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Kuo, J.T.W. et al. Novel flexible Parylene neural probe with 3D sheath structure for enhancing tissue integration.
We discuss the sheath structure by comparing it to that in front of a planar target.
From the ion sheath evolution, it is also found that the sheath structure changes with time.
After removing solvent and subsequent temperature treatment, the FePc sheath structure changes from bead structure to rose thorns-like structure.
Therefore, we used X-ray diffraction (XRD) to investigate more subtle changes in myelin sheath structure from unfixed nerves.
The results revealed that higher fiber-pulling speed was crucial to promote the formation of sheath structure.
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The measured charge transfer resistance, RCT, is 8.2 and 7.2 Ω cm2, respectively, for 2- and 4-h etched PPy nanotube structured electrodes, which is not much different from that of the unetched ZnO nanorod core-PPy sheath structured electrode.
Therefore, core/shell(or sheath)structures, such as nanocables, have attracted recent research focused on nanodevice applications such as field-effect transistors (FET) and light-emitting diodes (LED) [6, 7].
After 2-h etching with narrow (33 ± 3 nm) PPy nanotube opening and after 4-h etching with open pore interconnected PPy nanotube formation the recorded shifts in knee frequency are 0.16 and 1.07 Hz, respectively, compared to the knee frequency of 0.032 Hz for unetched ZnO nanorod-PPy sheath structured electrode.
We found that 3 days after injury, some of myelin sheath structures disintegrated and 1 week after injury, myelin sheath structures barely existed.
Myelin sheath structures were similar to the control and normal structures.
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