A Polymer Cochlear Electrode Array: Atraumatic Deep Insertion, Tripolar Stimulation, and Long-Term Reliability (Springer Theses)
Language: English
Published by Springer 01/n /04 J, 2018
- Hardcover
- Used

Seller: Bahamut Media, Reading, United KingdomBahamut Media
AbeBooks seller since August 15, 2012
Condition: Used - Very good
US$ 4.47
Quantity: 1 available
Add to basketItem description from seller
Seller Inventory # 6545-9789811304712
- Title
- A Polymer Cochlear Electrode Array: Atraumatic Deep Insertion, Tripolar Stimulation, and Long-Term Reliability (Springer Theses)
- Author
- Tae Mok Gwon
- Publisher
- Springer 01/n /04 J
- Publication year
- 2018
- Condition
- Very Good
- Binding
- Hardcover
- Language
- English
- ISBN 10
- 9811304718
- ISBN 13
- 9789811304712
- Series
- Book 446 of 797: Springer Theses
This book describes the design, fabrication and evaluation of a polymer-based neural interface for a cochlear electrode array, reviewed in terms of fabrication process, functionality, and reliability. Polymer-based devices have attracted attention in the neural prosthetic field due to their flexibility and compatibility with micro-fabrication process. A liquid crystal polymer (LCP) is an inert, highly water-resistant polymer suitable for the encapsulation of electronic components and as a substrate material for fabricating neural interfaces. The author has designed, fabricated, and evaluated an LCP-based cochlear electrode array for an improved polymer-based cochlear implant. The thesis deals with 3 key topics: atraumatic deep insertion, tripolar stimulation, and long-term reliability. Atraumatic insertion of the intracochlear electrode and resulting preservation of residual hearing have become essential in state–of-the-art cochlear implantation. A novel tapered design of anLCP-based cochlear electrode array is presented to meet such goals. For high-density and pitch-recognizable cochlear implant, channel interaction should be avoided. Local tripolar stimulation using multi-layered electrode sites are shown to achieve highly focused electrical stimulation. This thesis addresses another vital issue in the polymer-based neural implants: the long-term reliability issue. After suggesting a new method of forming mechanical interlocking to improve polymer-metal adhesion, the author performs accelerating aging tests to verify the method’s efficacy. The aforementioned three topics have been thoroughly examined through various in vitro and in vivo studies. Verification foresees the development of LCP-based cochlear electrode array for an atraumatic deep insertion, advanced stimulation, and long-term clinical implant.
"Synopsis" may belong to another edition of this title.
About the Author
Dr. Tae Mok Gwon was a member of the NanoBio-electronics & Systems Laboratory, Department of Electrical and Computer Engineering, Seoul National University, Korea. He is currently a Senior engineer at Semiconductor R&D center, Samsung Electronics Co., Ltd..
"About the title" may belong to another edition of this title.
Bahamut Media
Reading, United Kingdom
AbeBooks seller since August 15, 2012
Shipping rates from United Kingdom to U.S.A.
| Item | 4 to 15 business days | 4 to 15 business days |
|---|---|---|
| First item | US$ 9.43 | US$ 9.43 |
Payment methods
Seller's business information
WRAP Ltd
Unit 4, 119 Loverock Rd
Reading, United Kingdom RG30 1DZ
Terms of sale
We guarantee the condition of every book as it's described
on the Abebooks web sites. If you're dissatisfied with your
purchase (Incorrect Book/Not as Described/Damaged) or if the
order hasn't arrived, you're eligible for a refund within 30
days of the estimated delivery date. If you've changed your
mind about a book that you've ordered, please use the Ask
bookseller a question link to contact us and we'll respond
within 2 business days.
Shipping terms
All books will normally be shipped within 1 working day of being ordered. We provide the best shipping rates we can to each country and you can rest assured that if you are not happy with anything you receive, you have a 100% money-back guarantee with us.