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Estimating the global burden of road traffic injuries

Estimating the global burden of road traffic injuries. Kavi Bhalla Harvard University Initiative for Global Health . This work is supported by a grant from the World Bank Global Road Safety Facility . Harvard-WB * RTI metrics project.

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Estimating the global burden of road traffic injuries

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  1. Estimating the global burden of road traffic injuries Kavi Bhalla Harvard University Initiative for Global Health This work is supported by a grant from the World Bank Global Road Safety Facility

  2. Harvard-WB* RTI metrics project A standardized cross-national database for road traffic injuries and covariates Country Data Road Traffic Injury Data police, hospitals, crematoriums, surveys, … Covariates of Road Traffic Injuries transport variables, mortality variables, policies, … Extrapolation Models Estimate RTI based on vehicles, roads, pop density, urbanization, regional fatality rates Data Translation Algorithms Adjustment for different sources Scale up: local  national Fatalities  Non fatal injuries Breakdown by age, gender, victim-type, etc. Burden of Injury Calculations YLL, YLD  Disability Adjusted Life Years lost Road Traffic Injury Database Country level estimates: deaths, injuries, victim type, age, gender, threat type, burden of injuries GBD *World Bank Global Road Safety Facility

  3. FOCUS COUNTRIES M. East & N. Africa Iran (done) Egypt Latin America Mexico (done) Argentina Colombia (done) South Asia India Sri Lanka High Income Greece USA Sub Saharan Africa Kenya Ghana (ongoing) Mozambique East Asia & Pacific China Thailand Vietnam Europe & C. Asia Poland Armenia Russian Federation

  4. Country assessment of road traffic injuries in Iran

  5. Iran – building a national snapshot DEATHS Death Registration System Remaining 29 provinces Forensic medicine Tehran

  6. Iran – building a national snapshot HOSPITAL ADMISSIONS Hospital Registry 12 provinces, 4 weeks  Extrapolate DEATHS Death Registration System Remaining 29 provinces Forensic medicine Tehran “Extrapolate” : apply age-sex-victim type incidence rates to entire population

  7. Iran – building a national snapshot EMERGENCY ROOM VISITS Hospital Registry 12 provinces, 4 days  Extrapolate HOSPITAL ADMISSIONS Hospital Registry 12 provinces, 4 weeks  Extrapolate DEATHS Death Registration System Remaining 29 provinces Forensic medicine Tehran “Extrapolate” : apply age-sex-victim type incidence rates to entire population

  8. Iran – building a national snapshot HOME CARE Demographic & Health Survey EMERGENCY ROOM VISITS Hospital Registry 12 provinces, 4 days  Extrapolate HOSPITAL ADMISSIONS Hospital Registry 12 provinces, 4 weeks  Extrapolate DEATHS Death Registration System Remaining 29 provinces Forensic medicine Tehran “Extrapolate” : apply age-sex-victim type incidence rates to entire population

  9. Iran – building a national snapshot HOME CARE Demographic & Health Survey EMERGENCY ROOM VISITS Hospital Registry 12 provinces, 4 days  Extrapolate HOSPITAL ADMISSIONS Broken down by Hospital Registry 12 provinces, 4 weeks  Extrapolate • age and sex groups • urban/rural • institutional care received • injury severity • victim mode (pedestrian, motorcycle, car occup, etc) • impacting vehicle • injuries (head, limb, etc) • time of day • type of road DEATHS Death Registration System Remaining 29 provinces Forensic medicine Tehran

  10. Results 50 Iran 45 World 40 High regions 35 income countries 30 25 RTI death rate, per 100000 20 15 10 5 0 UK Iran USA World Canada S. Asia Australia Germany New Zealand High income Sub-Sah Africa E. Asia & Pacific Europe & C. Asia M.East & N.Africa Latin Am. & Carib.

