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Preliminary experiences in acute occupational therapy for in-patients with coronavirus-19 (COVID-19): leveraging assistive technology in three case studies of male veterans

RICH, Tonya
HICKS, Brandon
DAHL, Abigail
SULLIVAN, Elle
BARRETT, Benjamin
BEDORE, Beau
2020

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Purpose:

Coronavirus 2019 (COVID-19) was first identified in December 2019 with millions of cases reported globally in the succeeding months. Initial hospitalisation strives to minimise multisystem organ failure and of those that survive, individuals can present with profound rehabilitation needs. The purpose of this case series is to describe occupational therapy (OT) and special technology considerations for three male Veteran patients hospitalised with suspected or confirmed COVID-19. 

 

Methods: 

This is a descriptive case series using a retrospective electronic health record review at a Veterans Administration hospital. The case series includes three male Veterans with confirmed or suspected COVID-19 (ages 69–78) who were referred to OT. The cases were selected to demonstrate the novel use of technology and strategies to reduce the risk of transmission. In two of three of our cases, we describe acute rehabilitation with a focus on activity tolerance, participation in occupations, and discharge planning. In all cases, we measured vital signs and activity tolerance as primary outcomes. 

 

Results and conclusions: 

The findings suggest that outcome measures focussing on activity tolerance to maintain stable vital signs during the recovery phase is central to the progression of activities. We observed in our cases that the Person-Environment-Occupation-Performance (PEOP) model can guide practice and complement the medical model in management of these patients. We utilised technology to engage family members in the rehabilitation care and minimise exposure risks.

Kinect4FOG: monitoring and improving mobility in people with Parkinson’s using a novel system incorporating the Microsoft Kinect v2

AMINI, Amin
BANITSAS, Konstantinos
YOUNG, William R
2018

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Parkinson’s is a neurodegenerative condition associated with several motor symptoms including tremors and slowness of movement. Freezing of gait (FOG); the sensation of one’s feet being “glued” to the floor, is one of the most debilitating symptoms associated with advanced Parkinson’s. FOG not only contributes to falls and related injuries, but also compromises quality of life as people often avoid engaging in functional daily activities both inside and outside the home. In the current study, we describe a novel system designed to detect FOG and falling in people with Parkinson’s (PwP) as well as monitoring and improving their mobility using laser-based visual cues cast by an automated laser system. The system utilizes a RGB-D sensor based on Microsoft Kinect v2 and a laser casting system consisting of two servo motors and an Arduino microcontroller. This system was evaluated by 15 PwP with FOG. Here, we present details of the system along with a summary of feedback provided by PwP. Despite limitations regarding its outdoor use, feedback was very positive in terms of domestic usability and convenience, where 12/15 PwP showed interest in installing and using the system at their homes.

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