scholarly journals The Sensor-Based Biomechanical Risk Assessment at the Base of the Need for Revising of Standards for Human Ergonomics

Sensors ◽  
2020 ◽  
Vol 20 (20) ◽  
pp. 5750
Author(s):  
Alberto Ranavolo ◽  
Arash Ajoudani ◽  
Andrea Cherubini ◽  
Matteo Bianchi ◽  
Lars Fritzsche ◽  
...  

Due to the epochal changes introduced by “Industry 4.0”, it is getting harder to apply the varying approaches for biomechanical risk assessment of manual handling tasks used to prevent work-related musculoskeletal disorders (WMDs) considered within the International Standards for ergonomics. In fact, the innovative human–robot collaboration (HRC) systems are widening the number of work motor tasks that cannot be assessed. On the other hand, new sensor-based tools for biomechanical risk assessment could be used for both quantitative “direct instrumental evaluations” and “rating of standard methods”, allowing certain improvements over traditional methods. In this light, this Letter aims at detecting the need for revising the standards for human ergonomics and biomechanical risk assessment by analyzing the WMDs prevalence and incidence; additionally, the strengths and weaknesses of traditional methods listed within the International Standards for manual handling activities and the next challenges needed for their revision are considered. As a representative example, the discussion is referred to the lifting of heavy loads where the revision should include the use of sensor-based tools for biomechanical risk assessment during lifting performed with the use of exoskeletons, by more than one person (team lifting) and when the traditional methods cannot be applied. The wearability of sensing and feedback sensors in addition to human augmentation technologies allows for increasing workers’ awareness about possible risks and enhance the effectiveness and safety during the execution of in many manual handling activities.

2020 ◽  
Vol 29 (6) ◽  
pp. 358-363
Author(s):  
Jacqueline Johnstone

Work-related musculoskeletal disorders (WRMSDs) continue to be a problem in the health and social care setting, despite staff receiving mandatory manual handling training for many decades. The author discusses WRMSDs, with a focus on various nursing roles. The principle of manual handling as solely ‘person moving’ or ‘transferring’ is challenged because a range of activities can cause musculoskeletal problems. The legislation and regulations are explored in relation to practice. The benefits of introducing a specific risk-assessment tool designed for nurses working in neonatal wards is discussed.


2013 ◽  
Vol 3 (1) ◽  
Author(s):  
Sonja Pavlovic-Veselinovic

Work-related musculoskeletal disorders (WRMSDs) are becoming a major problem in world economy. There is many and various risk factors that contribute to their development. Repetitive work is one of the most important risk factor. In this paper is described the body's response to repetitive strain, existing methods for evaluation/ quantification of repetition as risk factor for musculoskeletal disorders. The author proposes a new multidimensional scale for rating the level of risk of repetitive work, which may be useful in the risk assessment of the workplace. Key words: ergonomics, work related musculoskeletal disorders, risk assessment.


Author(s):  
Christopher R. Reid ◽  
Pamela McCauley-Bush ◽  
Waldemar Karwowski ◽  
Dianne L. McMullin

Current ergonomic risk assessment tools do not assess possible occupational (extrinsic) and personal (intrinsic) risk factors for the lower extremity regions of employees. This document proposes that it is possible to develop a lower extremity risk assessment (LERA) model for quantifying such risks. A literature review was conducted for work-related musculoskeletal disorders of the lower extremity that affect the nervous, muscular, vascular, and skeletal systems. This initial model of LERA was developed using epidemiological literature and subject matter expert opinion specifically for the knee joint and is considered a preliminary step towards quantifying the etiology of cumulative occupational knee disorders.


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