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Page 26 of 26                                                         Chen et al. Soft Sci. 2026, 6, 3





               200. Choi, Y. S.; Hsueh, Y. Y.; Koo, J.; et al. Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators
                  designed to facilitate neuromuscular regeneration. Nat. Commun. 2020, 11, 5990. DOI PubMed PMC
               201. Li, W.; Thian, E. S.; Wang, M.; Wang, Z.; Ren, L. Surface design for antibacterial materials: from fundamentals to advanced strategies.
                  Adv. Sci. (Weinh). 2021, 8, e2100368. DOI PubMed PMC
               202. Yoshida, M.; Langer, R.; Lendlein, A.; Lahann, J. From advanced biomedical coatings to multi-functionalized biomaterials. J.
                  Macromol. Sci. Part. C-Polym. Rev. 2006, 46, 347-75. DOI
               203. Culha, U.; Demir, S. O.; Trimpe, S.; Sitti, M. Learning of sub-optimal gait controllers for magnetic walking soft millirobots. Robot. Sci.
                  Syst. 2020, 2020, 70. DOI PubMed PMC
               204. Zhao, C.; Park, J.; Root, S. E.; Bao, Z. Skin-inspired soft bioelectronic materials, devices and systems. Nat. Rev. Bioeng. 2024, 2,
                  671-90. DOI
               205. Nan, K.; Feig, V. R.; Ying, B.; et al. Mucosa-interfacing electronics. Nat. Rev. Mater. 2022, 7, 908-25. DOI PubMed PMC
               206. Khatib, M.; Zhao, E. T.; Wei, S.; et al. High-density soft bioelectronic fibres for multimodal sensing and stimulation. Nature 2025, 645,
                  656-64. DOI PubMed
               207. Jiang, Y.; Zhang, Z.; Wang, Y. X.; et al. Topological supramolecular network enabled high-conductivity, stretchable organic
                  bioelectronics. Science 2022, 375, 1411-7. DOI PubMed
               208. Khodagholy, D.; Gelinas, J. N.; Thesen, T.; et al. NeuroGrid: recording action potentials from the surface of the brain. Nat. Neurosci.
                  2015, 18, 310-5. DOI PubMed PMC
               209. Xu, N.; LaGrow, T. J.; Anumba, N.; et al. Functional connectivity of the brain across rodents and humans. Front. Neurosci. 2022, 16,
                  816331. DOI PubMed PMC
               210. Liu, Y.; Feig, V. R.; Bao, Z. Conjugated polymer for implantable electronics toward clinical application. Adv. Healthc. Mater. 2021, 10,
                  e2001916. DOI PubMed
               211. Liu, X.; Tang, H.; Li, N.; et al. Miniature magneto-ultrasonic machines for wireless robotic sensing and manipulation. Sci. Robot. 2025,
                  10, eadu4851. DOI PubMed
               212. Wang, Q.; Chan, K. F.; Schweizer, K.; et al. Ultrasound doppler-guided real-time navigation of a magnetic microswarm for active
                  endovascular delivery. Sci. Adv. 2021, 7, eabe5914. DOI PubMed PMC
               213. Erin, O.; Antonelli, D.; Tiryaki, M. E.; Sitti, M. Towards 5-DoF control of an untethered magnetic millirobot via mri gradient coils. In
                  2020 IEEE International Conference on Robotics and Automation (ICRA), Paris, France, May 31-August 31 2020; IEEE, 2020, pp
                  6551-7. DOI
               214. Tiryaki, M. E.; Elmacıoğlu, Y. G.; Sitti, M. Magnetic guidewire steering at ultrahigh magnetic fields. Sci. Adv. 2023, 9, eadg6438. DOI
                  PubMed PMC
               215. Jäckle, S.; Eixmann, T.; Schulz-Hildebrandt, H.; Hüttmann, G.; Pätz, T. Fiber optical shape sensing of flexible instruments for
                  endovascular navigation. Int. J. Comput. Assist. Radiol. Surg. 2019, 14, 2137-45. DOI PubMed PMC
               216. Seva, R. R.; Tan, A. L. S.; Tejero, L. M. S.; Salvacion, M. L. D. S. Multi-dimensional readiness assessment of medical devices. Theor.
                  Iss. Ergon. Sci. 2022, 24, 189-205. DOI
               217. Ho, A.; Quick, O. Leaving patients to their own devices? Smart technology, safety and therapeutic relationships. BMC. Med. Ethics.
                  2018, 19, 18. DOI PubMed PMC
               218. Lunney, J. K.; Van Goor, A.; Walker, K. E.; Hailstock, T.; Franklin, J.; Dai, C. Importance of the pig as a human biomedical model. Sci.
                  Transl. Med. 2021, 13, eabd5758. DOI PubMed
               219. Emanuel, E. J. Four models of the physician-patient relationship. JAMA. 1992, 267, 2221. DOI



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