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Heterogeneous vascular architecture, blood flow in the complex network of arteries and veins, varying metabolic heat generation rates and dependence of tissue properties on its physiological condition contribute to this complexity.
Myriad influencing factors at interacting levels (e.g., structural, organizational, innovation, health care provider, care recipient characteristics) contribute to this complexity [ 16].
Despite this finding, the authors concluded that it is difficult to identify a single NER biomarker to predict drug sensitivity and that the heterogeneity of tumors and the influence of NER-independent pathways probably contribute to this complexity.
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The extraordinary capacity of this virus to generate genetic diversity is another important factor contributing to this complexity.
We emphasize here three major points contributing to this complexity.
One important factor contributing to this complexity is horizontal gene transfer.
Contributing to this complexity, the composition of LCSs in foods and beverages and consumer preference for particular LCSs continue to change over time.
In such cases, rather than attempt to reconstruct a hybridization network, it may be more appropriate to formulate objective tests to better understand the complexity of the data and the extent to which hybridization contributes to this complexity.
However the eukaryotic transcriptome, and in particular the plant transcriptome, is far more complex than previously believed, alternative splicing and non coding transcripts being amongst the major causes contributing to this complexity.
Three conditions contributing to this complexity were mentioned: [ 1] the time limit to make the decision created a sense of urgency; [ 2] the consent for donation request was made immediately after the relative had heard that a beloved one had died or was expected to die of brain death, making it difficult to focus on the request, because relatives were grieving.
Epigenetic factors, which are often heritable, yet not part of the DNA sequence, are one element which may contribute to this etiologic complexity.
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