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1.
Brain Behav ; 6(12): e00578, 2016 12.
Article in English | MEDLINE | ID: mdl-28032001

ABSTRACT

BACKGROUND: It remains a surgical challenge to treat high-grade nerve injuries of the upper extremity. Extra-anatomic reconstructions through the transfer of peripheral nerves have gained clinical importance over the past decades. This contribution outlines the anatomic and histomorphometric basis for the transfer of the superficial branch of the radial nerve (SBRN) to the median nerve (MN) and the superficial branch of the ulnar nerve (SBUN). METHODS: The SBRN, MN, and SBUN were identified in 15 specimens and the nerve transfer performed. A favorable site for coaptation was chosen and its location described using relevant anatomical landmarks. Histomorphometric characteristics of donor and target were compared to evaluate the chances of a clinical success. RESULTS: A suitable location for dissecting the SBRN was identified prior to its first bifurcation. Coaptations were possible near the pronator quadratus muscle, approximately 22 cm distal to the lateral epicondyle of the humerus. The MN and SBUN had to be dissected interfasciculary over 82 ± 5.7 mm and 49 ± 5.5 mm, respectively. Histomorphometric analysis revealed sufficient donor-to-recipient axon ratios for both transfers and identified the SBRN as a suitable donor with high axon density. CONCLUSION: Our anatomic and histomorphometric results indicate that the SBRN is a suitable donor for the MN and SBUN at wrist level. The measurements show feasibility of this procedure and shall help in planning this sensory nerve transfer. High axon density in the SBRN identifies it or its branches an ideal candidate for sensory reanimation of fingers and thumbs.


Subject(s)
Hand/innervation , Median Nerve/surgery , Nerve Transfer/methods , Radial Nerve/transplantation , Ulnar Nerve/surgery , Hand/surgery , Humans , Median Nerve/anatomy & histology , Radial Nerve/anatomy & histology , Tissue Donors , Ulnar Nerve/anatomy & histology
2.
Analyst ; 140(22): 7518-21, 2015 Nov 21.
Article in English | MEDLINE | ID: mdl-26465756

ABSTRACT

This paper describes a novel double-stranded DNA detection method through resonance between SYBR Green I and DNA with the surface-enhanced resonance Raman scattering (SERRS) assay, which opens an avenue to the quantitative and reliable application of SERRS in DNA detection.


Subject(s)
DNA/analysis , Fluorescent Dyes/chemistry , Organic Chemicals/chemistry , Polymerase Chain Reaction/methods , Spectrum Analysis, Raman/methods , Benzothiazoles , Diamines , Quinolines
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