Time Function

A time function is a mathematical description of how a quantity changes as time progresses, making it fundamental to analyzing dynamic systems in engineering. By representing variables such as displacement, temperature, voltage, or pressure as functions of time, engineers can use derivatives to describe rates of change and differential equations to model system behavior. Time functions support the analysis of transient and steady-state responses, signal variation, control-system performance, and system stability. They also provide a basis for simulation, measurement interpretation, and design decisions across mechanical, electrical, civil, and chemical engineering applications.

Time Function - Related Videos

Research

JoVE Journal - Neuroscience

Recording Human Electrocorticographic (ECoG) Signals for Neuroscientific Research and Real-time Functional Cortical Mapping

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Cited by 134 •

2012

We present a method for collecting electrocorticographic signals for research purposes from humans who are undergoing invasive epilepsy monitoring. We show how to use the BCI2000 software platform for data collection, signal processing and stimulus presentation. Specifically, we demonstrate SIGFRIED, a BCI2000-based tool for real-time functional brain mapping.

Real-Time, Noninvasive Evaluation of Mitochondrial Function Using Resonance Raman Spectroscopy

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2026

We present a noninvasive, real-time method for monitoring mitochondrial health using Resonance Raman Spectroscopy (RRS). We used RRS to quantify mitochondrial redox states and developed a metric for mitochondrial health, the Resonance Raman reduced mitochondrial ratio (3RMR), which shows a faster response to changes in oxygenation than traditional blood-gas analytes.

Research

JoVE Journal - Biochemistry
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Measuring Nucleotide Binding to Intact, Functional Membrane Proteins in Real Time

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Cited by 3 •

2021

This protocol presents a method for measuring adenine nucleotide binding to receptors in real time in a cellular environment. Binding is measured as Förster resonance energy transfer (FRET) between trinitrophenyl nucleotide derivatives and protein labeled with a non-canonical, fluorescent amino acid.

Ultrafast Time-resolved Near-IR Stimulated Raman Measurements of Functional π-conjugate Systems

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2020

Details of signal generation and optimization, measurement, data acquisition, and data handling for a femtosecond time-resolved near-IR stimulated Raman spectrometer are described. A near infrared stimulated Raman study on the excited-state dynamics of β-carotene in toluene is shown as a representative application.

Real-Time Fluorescent Measurement of Synaptic Functions in Models of Amyotrophic Lateral Sclerosis

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Cited by 3 •

2021

Two related methods are described to visualize subcellular events required for synaptic transmission. These protocols enable the real-time monitoring of the dynamics of presynaptic calcium influx and synaptic vesicle membrane fusion using live-cell imaging of in vitro cultured neurons.

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