Mitochondrial Function In Vivo Evaluated by NADH Fluorescence
Mitochondrial Function In Vivo Evaluated by NADH Fluorescence
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In this review of Mitochondrial Function In Vivo Evaluated by NADH Fluorescence the reviewer finds a focused, technically detailed resource for scientists interested in metabolic imaging and tissue redox monitoring. The book is best for graduate students, biomedical engineers, and researchers who need a thorough treatment of NADH fluorescence technology and its biomedical applications; its single biggest strength is the combination of technological background and practical case studies that tie NADH signals to physiological and pathophysiological states.
Key Features
- Historical perspective: A clear discussion of the development of NADH fluorescence gives readers context for current methods and why they matter.
- Technical and biomedical balance: The book links instrumentation and measurement principles with practical applications in tissue and organ monitoring, aiding applied researchers.
- Multisite monitoring coverage: Treatments of multisite and multiparametric NADH monitoring explain approaches to capture spatially resolved metabolic responses in tissues.
- Human organ monitoring: Specific sections on monitoring NADH in the human brain and other organs show how fluorescence can be translated toward clinical and experimental studies.
- Redox and flavoprotein context: The inclusion of flavoprotein fluorescence and NADH relationships helps readers interpret redox state and metabolic signaling together.
- Targeted audience focus: The book is written for biomedical engineers, researchers, and graduate students, making it suitable for technical training and reference.
Who It's For
This book suits graduate students and researchers who are already familiar with basic cell biology and want a detailed primer on optical metabolic monitoring using NADH fluorescence. It is especially useful for biomedical engineers designing measurement systems and for investigators planning in vivo or clinical studies that correlate fluorescence with tissue metabolism.
Those seeking a general textbook on cell biology or an introductory primer for nontechnical audiences should look elsewhere, as the treatment assumes some familiarity with experimental methods and metabolic physiology and focuses on applied, instrument-centric material.
Pros & Cons
Pros
- Comprehensive linking of instrumentation to physiological interpretation helps translate measurements into meaningful biological conclusions.
- Coverage of multisite and multiparametric monitoring supports advanced experimental designs and comparative studies.
- Discussion of human brain and organ monitoring provides real-world context for clinical and translational research.
Cons
- The book is technical and assumes background knowledge, so it may be dense for readers without prior training in biomedical optics or metabolism.
Specifications
| Title | Mitochondrial Function In Vivo Evaluated by NADH Fluorescence |
| Author | Avraham Mayevsky |
| Scope | Technological development and biomedical applications of NADH fluorescence |
| Topics included | History, mitochondrial function, tissue-level responses, human organ monitoring |
| Special coverage | Flavoprotein fluorescence and NADH in relation to redox state |
| Intended audience | Biomedical engineers, researchers, graduate students |
Our Verdict
For researchers and graduate students focused on metabolic imaging, this book is a valuable, well-focused reference that pairs instrumentation detail with biomedical examples, making it good value for those planning in vivo NADH work or translating measurements to tissue physiology.
Frequently Asked Questions
Does this book cover clinical monitoring?
Yes; it includes discussion of monitoring NADH in the human brain and other organs and the implications for translational studies.
Is prior technical knowledge required?
The text assumes familiarity with experimental methods and metabolic physiology, so some background in biomedical optics or cell biology is helpful.
Does it address other fluorescence signals?
Yes; it contains an in-depth look at flavoprotein fluorescence and how Fp relates to NADH and redox state.
Editor's Take
A focused, technical reference tying NADH fluorescence instrumentation to biomedical applications; ideal for researchers and graduate students designing in vivo metabolic studies.

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