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1 We assume the reads density to be a step function.
2 ith a finite temperature range rather than a step function.
3 asured by observing the response to an input step function and is well-modeled as a monoexponential.
6 mathematical model that utilizes a Heaviside step function, as well as a pin-force model to compute t
7 by being in the nosepoke did not shift, but step functions based on response rate changed with incre
8 e coral populations, and offering a possible step-function change in coral recruitment success that c
9 herefore, TRPA1/TRPswitch represents a novel step-function chemo-optogenetic system with a unique com
10 We use simple flow technology to create a step-function concentration profile inside an optical sa
11 aled a similar pattern: Position of response step functions defined by being in the nosepoke did not
13 tremely cooperative transition-approaching a step function-from existence as a slightly self-associat
17 with a future, similar event would lead to a step-function increase in impacts on infrastructure.
19 the electric current signal and a predefined step function is an effective method for detecting chang
20 potentials and can be engineered to display step-function kinetics for stable inhibition, outlasting
21 nscribes target genes such as hunchback in a step-function-like pattern; the expression domain is uni
23 modeling based on integral equations and the step function method, resulting in derivation of a singl
24 e heat flow data from experiments, while the step function model tends to overestimate the rectificat
26 is jump in choice-related firing resembled a step function more than it did the output of a standard
27 of spontaneous recurrent seizures was not a step function of time (as implied by the "latent period"
29 ptic alteration, we expressed the stabilized step function opsin (SSFO) in the mPFC; optogenetic stim
30 he unique channel kinetics of the stabilized step function opsin (SSFO), protracted stimulation of th
32 vercomes this challenge, we engineered a new step-function opsin with ultra-high light sensitivity (S
33 Natronomonas pharaonis halorhodopsin and the step-function opsin), which we characterized electrophys
34 ugh convolution of the Lorentzian IRF with a step function representing the ideal junction separating
36 with transcript abundance following a 'lazy step function' similar to that in bacteria and yeast.
37 ta preprocessing, dietaryindex also offers 1-step functions that directly reference common datasets a
38 ession (both time-dependent coefficients and step functions) was used to estimate the time-varying as