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The parameters for affine and nonlinear transformation into a template of T1-weighted images that was already fitted to a standard stereotaxic space (Montreal Neurological Institute [MNI] template) were estimated based on the high-resolution 3D T1-weighted MR images using the least-square means (Friston et al. 1995b).
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The interpore spacing in the template was estimated at approximately 15 nm. Figure 1c clearly shows Ti grains in the sputtered titanium layer with a thickness of 100 nm before aluminum layer deposition.
A novel single-lead f-wave extraction algorithm based on the modern diffusion geometry data analysis framework is proposed.The algorithm is essentially an averaged beat subtraction algorithm, where the ventricular activity template is estimated by combining a newly designed metric, the 'diffusion distance', and the non-local Euclidean median based on the non-linear manifold setup.
For the single test sample, significance of the proximity to template is estimated as a nominal p-value based on a null distribution for the distance d generated by randomly resampling nA+nB genes from the N genes multiple times (default is 1,000 times).
Each sample was analyzed in triplicates, and the amounts of templates were estimated by linear regression against the known standard and normalized to internal control.
The templates are estimated using a Monte Carlo version of the online Expectation Maximization (EM) algorithm.
The density of the InN nanocolumns without the AAO templates was estimated to be 8 × 109 cm−2.
The density of the InN nanocolumns with the AAO templates was estimated to be 1 × 109 cm−2.
In [83], this idea was developed further so that the position vectors of the landmark templates are estimated using the Bayesian formulation.
The density of the transferred upside down InN nanocolumns with the AAO templates was estimated to be 1.1 × 1010 cm−2, which was in agreement with the density of the AAO template pores as shown in Fig. 2a.
Plasmid DNA template concentrations were estimated using a Pearl Nanophotometer (Implen, GmbH, Germany), diluted to approximately 10−3 ng μl−1, and five log10 serial dilutions were constructed to generate standard curves and test the accuracy and precision of the assay.
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