Use of an inflatable mat to reduce body discomfort development when performing computer work at a standing desk

Ergonomics ◽  
2021 ◽  
pp. 1-24
Author(s):  
Ming-I Brandon Lin ◽  
Yi-Ting Yen ◽  
Chun Han Chang
1999 ◽  
Author(s):  
Marla C. Haims ◽  
Pascale Carayon ◽  
Ecole des Mines de Nancy ◽  
Hyun-Suk Suh ◽  
Naomi Swanson

Author(s):  
Alan Hedge ◽  
Jason Jagdeo ◽  
Anshu Agarwal ◽  
Kate Rockey-Harris
Keyword(s):  

2020 ◽  
Author(s):  
Anis Davoudi ◽  
Mamoun T. Mardini ◽  
Dave Nelson ◽  
Fahd Albinali ◽  
Sanjay Ranka ◽  
...  

BACKGROUND Research shows the feasibility of human activity recognition using Wearable accelerometer devices. Different studies have used varying number and placement for data collection using the sensors. OBJECTIVE To compare accuracy performance between multiple and variable placement of accelerometer devices in categorizing the type of physical activity and corresponding energy expenditure in older adults. METHODS Participants (n=93, 72.2±7.1 yrs) completed a total of 32 activities of daily life in a laboratory setting. Activities were classified as sedentary vs. non-sedentary, locomotion vs. non-locomotion, and lifestyle vs. non-lifestyle activities (e.g. leisure walk vs. computer work). A portable metabolic unit was worn during each activity to measure metabolic equivalents (METs). Accelerometers were placed on five different body positions: wrist, hip, ankle, upper arm, and thigh. Accelerometer data from each body position and combinations of positions were used in developing Random Forest models to assess activity category recognition accuracy and MET estimation. RESULTS Model performance for both MET estimation and activity category recognition strengthened with additional accelerometer devices. However, a single accelerometer on the ankle, upper arm, hip, thigh, or wrist had only a 0.03 to 0.09 MET increase in prediction error as compared to wearing all five devices. Balanced accuracy showed similar trends with slight decreases in balanced accuracy for detection of locomotion (0-0.01 METs), sedentary (0.13-0.05 METs) and lifestyle activities (0.08-0.04 METs) compared to all five placements. The accuracy of recognizing activity categories increased with additional placements (0.15-0.29). Notably, the hip was the best single body position for MET estimation and activity category recognition. CONCLUSIONS Additional accelerometer devices only slightly enhance activity recognition accuracy and MET estimation in older adults. However, given the extra burden of wearing additional devices, single accelerometers with appropriate placement appear to be sufficient for estimating energy expenditure and activity category recognition in older adults.


2021 ◽  
Vol 11 (4) ◽  
pp. 1721
Author(s):  
Jingdong Li ◽  
Yu Huang

Power seats (i.e., electrically adjustable seats that can be designed to move in several ways) have become increasingly common in airplanes, vehicles, and offices. Many studies have investigated the effects of seat attitude parameters, for example, the inclined angles of a backrest, on discomfort during the adjustment process. However, few studies have considered discomfort under different speeds during the adjustment process. In this study, we investigated discomfort with three speeds (i.e., “fast”, “median”, and “slow” corresponding to three durations of 15, 20, and 25 s, respectively) and two adjustments of a power seat, i.e., incline angle adjustment of the backrest and fore-and-aft position adjustment of the seat pan. We also investigated the effects of different physiological parameters on subjects’ discomfort. Twenty-four subjects (12 males and 12 females) completed a questionnaire to indicate their adjustment condition preferences, to rate their overall discomfort during the adjustment processes on a category-ratio scale, and to rate their local body discomfort. The majority of subjects preferred the fast speed adjustment condition and the trend was that a lower backrest adjustment speed increased discomfort during the process. The dominant local discomfort was in the upper and lower back regions during the backrest adjustment, whereas there was no obvious dominant local discomfort during the seat pan adjustment. The physiological parameters also had significant correlations with discomfort in some adjustment movements, for example, the discomfort was negatively correlated with height during the backrest adjustment.


