Understanding changes and stability in the long-term use of technologies by seniors who are aging in place: a

S T M Peek1,2, K G Luijkx3, H J M Vrijhoef3,4,5,6

  • 1School of Social and Behavioral Sciences, Department of Tranzo, Tilburg University, Tilburg, The Netherlands. research@sebastiaanpeek.nl.

BMC Geriatrics
|August 30, 2019
PubMed
Abstract

Related Concept Videos

New Framework for Understanding Cross-Brain Coherence in Functional Near-Infrared Spectroscopy (fNIRS) Hyperscanning Studies05:59

New Framework for Understanding Cross-Brain Coherence in Functional Near-Infrared Spectroscopy (fNIRS) Hyperscanning Studies

Wavelet transform coherence (WTC) is a common methodology for assessing the coupling between signals that is used in functional near-infrared spectroscopy (fNIRS) hyperscanning studies. A toolbox for assessing the directionality of the signal interaction is presented in this...
3.3K
Understanding the Changes in Mitochondrial Morphology through Dynamic and Three-dimensional Fluorescence Micrographs08:15

Understanding the Changes in Mitochondrial Morphology through Dynamic and Three-dimensional Fluorescence Micrographs

Here we describe the mitochondrial event localizer (MEL), an ImageJ plugin useful in the quantification of the 3-dimensional changes in mitochondrial fission and fusion activity over time. We also describe an image processing pipeline useful for the cleanup of micrographs prior to analysis in...
1.0K
Robust Tissue Fabrication for Long-Term Culture of iPSC-Derived Brain Organoids for Aging Research08:20

Robust Tissue Fabrication for Long-Term Culture of iPSC-Derived Brain Organoids for Aging Research

The present protocol provides a step-by-step procedure for the reproducible generation, maintenance, and aging of cerebral organoids derived from human-induced pluripotent stem cells (iPSCs). This method enables culturing and maturing cerebral organoids for extended periods, which facilitates the modeling of processes involved in brain aging and age-related pathogenesis.
4.1K
Using Motion Capture Technology in the Instrumented Timed Up and Go Test to Detect the Risk of Falling in Aged Adults05:26

Using Motion Capture Technology in the Instrumented Timed Up and Go Test to Detect the Risk of Falling in Aged Adults

The instrumented Timed Up and Go (iTUG) test is gaining increasing attention in body sway and gait analysis with the development of new technologies. We present a protocol to analyze the subcomponents of the iTUG with motion...
1.7K
Long-term High-Resolution Intravital Microscopy in the Lung with a Vacuum Stabilized Imaging Window07:19

Long-term High-Resolution Intravital Microscopy in the Lung with a Vacuum Stabilized Imaging Window

This protocol describes the use of multiphoton microscopy to perform long-term high-resolution, single cell imaging of the intact lung in real time using a vacuum stabilized imaging window.
13.9K
Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis06:44

Age-dependent Dynamics of Locomotion in Caenorhabditis elegans: A Lyapunov Exponent Analysis

This study examines the effect of age on locomotion in C. elegans by measuring the largest Lyapunov exponent (LLE). As they age, C. elegans show an increase and subsequent decline in motor control. Results show a peak LLE at five days, followed by a decline as the worms...
513