scholarly journals PILOTING A VIRTUAL REALITY APPLICATION TO PROMOTE EXECUTIVE FUNCTION AND COMMUNITY MOBILITY IN AGING ADULTS

2018 ◽  
Vol 2 (suppl_1) ◽  
pp. 863-863
Author(s):  
M Carlson ◽  
T Chan ◽  
A Adam ◽  
O Ahmad ◽  
P Roy ◽  
...  
2013 ◽  
Author(s):  
Ellie Perniskie ◽  
Nic Ward ◽  
John Dalrymple-Alford ◽  
Joyce Alberts ◽  
Ashok Jansari ◽  
...  

2020 ◽  
Vol 4 (Supplement_1) ◽  
pp. 287-288
Author(s):  
Jeffrey Hausdorff ◽  
Nofar Schneider ◽  
Marina Brozgol ◽  
Pablo Cornejo Thumm ◽  
Nir Giladi ◽  
...  

Abstract The simultaneous performance of a secondary task while walking (i.e., dual tasking) increases motor-cognitive interference and fall risk in older adults. Combining transcranial direct current stimulation (tDCS) with the concurrent performance of a task that putatively involves the same brain networks targeted by the tDCS may reduce the negative impact of dual-tasking on walking. We examined whether tDCS applied while walking reduces the dual-task costs to gait and whether this combination is better than tDCS alone or walking alone (with sham stimulation). In 25 healthy older adults (aged 75.7±10.5yrs), a double-blind, within-subject, cross-over pilot study evaluated the acute after-effects of 20 minutes of tDCS targeting the primary motor cortex and the dorsal lateral pre frontal cortex during three separate sessions:1) tDCS while walking on a treadmill in a virtual-reality environment (tDCS+walking), 2) tDCS while seated (tDCS+seated), and 3) walking in the virtual-reality environment with sham tDCS (sham+walking). The complex walking condition taxed motor and cognitive abilities. During each session, single- and dual-task walking and cognitive function were assessed before and immediately after stimulation. Compared to pre-tDCS performance, tDCS+walking reduced the dual-task cost to gait speed (p=0.004) and other gait features (e.g., variability p=0.02), and improved (p<0.001) executive function (Stroop interference score). tDCS+seated and sham+walking did not affect the dual-task cost to gait speed (p>0.17). These initial findings demonstrate that tDCS delivered during challenging walking ameliorates dual-task gait and executive function in older adults, suggesting that the concurrent performance of related tasks enhances the efficacy of the neural stimulation and mobility.


2021 ◽  
Author(s):  
Yusep Rosmansyah ◽  
Atina Putri ◽  
Allya P. Koesoema ◽  
Abdurachman Latief ◽  
Yuni Sari Amalia

Proceedings ◽  
2020 ◽  
Vol 63 (1) ◽  
pp. 44
Author(s):  
Lavinia Andrei ◽  
Doru-Laurean Baldean ◽  
Adela-Ioana Borzan

A control program was designed with Unity 5 virtual reality application in the automotive and robotics field. Thus, a virtual model of a robotic car was tested in a virtual reality program. After optimization, the smart controller was implemented on a specific model of the automated Chevrolet Camaro. The main objective of the present paper is to design a control program model to be tested in virtual reality and in a real-size car. Results concerning the virtual modeling of an automated car and its artificial intelligence controls have been presented and discussed, outlining the forces, torques, and context awareness capabilities of the car.


2020 ◽  
Vol 1569 ◽  
pp. 022071
Author(s):  
D R Anamisa ◽  
M Yusuf ◽  
F A Mufarroha ◽  
N Rohmah

Sign in / Sign up

Export Citation Format

Share Document