期刊文献+

神经假体能量信号转换与传输关键技术的研究进展

Research Progress on Key Technology of Power and Signal Transmission in Neuroprosthetic
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摘要 能量信号转换与传输技术是神经假体研究的关键技术。本文首先简述神经假体能量信号转换与传输技术的理论基础,然后对神经假体研究中能量信号转换与传输的三种关键技术研究现状进行综述。通过对无线电能传输技术、无线通信技术、无线供能通信技术的研究方向和难点进行讨论,指出神经假体能量信号转换与传输技术的重点关注内容,有助于神经假体的进一步研究。 The power and signal transmission technology is one of the key technologies in neuroprosthetic research. This paper proposes firstly the related theory of power and signal transmission technology in neuroprosthetie, then summarizes the three key aspects of the power and signal transmission technology in neuroprosthetie. After analyzed the development of the inductive wireless power harvesting technology, the wireless telemetry technology and the wireless power harvesting telemetry technology, the emphasis on research contents will be proposed and discussed, which will help aceelerate the further research of prosthetic.
出处 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2011年第5期1040-1042,1051,共4页 Journal of Biomedical Engineering
基金 国家自然科学基金资助项目(31070882) 国家863计划项目资助(2007AA042300) 中央高校基本科研业务费资助项目(CDJRC10230010)(CDJZR11230008)
关键词 神经假体 感应无线电能传输 无线供能通信 Neuroprosthetic Inductive wireless power transmission Wireless power harvesting telemetry
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参考文献18

  • 1Zhigong Wang,Xiaosong Gu,Xiaoying Lǔ,Zhenglin Jiang,Wenyuan Li,Guangming Lǔ,Yufeng Wang,Xiaoyan Shen,Xintai Zhao,Huiling Wang,Zhenyu Zhang,Hongmei Shen,Yang Wu,Weixing Shen,Jingyang Zhang,Dong Chen,Xiaoyi Mao,Huaxiang Shen.Microelectronics-embedded channel bridging and signal regeneration of injured spinal cords[J].Progress in Natural Science:Materials International,2009,19(10):1261-1269. 被引量:5
  • 2DE B C, PATEL S, ROY A, et al. Factors affecting perceptual thresholds in epiretinal prostheses [J]. Invest Ophthalmol Vis Sci, 2008, 49(6):2303-2314.
  • 3YU H, BASHIRULLAH R. A low power ASK clock and data recovery circuit for wireless implantable electronics [C]. IEEE CICC Proc. of the 2006 Custom Integrated Circuits Conference, Sen Jose, California, 10-13 Sept. 2006, 9: 249- 252.
  • 4SAUER C, STANACEVIC M, CAUWENBERGHS G, et al. Power harvesting and telemetry in CMOS for implanted devices[J]. Circuits and Systems I, IEEE Transactions on, 2005, 52(12), 2605-2613.
  • 5LIU W, SIVAPRAKASAM M, WANG G, et al. Challenges in realizing a chronic highresolution retinal prosthesis [M]// HUMAYUN M S, CHADER G, WEILAND J D. Artificial Sights Basic Research, Biomedical Engineering, and Clinical Advances. New York: Springer-Verlag, 2007: 129-149.
  • 6RIZZO J F, SNEBOLD L, KENNEY M. Development of a visual prosthesis [M]//TOMBRAN-TINK J, BARNSTABLE C, RIZZO J F. Visual Prosthesis and Ophthalmic Devicess New Hope in Sight. Totawas Humana Press Inc. 2007:71-93.
  • 7TAKESHI M, TAKASHI F, JUNoSUB C, et al. Transcorneal electrical stimulation promotes the survival of photore- ceptors and preserves retinal function in royal college of surgeons rats[J]. Investigative Ophthalmology and Visual Science, 2007, 48: 4725-4732.
  • 8BRELEN M E, DE POTTER P, GERSDORFF M, et al. Intraorbital implantation of a stimulating electrode for an optic nerve visual prosthesis[J]. Case report J Neurosurg, 2006, 104(4) :593-597.
  • 9陈虹,贾晨,刘鸣,王志华.人工关节内锆钛酸铅压电陶瓷供能与电路设计[J].清华大学学报(自然科学版),2008,48(1):128-131. 被引量:3
  • 10马官营,颜国正,何秀.基于电磁感应的消化道内微系统的无线供能[J].上海交通大学学报,2008,42(5):798-802. 被引量:17

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