We develop methodology that combines statistical learning methods with generalized Markov models, thereby enhancing the former to account for time series dependence. Our methodology can accommodate very general and very long-term time dependence structures in an easily estimable and computationally tractable fashion. We apply our methodology to the scoring of sleep behavior in mice. As methods currently used to score sleep in mice are expensive, invasive, and labor intensive, there is considerable interest in developing high-throughput automated systems which would allow many mice to be scored cheaply and quickly. Previous efforts at automation have been able to differentiate sleep from wakefulness, but they are unable to differentiate the ...
Second part of all the data for the paper "A probabilistic model for the ultradian timing of REM sle...
Michael J Rempe,1,2 William C Clegern,2 Jonathan P Wisor2 1Mathematics and Computer Science, Whitwor...
Three vigilance states dominate mammalian life: wakefulness, non-rapid eye movement (non-REM) sleep,...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
Sleep-stage analysis in mice and rats has received growing attention in recent years, due to the fac...
Rodents play an important role in sleep studies since they are the most easily available low-cost an...
A salient feature of mammalian sleep is the alternation between rapid eye movement (REM) and non-REM...
BACKGROUND: Scoring of wake-sleep states by trained investigators is a time-consuming task in many ...
BACKGROUND: Scoring of wake-sleep states by trained investigators is a time-consuming task in many ...
Background: Scoring of wake-sleep states by trained investigators is a time-consuming task in many s...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
Background: Scoring of wake-sleep states by trained investigators is a time-consuming task in many s...
Accurately determining the sleep stage of experimental subjects is a key step in sleep research. Des...
Accurately determining the sleep stage of experimental subjects is a key step in sleep research. Des...
Second part of all the data for the paper "A probabilistic model for the ultradian timing of REM sle...
Michael J Rempe,1,2 William C Clegern,2 Jonathan P Wisor2 1Mathematics and Computer Science, Whitwor...
Three vigilance states dominate mammalian life: wakefulness, non-rapid eye movement (non-REM) sleep,...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
Sleep-stage analysis in mice and rats has received growing attention in recent years, due to the fac...
Rodents play an important role in sleep studies since they are the most easily available low-cost an...
A salient feature of mammalian sleep is the alternation between rapid eye movement (REM) and non-REM...
BACKGROUND: Scoring of wake-sleep states by trained investigators is a time-consuming task in many ...
BACKGROUND: Scoring of wake-sleep states by trained investigators is a time-consuming task in many ...
Background: Scoring of wake-sleep states by trained investigators is a time-consuming task in many s...
We introduce the PrAGMaTiSt: Prediction and Analysis for Generalized Markov Time Series of States, a...
Background: Scoring of wake-sleep states by trained investigators is a time-consuming task in many s...
Accurately determining the sleep stage of experimental subjects is a key step in sleep research. Des...
Accurately determining the sleep stage of experimental subjects is a key step in sleep research. Des...
Second part of all the data for the paper "A probabilistic model for the ultradian timing of REM sle...
Michael J Rempe,1,2 William C Clegern,2 Jonathan P Wisor2 1Mathematics and Computer Science, Whitwor...
Three vigilance states dominate mammalian life: wakefulness, non-rapid eye movement (non-REM) sleep,...