Implantable Neural Prostheses 1: Devices and Applications - Expert
Implantable Neural Prostheses 1: Devices and Applications - Expert
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In this review of Implantable Neural Prostheses 1: Devices and Applications, the reviewer finds a focused, technically grounded resource for engineers and clinicians engaged with restoring neural function. The book collects current work on implantable sensory and motor prosthetic devices and emphasizes practical advances in design and application, making it most useful for biomedical engineers, neuroscientists, and medical specialists who need a concise reference on visual implants, cochlear devices, and brainmachine interfaces.
Key Features
- Comprehensive device coverage: Describes both sensory and motor prosthetic devices, helping readers compare technologies such as visual implants and cochlear implants.
- Emphasis on applications: Focuses on how devices are used clinically, which aids clinicians in understanding real-world performance and patient impact.
- State-of-the-art techniques: Reviews modern techniques in implant design and signal interfacing that are relevant to researchers developing next-generation prostheses.
- Interdisciplinary perspective: Brings together biomedical engineering and neuroscience viewpoints to clarify design tradeoffs and research directions.
- Part of a series: As part one of a two-book set, it situates device discussion within a broader context of biological and medical physics advances.
Who It's For
The book is well suited to biomedical engineers, graduate students, and neuroscientists who need a technical overview of implantable neural prosthetic devices and their clinical uses. Practicing clinicians and device developers will find the application-centered chapters helpful when evaluating design choices and therapy outcomes.
Researchers seeking step-by-step engineering blueprints or patient-level rehabilitation protocols may need complementary texts; this volume emphasizes device techniques and applications rather than detailed surgical procedures or extended patient case studies.
Pros & Cons
Pros
- Consolidates descriptions of sensory and motor prostheses into one accessible reference for technology comparison.
- Highlights practical applications, which helps translate engineering advances into clinical context.
- Includes modern interface and stimulation techniques relevant to brainmachine interface research.
Cons
- As a focused technical volume, it may not provide exhaustive surgical or rehabilitation detail for practitioners seeking step-by-step clinical protocols.
Specifications
| Title | Implantable Neural Prostheses 1: Devices and Applications |
| Series | Biological and Medical Physics, Biomedical Engineering |
| Editors/Authors | David Zhou, Elias Greenbaum |
| Scope | Sensory prosthetic devices and motor prosthetic devices |
| Covered devices | Visual implants, cochlear implants, auditory midbrain implants, spinal cord stimulators, deep brain stimulation |
| Volume | Part one of a two-book series |
Our Verdict
Implantable Neural Prostheses 1 is a valuable, application-oriented technical reference for engineers and neuroscientists focused on restorative neural devices. It offers clear coverage of device classes and modern interface techniques, making it good value for professionals seeking a concise synthesis of current advances without expecting exhaustive clinical procedural detail.
Frequently Asked Questions
Does this volume cover cochlear implants?
Yes; cochlear implants are discussed alongside other sensory prosthetic devices to compare design and application.
Is surgical technique detailed in the book?
The focus is on devices and applications rather than step-by-step surgical procedures, so readers should consult clinical surgical texts for operative detail.
Who edited this book?
The volume is edited by David Zhou and Elias Greenbaum as part one of a two-book series in biomedical engineering.
Editor's Take
Implantable Neural Prostheses 1 is a focused, application-oriented reference that consolidates modern device techniques and clinical uses, making it valuable for biomedical engineers and neuroscientists who need a concise synthesis of current advances.

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