The Occupational Health and Safety Regulation defines musculoskeletal injury (MSI) defines musculoskeletal injury as a bodily lesion at the organic level, resulting from acute exposure to energy in amounts that exceed the threshold of physiological tolerance. The present study was designed with an aim to determine the pattern of musculoskeletal injuries presenting in district Kangra. Age group 45-60 years was most common age to suffer the traumatic musculoskeletal injuries. Outside home was the most commonplace for occurrence of injury. Road traffic accidents were the most common cause of injuries followed by fall from height.
Injuries are a growing public health problem, and affect all age groups [1]. The Occupational Health and Safety Regulation defines musculoskeletal injury (MSI) defines musculoskeletal injury as a bodily lesion at the organic level, resulting from acute exposure to energy (mechanical, thermal, electrical, chemical, or radiant) in amounts that exceed the threshold of physiological tolerance [2]. Injuries are a very broad group of afflictions, arising from many different activities, risk factors and can affect all organ system of the body. The external causes of injuries are categorized as unintentional or intentional [3]. Most traffic injuries, fire-related injuries, falls, drowning and poisonings are classified as unintentional injuries; injuries due to assaults, self-inflicted violence and war are classified as intentional injuries. Historically, the injury as a problem has been neglected, largely because injuries were viewed as accident or random events [4].
Most of the literature on injuries is from the west or from the urban areas of India. As the terrain and living conditions in Himachal Pradesh is different from other states of India the literature regarding these from different parts of India, cannot be the true reflection of the pattern of presentation in H.P. More over the concept of Trauma centers is being vigorously pursued by the Government of India. For proper and effective planning, one need to know the pattern of presentation of injuries in these trauma centers so that apart from orthopedic surgeons the requirement of other specialties and infrastructure can be projected accurately.
Keeping these observations in consideration the present study was designed with an aim to determine the pattern of musculoskeletal injuries in district Kangra. This will help in further planning of the infrastructure and facilities to be provided to the injured patients.
The study was carried out by taking the secondary data from the department of health and family welfare, district Kangra. It was a hospital based observational study conducted for a period of one year from the start of the study. The study population consisted of all the patients fulfilling inclusion criteria reporting to orthopedic department during the study period. All cases of musculoskeletal injuries reporting in the department on the day of the unit, in which post graduate had been allotted, was incorporated in the register. The detailed history of the study participant was taken from the patient after stabilizing the patient and if the patient was disoriented or was minor, the history was taken from the attendant accompanying the patient.
Statistical Analysis
Data was collected using a predesigned, semi-structured study tool. The data was entered and cleaned using MS Excel 2007. The qualitative results were expressed as frequencies and percentages along with 95% Confidence Interval, whereas the quantitative data was expressed as mean and its standard deviation

Figure 1:
Table1: Description of the nature and type of injury (N=1024)
| Nature of Injury | Frequency | Proportion |
| Fracture | 532 | 52 |
| Dislocation | 82 | 8 |
| Sprain | 123 | 12 |
| Strain | 61 | 6 |
| Crush Injury | 82 | 8 |
| Soft Tissue Injury | 143 | 14 |
| Place of Injury | ||
| At Home | 143 | 14 |
| Outside Home | 881 | 86 |
| Mode of Injury at home | 143 | 14% |
| Fall from stairs | 41 | 29 |
| Slipped on wet floor/level ground | 69 | 48 |
| Inadequate lighting | 14 | 10 |
| Domestic Violence | 16 | 11 |
| Others | 3 | 2 |
| Mode of Injury outside home | 881 | 86% |
| Fall from tree | 18 | 2 |
| Fall from height | 194 | 22 |
| Fall while walking | 53 | 6 |
| Fall while playing | 70 | 8 |
| Road Side Accident | 476 | 54 |
| Blunt Force | 70 | 8 |
| Injury in the upper extremity | 389 | 38% |
| Injury in the lower extremity | 297 | 29% |
| Injury to the Spine | 92 | 9% |
| Injury to the chest | 102 | 10% |
| Dislocation Injury | 143 | 14% |
| Radiological Investigations done | ||
| X-ray | 983 | 96 |
| Computed Tomography | 184 | 18 |
| Magnetic Resonance Imaging | 82 | 8 |
| Ultrasonography | 51 | 5 |
| None | 41 | 4 |
| Treatment Given | ||
| Surgical Treatment | 748 | 73 |
| Conservative Treatment | 276 | 27 |
| Average Duration of Stay in the hospital in days (Mean ± SD) | 19.3 ± 4.73 | |
| Outcome | ||
| Cured | 942 | 92 |
| Debilitated | 77 | 7.5 |
| Death | 5 | 0.5 |
The mean age of the study participants was 73.04 (SD=9.42) years. On assessing the nature of injury 532 study participants had suffered fractures of different parts of the body, 82 study participants were suffering from dislocation injuries, 123 study participants had sprain, 61 study participants had strain, 82 study participants suffered crush injury, whereas 143 study participants suffered from soft tissue injury. (Figure 1).
