Intelligent Biomechatronics in Neurorehabilitation
暫譯: 神經復健中的智能生物機電技術

Hu, Xiaoling

  • 出版商: Academic Press
  • 出版日期: 2019-10-22
  • 售價: $5,470
  • 貴賓價: 9.5$5,197
  • 語言: 英文
  • 頁數: 220
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 0128149426
  • ISBN-13: 9780128149423
  • 海外代購書籍(需單獨結帳)

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商品描述

Intelligent Biomechatronics in Neurorehabilitation presents global research and advancements in intelligent biomechatronics and its applications in neurorehabilitation. The book covers our current understanding of coding mechanisms in the nervous system, from the cellular level, to the system level in the design of biological and robotic interfaces. Developed biomechatronic systems are introduced as successful examples to illustrate the fundamental engineering principles in the design. The third part of the book covers the clinical performance of biomechatronic systems in trial studies. Finally, the book introduces achievements in the field and discusses commercialization and clinical challenges.

As the aging population continues to grow, healthcare providers are faced with the challenge of developing long-term rehabilitation for neurological disorders, such as stroke, Alzheimer's and Parkinson's diseases. Intelligent biomechatronics provide a seamless interface and real-time interactions with a biological system and the external environment, making them key to automation services.

  • Written by international experts in the rehabilitation and bioinstrumentation industries
  • Covers the current understanding of nervous system coding mechanisms, which are the basis for biological and robotic interfaces
  • Demonstrates and discusses robotic rehabilitation effectiveness and automatic evaluation

商品描述(中文翻譯)

《智能生物機電學在神經復健中的應用》展示了智能生物機電學的全球研究與進展,以及其在神經復健中的應用。本書涵蓋了我們對神經系統編碼機制的當前理解,從細胞層面到系統層面,並在生物與機器人介面的設計中進行探討。已開發的生物機電系統作為成功的範例被介紹,以說明設計中的基本工程原則。本書的第三部分涵蓋了生物機電系統在臨床試驗中的表現。最後,本書介紹了該領域的成就,並討論了商業化和臨床挑戰。

隨著老年人口的持續增長,醫療提供者面臨著為神經系統疾病(如中風、阿茲海默症和帕金森病)開發長期復健的挑戰。智能生物機電學提供了與生物系統及外部環境之間的無縫介面和即時互動,使其成為自動化服務的關鍵。

- 由國際復健和生物儀器行業的專家撰寫
- 涵蓋了神經系統編碼機制的當前理解,這是生物和機器人介面的基礎
- 演示並討論機器人復健的有效性和自動評估