI, volume 13501 of Lecture Notes in Computer Science, page 571-584. Springer, (2022)Toward a Deep Learning Approach for Detecting PHP Webshell., , , and . SoICT, page 514-521. ACM, (2019)A Novel Macrophage-Based Microrobot Bearing Multiple Smart Nanotherapeutics for Targeting and Drug Delivery to Solid Tumors., , , , , and . BioRob, page 55-60. IEEE, (2018)Intestinal Tattooing Mechanism Integrated with Active Wireless Capsule Endoscope., , , , , , and . BioRob, page 1254-1259. IEEE, (2018)