Evaluation of a novel stair-climbing transportation aid for emergency medical services

2020 ◽  
Vol 0 (0) ◽  
Author(s):  
Mark Verjans ◽  
Philipp Schleer ◽  
Max Kinzius ◽  
Philipp Krumholz ◽  
Lovis Phlippen ◽  
...  

AbstractAcute and planned transportations of patients are major tasks for emergency medical services (EMS) and often result in substantial physical strains with a major impact on the workers’ health, because current transportation aids cannot provide sufficient support, especially on stairs. A new stair-climbing and self-balancing approach (SEBARES) has been developed and its usability is evaluated in the context of this paper. Twelve participants operated a prototype in a transportation scenario and user forces, user joint angles and the perceived usability were evaluated. Results show that user forces were within long-term acceptable ergonomic limits for over 90% of the transportation time and a mainly healthy upright posture of the back could be maintained. This resulted in a healthy working posture for 85% of the time, according to the OWAS method, and a good perceived usability. A comparison to the most ergonomic aid according to literature, a caterpillar stair chair, reveals that similar upright postures are assumed, while the operation of SEBARES required only 47% of the forces to operate the caterpillar stair chair. A comparison to a previous field study indicates a reduction of strenuous working postures by a factor of three, which further confirms the ergonomic advantages of this concept.

2021 ◽  
Vol 69 (6) ◽  
pp. 550-561
Author(s):  
Mark Verjans ◽  
Lovis Phlippen ◽  
Zongshuo Li ◽  
Philipp Schleer ◽  
Klaus Radermacher

Abstract A novel approach for a patient transportation aid for emergency medical services bases on a wheel hub stair-climbing mechanism, which currently requires a manual adjustment relative to the stair edges. In this paper, an approach for an automation is presented which utilizes two distance sensors to characterize stairs and determine the relative position to them. A controller can then adjust the system’s position automatically. A user supervision concept copes with sensor inaccuracies or errors, resulting in a semi-automatic process. Within a formative usability study ( n = 11 n=11 users) the algorithm was able to reconstruct the stairs and drive the system neither falling down nor colliding with steps. The semi-automatic process reduced climbing time by 59 % and the participants reported a higher subjective usability compared to manual stair climbing.


2017 ◽  
Vol 70 (3) ◽  
pp. 366-373.e3 ◽  
Author(s):  
Morten T. Bøtker ◽  
Christian J. Terkelsen ◽  
Jan N. Sørensen ◽  
Søren B. Jepsen ◽  
Søren P. Johnsen ◽  
...  

2020 ◽  
Vol 27 (3) ◽  
pp. 207-216
Author(s):  
Daniel K. Nishijima ◽  
Samuel D. Gaona ◽  
Mark Faul ◽  
Daniel J. Tancredi ◽  
Trent Waechter ◽  
...  

2018 ◽  
Vol 10 (1) ◽  
pp. 167-173 ◽  
Author(s):  
Adam Piórkowski

Abstract This article presents a design of coverage maps for emergency journeys made by emergency medical services. The system was designed for the Malopolskie Voivodeship Office in Cracow, Poland. The proposed solution displays maps of the ambulance coverage of areas and ambulance’s potential journey times. There are two versions of the map: static and dynamic. The static version is used to appropriately allocate ambulances to cover an area with the ability to reach locations in less than 15 or 20 minutes; the dynamic version allows monitoring of ambulance fleets under normal conditions or in the event of a crisis. The article also presents the results of archival data related to the movement of ambulances on the roads of Malopolskie Voivodship. Particular attention was paid to the relation between the speed of vehicles and the traffic on the road, the day of the week or month, and long-term trends. The collected observations made it possible to assume a general model of ambulance movement in the voivodeship to calculate arrival time coverage maps.


Injury ◽  
2019 ◽  
Vol 50 (6) ◽  
pp. 1175-1185 ◽  
Author(s):  
Craig D. Newgard ◽  
Amber Lin ◽  
N. David Yanez ◽  
Eileen Bulger ◽  
Susan Malveau ◽  
...  

2018 ◽  
Author(s):  
Emily Andrew ◽  
Ziad Nehme ◽  
Stephen Bernard ◽  
Peter Cameron ◽  
Karen Smith

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