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FACTORS RELATED TO THE INCIDENCE OF EYE FATIGUE TO COMPUTER EXPOSURE IN WORKERS AT PT. A. W FABER-CASTELL INDONESIA BEKASI IN 2022 Fidela Angelina Hafiz; Triana Srisantyorini; Dihartawan; Januar Ariyanto
Muhammadiyah International Public Health and Medicine Proceeding Vol. 3 No. 1 (2023): PROCEEDING MUHAMMADIYAH INTERNATIONAL PUBLIC HEALTH AND MEDICINE CONFERENCE - T
Publisher : Fakultas Kesehatan Masyarakat Universitas Muhammadiyah Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61811/miphmp.v3i1.360

Abstract

The use of computers is useful as a communication tool, facilitating work. Excessive use of computers can cause eye disease, body, or head. Globally, around 45-70 million people spend time watching videos. basic health research in 2018, the proportion of eye injuries caused by an event or accident in the productive age of 15-45 years was 2.6%. As for the type of employee work, eye injuries have a proportion of 0.5 %. The purpose of this study was to determine the factors associated with the incidence of eye fatigue due to computer exposure among workers at PT. AW Faber-Castell Indonesia Bekasi Year 2022. This type of research uses analytic research with a cross-sectional approach with a total sample of 50 workers at PT. AW Faber-Castell Indonesia. The sampling technique uses the Total Population. Data were analyzed univariately and bivariately with the Chi Square test. The results of this study indicate workers who experience eye fatigue (74%). The most common types of eye fatigue are blurred vision (42%), sore eyes (32%), and difficulty focusing to see (30%). In this study, there were no variables that had a significant relationship, namely the distance on the monitor screen with a p-value = 0.303, eye rest P- value = 0.886 (p-value>0.05) OR = 0.735 (95% CI = 0.202-2.674), duration of computer uses p-value = 1000, work period p -value = 0.707, lighting p -value = 1000. There were many complaints of eye fatigue and duration of computer use that exceeded 4 hours/day. So, it is recommended to pay attention to the risk of eye fatigue by stretching to rest the eyes work with lighting appropriate to the type of work object, and carry out maintenance.
ERGONOMIC RISK ANALYSIS AND MUSCULOSKELETAL DISORDERS (MSDs) OPERATOR FINAL INSPECTION ON AUTMOTIVE INDUSTRY IN TANGERANG CITY Mariyatul Qibtiyah; Januar Ariyanto; Triana Srisantyorini; Aragar Putri; Agus Triyono
Muhammadiyah International Public Health and Medicine Proceeding Vol. 3 No. 1 (2023): PROCEEDING MUHAMMADIYAH INTERNATIONAL PUBLIC HEALTH AND MEDICINE CONFERENCE - T
Publisher : Fakultas Kesehatan Masyarakat Universitas Muhammadiyah Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61811/miphmp.v3i1.437

Abstract

Ergonomics is very important to note so that work-related illnesses and accidents do not occur. Disturbances arising from ergonomics are Musculoskeletal disorders (MSDs), namely disorders of body structures such as muscles, joints, tendons, ligaments, nerves, cartilage, bones, local blood circulation system. Ergonomics risks were identified using REBA and MSDs complaints using the Nordic Body Map questionnaire. Age, education, exercise habits, smoking habits, BMI, body posture and length of work are factors that can influence MSDs complaints. The aim of this research is to know the factors that influence MSDs complaints. Cross sectional study design with a sample of 231 using logistic regression analysis. The results showed that the ergonomic risk level was low 17,3%, medium 16,9% and high 65,8%. The prevalence of MSDs complaints is 65,8% felt by operators. Respondents aged > 35 years (42,9%), SMA/SMK and below (91,8%), do not have exercise habits 95,2%, smoke every day (59,3%), BMI is overweight (72,7%), risky posture (83,1%) and normal working hours (72,7%). There is a relationship between ergonomic risk, body posture and MSDs complaints. In conclusion, the dominant factor influencing MSDs complaints is body posture with OR 0,127. The research suggestion is to make improvements through the OHS control hierarchy such as equipping lifting equipment, re-designing conveyors for transporting tires, modifying racks to be non-level, socializing working safely and working with poster zones, making work procedures safe.