Out of 143 study participants who were injured at home, 41 study participants had a history of fall from stairs, 69 participants either slipped on wet floor or level ground, 14 suffered injuries at home due to inadequate lighting, 16 study participants were injured due to domestic violence whereas the rest were injured at home due to other causes.
Out of 881 study participants who were injured outside the home premises 18 gave a history of fall from tree, 194 study participants fell from height, 53 study participants had a history of fall while walking, 70 study participants fell while playing, 476 study participants were injured in roadside accident and 70 study participants were injured due to blunt force.
983 study participants required X-rays whereas 180 for study participants required computed tomography, 82 required magnetic resonance imaging while 51 study participants required ultrasonography as a part of their radiological investigations.
748 study participants out of 1024 study participants required surgical intervention while the rest 276 study participants required conservative treatment.
The average duration of stay in the hospital was 19.3 days (SD=4.73 days). Out of all the study participants 942 were cured, 77 were debilitated whereas 5 study participants had died (Table 1).
The majority of the study participants in our study were of the age group between 45-60 years (38%) followed by 61-70 years (37%). The reported mean age of injured patients varies from 26 years to 33 years across trauma centers across the globe [5,6]. It is mainly the result of substantial methodological heterogeneity while recruiting various age groups of injured patients.
The study on skeletal injuries following unintentional fall from height conducted in Delhi reported that the majority of the injuries (90%) were sustained in households and only 10% at places of work [59]. In another study conducted in North East India [58]. it was observed that most of the injuries occurred at home (41.26%) followed by road (39.8%). But other studies indirectly support the fact that road side accidents as most common cause of injury [7].
In our study most injuries were inflicted outside home (86%) while doing outdoor activities. This could be because most of injuries occur while being involved in outdoor activities related to work, study and other physical activities such as sports. Also, the fact people have to travel long distance to perform daily chores predisposing them to injuries outside home with difficult geographical terrain contributing to fall.
A study conducted in Delhi [8] discusses fall related injuries in detail. Study reported fall as the commonest mode of injury with slippery surface as the most common factor responsible for occurrence of fall (63.5%) at same levels. More common in the study was fall from ladder (42.8%) followed by fall from a building (21.5%) in case of fall from height. Study also reported road side accidents as significant cause of injury with injury being more common among two wheelers used by the victim (46.3%) and pedestrians (24.9%).
While in other studies Road traffic accidents were commonest cause of injury with varying incidence of 62%, 46.9% and 72% while fall was reported as mechanism of injury in 21.14% [9].
In our study road side accident was the commonest mechanism of injury (54%) followed by falls (14.6%), result not being similar to established study [61]. Fall from height contributed to 194 cases (22%). The geographical terrain of Himachal predisposes its population to injuries by fall. Injuries sustained while walking on narrow path, fall from trees while harvesting fodders, fall from stairs due to traditional housing could be the reason for this.
Age group 45-60 years was most common age to suffer the traumatic musculoskeletal injuries. Outside home was the most commonplace for occurrence of injury. Road traffic accidents were the most common cause of injuries followed by fall from height.
“Injuries and Violence”: The Facts. World Health Organization, 2010, http:// whqlibdoc. who. int/ publications/ 2010/ 9789241599375_eng.pdf. Accessed 12 Oct. 2021.
WorkSafeBC. “Preventing musculoskeletal injury (MSI)”: A Guide for Employers and Joint Committees.
Panda, P. et al. "Burden, Pattern, and Causes of Road Traffic Accidents in South India: Estimate of Years of Life Lost." CHRISMED Journal of Health Research, vol. 6, 2019, pp. 52–56.
Karkee, R., and A.H. Lee. "Epidemiology of road traffic injuries in nepal, 2001–2013: systematic review and secondary data analysis." BMJ Open, vol. 6, no. 4, 2016, e010757, doi:10.1136/bmjopen-2015-010757.
Heydari, S., A. et al. "Epidemiological characteristics of fatal traffic accidents in fars province, iran: a community-based survey." Public Health, vol. 127, 2013, pp. 704–709.
Yadollahi, M. et al. "Types and causalities in dead patients due to traumatic injuries." Archives of Trauma Research, vol. 4, 2015, e26028.
Bradley, C., and J. Harrison. Descriptive Epidemiology of Traumatic Fractures in Australia. “Injury Research and Statistics Series No. 17”, Australian Institute of Health and Welfare, 2004 (AIHW cat no. INJCAT 57).
Epidemiology of Spinal Cord Injury in India. “Indian Spinal Injuries Centre, New Delhi”, 2010, http://www.indiaprwire.com. Accessed 20 Oct. 2021.
Meena, R.K. et al "Pattern of Fractures and Dislocations in a Tertiary Hospital in North East India." International Journal of Epidemiology, vol. 11, 2013, pp. 13–15.