PERIPHERAL NERVE REGENERATION: A Follow-up Study of 3,656 World War II Injuries. Edited by Barnes Woodhall, M.D., Professor of Neurosurgery, Duke University Medical School, Durham, North Carolina; and Gilbert W. Beebe, Ph.D., Statistician, Follow-up Agency Division of Medical Sciences National Research Council. 9x5½ in. Pp. xxiv+67l, with 22 figures, 60 plates and 286 tables. Index. 1956. Washington, D.C.: United States Government Printing Office. Price $3.75 [PDF]
Roland Barnes
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A poly(hydroxy‐oxazolidone) (PHOx) is synthesized from CO2‐based precursors, enabling the up‐cycling of this waste material. After synthesis, PHOx shows thermoplastic properties, and can therefore be processed by many temperature‐dependent techniques. PHOx is hemocompatible, anti‐adhesive, and biocompatible, which is demonstrated in vitro and in vivo ...
Sofia F. Melo+11 more
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Synthetic Aspects and Characterization Needs in MOF Chemistry – from Discovery to Applications
Overcoming the challenges of phase discovery, synthesis optimization and scale‐up, characterization, and computational studies is essential to accelerate the large‐scale application of MOFs. Life‐cycle analyses and techno‐economic analyses need to be performed to realistically assess their potential for industrial relevance.
Bastian Achenbach+4 more
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SURGICAL PRINCIPLES UNDERLYING THE USE OF GRAFTS IN THE REPAIR OF PERIPHERAL NERVE INJURIES
Loyal Davis+2 more
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Machine‐Learning‐Aided Advanced Electrochemical Biosensors
Electrochemical biosensors are highly sensitive, portable, and versatile. Advanced nanomaterials enhance their performance, while machine learning (ML) improves data analysis, minimizes interference, and optimizes sensor design. Despite progress in both fields, their combined potential in diagnostics remains underexplored.
Andrei Bocan+9 more
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‘Sensitization’ by injury of the cutaneous nerve endings in the frog
Francis A. Echlin, Nicolay Propper
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THE ASSESSMENT OF HAND FUNCTION AFTER PERIPHERAL NERVE INJURIES [PDF]
Ruth E. M. Bowden, J. R. Napier
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This review highlights recent progress in piezoelectric materials for regenerative medicine, emphasizing their ability to convert mechanical stimuli into bioelectric signals that promote tissue repair. Key discussions cover the intrinsic piezoelectric properties of biological tissues, co‐stimulation cellular mechanisms for tissue regeneration, and ...
Xinyu Wang+3 more
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Carbon‐based piezoelectric materials are systematically categorized based on their structural and functional properties. The mechanisms of stress‐induced charge transfer are elucidated, and their applications are explored across three key domains: piezoelectric catalysis for energy conversion and environmental remediation, piezoelectric biomedical ...
Mude Zhu+3 more
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