Influence of car seat firmness on seat pressure profiles and perceived discomfort during prolonged simulated driving

2022 ◽  
Vol 100 ◽  
pp. 103666
Author(s):  
Pascaline Lantoine ◽  
Mathieu Lecocq ◽  
Clément Bougard ◽  
Erick Dousset ◽  
Tanguy Marqueste ◽  
...  
PLoS ONE ◽  
2021 ◽  
Vol 16 (11) ◽  
pp. e0259934
Author(s):  
Pascaline Lantoine ◽  
Mathieu Lecocq ◽  
Clément Bougard ◽  
Erick Dousset ◽  
Tanguy Marqueste ◽  
...  

Prolonged driving under real conditions can entail discomfort linked to driving posture, seat design features, and road properties like whole-body vibrations (WBV). This study evaluated the effect of three different seats (S1 = soft; S2 = firm; S3 = soft with suspension system) on driver’s sitting behavior and perceived discomfort on different road types in real driving conditions. Twenty-one participants drove the same 195 km itinerary alternating highway, city, country, and mountain segments. Throughout the driving sessions, Contact Pressure (CP), Contact Surface (CS), Seat Pressure Distribution Percentage (SPD%) and Repositioning Movements (RM) were recorded via two pressure mats installed on seat cushion and backrest. Moreover every 20 minutes, participants rated their whole-body and local discomfort. While the same increase in whole-body discomfort with driving time was observed for all three seats, S3 limited local perceived discomfort, especially in buttocks, thighs, neck, and upper back. The pressure profiles of the three seats were similar for CP, CS and RM on the backrest but differed on the seat cushion. The soft seats (S1 & S3) showed better pressure distribution, with lower SPD% than the firm seat (S2). All three showed highest CP and CS under the thighs. Road type also affected both CP and CS of all three seats, with significant differences appearing between early city, highway and country segments. In the light of these results, automotive manufacturers could enhance seat design for reduced driver discomfort by combining a soft seat cushion to reduce pressure peaks, a firm backrest to support the trunk, and a suspension system to minimize vibrations.


2010 ◽  
Author(s):  
Jessie Y. C. Chen ◽  
Razia N. V. Oden ◽  
Caitlin Kenny ◽  
John O. Merritt

2001 ◽  
Vol 1 (1) ◽  
pp. 53-56 ◽  
Author(s):  
&NA;
Keyword(s):  

Author(s):  
Alejandro A. Arca ◽  
Kaitlin M. Stanford ◽  
Mustapha Mouloua

The current study was designed to empirically examine the effects of individual differences in attention and memory deficits on driver distraction. Forty-eight participants consisting of 37 non-ADHD and 11 ADHD drivers were tested in a medium fidelity GE-ISIM driving simulator. All participants took part in a series of simulated driving scenarios involving both high and low traffic conditions in conjunction with completing a 20-Questions task either by text- message or phone-call. Measures of UFOV, simulated driving, heart rate variability, and subjective (NASA TLX) workload performance were recorded for each of the experimental tasks. It was hypothesized that ADHD diagnosis, type of cellular distraction, and traffic density would affect driving performance as measured by driving performance, workload assessment, and physiological measures. Preliminary results indicated that ADHD diagnosis, type of cellular distraction, and traffic density affected the performance of the secondary task. These results provide further evidence for the deleterious effects of cellphone use on driver distraction, especially for drivers who are diagnosed with attention-deficit and memory capacity deficits. Theoretical and practical implications are discussed, and directions for future research are also presented.


2012 ◽  
Vol 43 (4) ◽  
pp. 738-746 ◽  
Author(s):  
Kristie L. Young ◽  
Eve Mitsopoulos-Rubens ◽  
Christina M. Rudin-Brown ◽  
Michael G. Lenné

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