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Data from: Ultraconserved element (UCE) probe set design: base genome and initial design parameters critical for optimization
负责人:
关键词:
ultraconserved elements;genomics;phylogenetics;probe design;phylogenomics;bait design
DOI:
doi:10.5061/dryad.2f62927
摘要:
probe design. Despite the success of UCEs, it is becoming increasing apparent that diverse lineages require probe sets tailored to focal taxa in order to improve
Data from: A revised design for microarray experiments to account for experimental noise and uncertainty of probe response
负责人:
关键词:
microarray calibration;Mus musculus;probe response;copy number variation;Freundlich isotherm;noise;Langmuir isotherm
DOI:
doi:10.5061/dryad.57ms3
摘要:
s, we investigate here a revised design for microarray experiments that addresses both of these sources of variance. Results: Two custom arrays were used to evaluate
Data from: Robust design for coalescent model inference
负责人:
关键词:
population genetic inference;structured coalescent;Experimental design;sequential Markovian coalescent;Coalescent Theory;skyline models
DOI:
doi:10.5061/dryad.n7rm21c
摘要:
ve literature on coalescent inference methodology, there is comparatively little work on experimental design. The research that does exist is largely si
Data from: Exploring density and frequency dependent interactions experimentally: an R program for generating hexagonal fan designs.
负责人:
关键词:
Species Interactions;diversity;frequency
DOI:
doi:10.6078/D1PQ5M
摘要:
h experiments can be difficult to plan and implement.
  • This study presents an R program whereby the user can rapidly view a variety of designs
    Data from: Low-cost fluctuating-temperature chamber for experimental ecology
    负责人:
    关键词:
    DOI:
    doi:10.5061/dryad.v9p27
    摘要:
    expensive to purchase, requires a large amount of space and consumes a great deal of energy. We developed and validated a design for economical, program
    Data from: From the track to the ocean: using flow control to improve marine bio-logging tags for cetaceans
    负责人:
    Shorter, K. Alex
    关键词:
    hydrodynamic design Venturi channel wing force reduction CFD PIV drag force lift force
    DOI:
    doi:10.5061/dryad.4j4m1
    摘要:
    to experimentally characterize the flow around the tag design. The results of these experiments confirm the trends predicted by the simulations and demonstrate
    Data from: The power and promise of RNA-seq in ecology and evolution
    负责人:
    关键词:
    biological replication differential expression experimental design power analysis RNA sequencing Transcriptomics
    DOI:
    doi:10.5061/dryad.vp42s
    摘要:
    of technology and experimental design may be initially neglected. Here, we review these issues with regard to RNA sequencing (RNA-seq). RNA-seq adds large-scale
    Data from: The relative power of genome scans to detect local adaptation depends on sampling design and statistical method
    负责人:
    关键词:
    range expansion;spatial statistics;Landscape Genetics;Adaptation;genome scans;sampling design
    DOI:
    doi:10.5061/dryad.mh67v
    摘要:
    e a firm grasp on how sampling design and demographic history affect the performance of genome scans on complex landscapes. To explore these issues
    Data from: Zooming in on mechanistic predator-prey ecology: integrating camera traps with experimental methods to reveal the driver
    负责人:
    关键词:
    Antipredator Behavior;camera trap;detection;experiments;landscape of fear;recognition;prey selection;predator-prey-interaction;Study design
    DOI:
    doi:10.25338/B8802Q
    摘要:
    of predator-prey interactions, the capacity for observational studies to identify mechanistic drivers of species interactions is limited. 2. Experimental study designs tha
    Data from: How do climate change experiments alter plot-scale climate?
    负责人:
    关键词:
    Feedback;target temperature;spring phenology;budburst;Global warming;Microclimate;structural control;direct and indirect effects;soil moisture;hidden treatment;active\u2010warming;warming experiment
    DOI:
    doi:10.5061/dryad.p46k773
    摘要:
    to temperature. We provide recommendations for future analyses, experimental design, and data sharing to improve our mechanistic understanding from climate change

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