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This imaging textbook covers in detail the beginning of neuromolecular imaging from in vivo electrochemistry. It discusses how neuromolecular imaging solved the persistent problem of electrocatalysis with empirical recording with the new imaging nanotechnology and circuits designed by the author.
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This imaging textbook covers in detail the beginning of neuromolecular imaging from in vivo electrochemistry. It discusses how neuromolecular imaging solved the persistent problem of electrocatalysis with empirical recording with the new imaging nanotechnology and circuits designed by the author.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 400
- Erscheinungstermin: 16. April 2025
- Englisch
- ISBN-13: 9780429639050
- Artikelnr.: 73429900
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 400
- Erscheinungstermin: 16. April 2025
- Englisch
- ISBN-13: 9780429639050
- Artikelnr.: 73429900
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Patricia A. Broderick is a full medical professor with tenure at the City University of New York Medical School, USA, principal and founder of Eazysense Nanotechnologies Inc. and the Broderick Brain Foundation Inc., and inventor of the BRODERICK PROBE® series of nanobiosensors. A PhD in pharmacology from St. John's University, College of Arts and Sciences, New York, USA, with expertise in atomic absorption photometry and fluorescent spectrometry steered her inventive neuroimaging art to fruition in the Albert Einstein College of Medicine and Cornell University Med. Ctr., New York, USA. She has published and patented extensively and is the recipient of prestigious honors from organizations such as Inner Circle Executives, Acquisitions International Global/Corporate America, International Association of Top Professionals, and National Association of Distinguished Professionals. Prof. Broderick serves on the editorial boards of several international journals.
1. Laser Nanosensors for LIVE Imaging: A World of Polymers. 2. A Remarkable
Happening in the Advent of In Vivo Electrochemistry into Spectral Analysis.
3. Oxidative Stress: A Time-Sensitive Detection Proxy for Electrocatalysis
of Ascorbate. 4. Broderick Is Thinking: Attention to Sensors and No
Attention to Sensor Drivers? 5. Nanobionics: Electrocalalysis Solved -
Proof of Concept. 6. Lipid biomimetics: A Nano-Microscope in the BRODERICK
PROBE®. 7. Sex-Dependent Schizophrenia from Cocaine Addiction: Brain Reward
from the Auditory Circuit. 8. Sex-Specific Synaptic Signals While the
Subject Walks: The Mesolimbic Brain Reward Circuit. 9. Sex-Specific
Intricacies in Brain Reward: Adenosine Streams Estrus. 10. Myths Dispelled!
A Synchronously Rhythmic Brain Defines Wellness Distinct from Disease:
Sensing Mobility - The Decode. 11. Temporal Asynchrony in Epilepsy: The
Ultimate Rhythmic Temporal Synchrony in the Epileptic Orgasm. 12.
Nanosensing Subtypes for the Temporal Lobe Epilepsy in Patients. 13. The
Broderick Nanoprobe: A Theragnostic Imaging Device. 14. The Next Generation
of White Matter Imaging Techniques is a Nanotechnology. 15. Aging and the
Dementias. 16. The Living Legacy.
Happening in the Advent of In Vivo Electrochemistry into Spectral Analysis.
3. Oxidative Stress: A Time-Sensitive Detection Proxy for Electrocatalysis
of Ascorbate. 4. Broderick Is Thinking: Attention to Sensors and No
Attention to Sensor Drivers? 5. Nanobionics: Electrocalalysis Solved -
Proof of Concept. 6. Lipid biomimetics: A Nano-Microscope in the BRODERICK
PROBE®. 7. Sex-Dependent Schizophrenia from Cocaine Addiction: Brain Reward
from the Auditory Circuit. 8. Sex-Specific Synaptic Signals While the
Subject Walks: The Mesolimbic Brain Reward Circuit. 9. Sex-Specific
Intricacies in Brain Reward: Adenosine Streams Estrus. 10. Myths Dispelled!
A Synchronously Rhythmic Brain Defines Wellness Distinct from Disease:
Sensing Mobility - The Decode. 11. Temporal Asynchrony in Epilepsy: The
Ultimate Rhythmic Temporal Synchrony in the Epileptic Orgasm. 12.
Nanosensing Subtypes for the Temporal Lobe Epilepsy in Patients. 13. The
Broderick Nanoprobe: A Theragnostic Imaging Device. 14. The Next Generation
of White Matter Imaging Techniques is a Nanotechnology. 15. Aging and the
Dementias. 16. The Living Legacy.
1. Laser Nanosensors for LIVE Imaging: A World of Polymers. 2. A Remarkable
Happening in the Advent of In Vivo Electrochemistry into Spectral Analysis.
3. Oxidative Stress: A Time-Sensitive Detection Proxy for Electrocatalysis
of Ascorbate. 4. Broderick Is Thinking: Attention to Sensors and No
Attention to Sensor Drivers? 5. Nanobionics: Electrocalalysis Solved -
Proof of Concept. 6. Lipid biomimetics: A Nano-Microscope in the BRODERICK
PROBE®. 7. Sex-Dependent Schizophrenia from Cocaine Addiction: Brain Reward
from the Auditory Circuit. 8. Sex-Specific Synaptic Signals While the
Subject Walks: The Mesolimbic Brain Reward Circuit. 9. Sex-Specific
Intricacies in Brain Reward: Adenosine Streams Estrus. 10. Myths Dispelled!
A Synchronously Rhythmic Brain Defines Wellness Distinct from Disease:
Sensing Mobility - The Decode. 11. Temporal Asynchrony in Epilepsy: The
Ultimate Rhythmic Temporal Synchrony in the Epileptic Orgasm. 12.
Nanosensing Subtypes for the Temporal Lobe Epilepsy in Patients. 13. The
Broderick Nanoprobe: A Theragnostic Imaging Device. 14. The Next Generation
of White Matter Imaging Techniques is a Nanotechnology. 15. Aging and the
Dementias. 16. The Living Legacy.
Happening in the Advent of In Vivo Electrochemistry into Spectral Analysis.
3. Oxidative Stress: A Time-Sensitive Detection Proxy for Electrocatalysis
of Ascorbate. 4. Broderick Is Thinking: Attention to Sensors and No
Attention to Sensor Drivers? 5. Nanobionics: Electrocalalysis Solved -
Proof of Concept. 6. Lipid biomimetics: A Nano-Microscope in the BRODERICK
PROBE®. 7. Sex-Dependent Schizophrenia from Cocaine Addiction: Brain Reward
from the Auditory Circuit. 8. Sex-Specific Synaptic Signals While the
Subject Walks: The Mesolimbic Brain Reward Circuit. 9. Sex-Specific
Intricacies in Brain Reward: Adenosine Streams Estrus. 10. Myths Dispelled!
A Synchronously Rhythmic Brain Defines Wellness Distinct from Disease:
Sensing Mobility - The Decode. 11. Temporal Asynchrony in Epilepsy: The
Ultimate Rhythmic Temporal Synchrony in the Epileptic Orgasm. 12.
Nanosensing Subtypes for the Temporal Lobe Epilepsy in Patients. 13. The
Broderick Nanoprobe: A Theragnostic Imaging Device. 14. The Next Generation
of White Matter Imaging Techniques is a Nanotechnology. 15. Aging and the
Dementias. 16. The Living Legacy.