2012 ◽  
Vol 5 (1) ◽  
Author(s):  
Vegard Strøm ◽  
Cecilie Røe ◽  
Stein Knardahl
Keyword(s):  

Author(s):  
Jia-Hua Lin ◽  
Carisa Harris-Adamson ◽  
Stephen Bao ◽  
David Rempel ◽  
Lora Cavuoto ◽  
...  

Routine office or computer work are of public health concerns due to their sedentary nature. Sit- stand desks may be prescribed for employees based on medical or ergonomic factors. Sit-stand or active workstations, either assigned to individual workers or made available in “unassigned” office areas are also making inroads into the workplace with the goal of reducing sedentary work, varying (alternating) work postures, improving productivity, or accommodating workers with musculoskeletal symptoms. This diverse panel will present recent research and practice findings and invite audience participation in a discussion of this trending topic. Studies examining the effects of sit-stand or active workstations on physiological and cardiovascular outcomes will be reported. The effects on movement patterns, performance and productivity will also be examined. Real workplace interventions and examples of practices will be presented. The goal is to provide a forum to share our understanding about the benefits and limitations of various office workstation designs and discuss research needs.


1990 ◽  
Vol 3 (4) ◽  
pp. 1-5
Author(s):  
Christopher Daniel

Computers inspire mixed emotions among political scientists. Love, hate, fascination, ennui, and frustration sometimes occur during the course of a single computer work session. Individuals come to terms with the beast in varying ways; obviously personal work style and level of computer dependency are each scholar's own business. However, expanded use of information technology in the disciplinary curriculum is a common concern deserving discussion. Like earlier debates between behavioralists and traditionalists, the current discussion raises questions about the discipline's central purpose. This essay reviews proposals to “computerize” political science curricula in light of contemporary theories about information and managerial work.Historically, political scientists' computer involvement has been limited, but it is now intensifying in response to educational, technological, and environmental influences. Political scientists have used computers as teaching tools since at least the early 1970s, when the APSA “SETUPs” began appearing, but as novelty items, diversions reflecting the devotion of idiosyncratic individuals. This publication has disseminated many such “experiments,” as have Social Science Computer Review and the National Collegiate Software Clearinghouse. Even as desktop machines began proliferating in the early 1980s, their use in the classroom was considered to be optional, something peripheral to the discipline which one could attempt if one had the inclination.This laissez-faire ambience may be ending in the face of societal transformations. In the classroom political scientists foster intellectual skills broadly useful to former students. A student may be an activist or an avid pre-lawyer, but his or her future professional development will be built on analytical, and communications skills honed in political science courses. This linkage between political science classrooms and the professional world could weaken if we do not adopt to societal change.


1994 ◽  
Vol 30 (2) ◽  
pp. 165-174 ◽  
Author(s):  
Ralf Otterpohl ◽  
Thomas Rolfs ◽  
Jörg Londong

Computer simulation of activated sludge plant for nitrogen removal has become a reliable tool to predict the behaviour of the plant Models including biological phosphorus removal still require some practical experience but they should be available soon. This will offer an even wider range than today's work with nitrogen removal. One major benefit of computer simulation of wastewater treatment plants (WTP) is the optimization of operation. This can be done offline if hydrographs of a plant are collected and computer work is done with “historical” analysis. With online simulation the system is fed with hydrographs up to the actual time. Prognosis can be done from the moment of the computer work based on usual hydrographs. The work of the authors shows how accuratly a treatment plant can be described, when many parameters are measured and available as hydrographs. A very careful description of all details of the special plant is essential, requiring a flexible simulation tool. Based on the accurate simulation a wide range of operational decisions can be evaluated. It was possible to demonstrate that the overall efficiency in nitrogen removal and energy consumption of ml activated sludge plant can be improved.


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