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The morphological variations were successfully controlled by secondary growth time and the plausible formation mechanisms of these hierarchical ZnO architectures were explained based on the experiment analysis.
No appreciable structural and morphological variations were detected for POPG (1-palmitoyl-2-oleoyl-sn-glycero-3-phospho-glycerol) liposomes, as expected from the high negative charge density both of liposomal surface and of the poly or oligonucleotide.
The morphological variations were examined by TEM, and the untreated cells before dark cultivation were served as the control (Figure 5A).
However, some morphological variations were noted in the An.
These qualitative morphological variations were consistent with the paired histological sections in the current study).
Slight morphological variations were evident, as described by previous Golgi studies (Vogt and Peters 1981; Fig. 5 in Wyss et al. 1990).
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Finally, biological and technological implications of such morphological variations are briefly mentioned.
The morphological variations are also corroborated by scanning force microscopy and optical phase contrast microscopy.
Smooth morphological variations are also frequently seen in nature particularly in bone and cartilage structures and can be inspiring for designing of artificial tissues.
Therefore, knowledge of their presence and morphological variations is important to prevent misinterpreting them as fractures a common error.
Interestingly, several morphological variations are directly provided by SNOMED descriptions.
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