  11. Iran: RTI deaths vs other causes • Rank  Cause of Death # of deaths % total deaths • All causes 299338 100% • 1 Myocardial infarction 68892 23% • 2 Cerebral vascular diseases 33922 11.3% • 3 Road traffic injuries 30721 10.3% • 4 Other cardiac diseases 11459 3.8% • 5 Stomach cancer 7799 2.6% • 6 Chronic lung & bronchus disease 5297 1.8% • 7 Cancer of trachea,bronchus & lung 4596 1.5% • Disorders related to short gestation 4443 1.5% • and low birth weight • 9 Pneumonia 4413 1.5% • 10 Intentional self- harm 4344 1.5%

  12. RTI deaths: Police vs death registration

  13. Iran: victim mode of transport Deaths

  14. Iran: victim mode of transport Deaths Hospital admissions

  15. Country assessment of road traffic injuries in Mexico

  16. Mexico – building a national snapshot HOME CARE Surveys:World Health Survey,ENSANUT EMERGENCY ROOM VISITS Envelope from survey : further breakdown Using hospital registry (selected provinces) Broken down by HOSPITAL ADMISSIONS • age and sex groups • urban/rural • institutional care received • injury severity • victim mode (pedestrian, motorcycle, car occup, etc) • impacting vehicle • injuries (head, limb, etc) • time of day • type of road Envelope from survey : further breakdown Using Ministry of Health and IMSS Hospitals* DEATHS death registration * IMSS does not report external causes

  17. Estimating external causes from injuries Problem: • Hospitals record injuries (skull fx, ACL tear) • But policy makers want external causes (Road traffic injuries, fall, drownings) Solution: • Estimate external causes from injuries

  18. What we want … OUTPUT • Fall • Firearm • Drowning • Poisoning • Fire • Road traffic crash • Pedestrian • Bicyclist • Motorcyclist • Car occup. INPUT Computer Algorithm Victim AGE: 29 years SEX: Male STATE: Oaxaca TIME: 1645 hrs … … INJURIES: MCL rupture tibia fx skull fx

  19. Bayesian Inference • Bayes theorem: updates prior knowledge (probability) using new knowledge • For e.g. • Prior knowledge: • 10% of hospital admissions are from RTI • 80% of RTI victims have femur fractures • 20% of hospital admissions have femur fractures • New information: victim has a femur fracture • Bayes: p(victim was an RTI) = 80*10/20 = 40%

  20. Implementing with Hospital Data • Mexico MOH hospital dataset (injury cases) • Contains both injuries and external causes • Divide into two equal parts: • Training dataset(~ 50,000 cases) • Test dataset (remaining ~ 50,000 cases) • Use Training dataset to derive prior probabilities • Computed as a function of age and sex of victim • Predict external causes in Test dataset • Compare prediction with known answer

  21. Validation Results:fraction of poisonings assigned correctly

  22. Validation Results:fraction of drownings assigned correctly

  23. Validation Results:fraction of falls assigned correctly

  24. Validation Results:fraction of car occup. assigned correctly

  25. Rankings by frequency of occurrence

  26. Conclusions about Bayesian Inference • Bayesian inference allows a rapid estimate of the distribution of external causes in large hospital datasets • Performance • Works well for causes with clearly defined injuries • Not so well when underlying injuries are similar • We need to make the best use of existing data sources rather than wait for quality to improve

  27. Mexico – building a national snapshot HOME CARE Surveys:World Health Survey,ENSANUT EMERGENCY ROOM VISITS Envelope from survey : further breakdown Using hospital registry (selected provinces) Broken down by HOSPITAL ADMISSIONS • age and sex groups • urban/rural • institutional care received • injury severity • victim mode (pedestrian, motorcycle, car occup, etc) • impacting vehicle • injuries (head, limb, etc) • time of day • type of road Envelope from survey : further breakdown Using Ministry of Health and IMSS Hospitals* DEATHS death registration * IMSS does not report external causes

  28. Mexico RTI death rates 50 Iran 45 World 40 High Regions 35 income countries 30 25 RTI death rate, per 100000 MEX 20 15 10 5 0 UK Iran USA World Canada Mexico S. Asia Australia Germany New Zealand High income Sub-Sah Africa E. Asia & Pacific Europe & C. Asia M.East & N.Africa Latin Am. & Carib.

  29. Iran and Mexico: RTI death rates by age

  30. Iran Mexico

  31. Country assessment of road traffic injuries in Ghana

  32. Data Sources Inventory • World Health Survey (2) Household RTI Survey (Kumasi and Brong-Ahafo) (3) Hospital based death registration data (4) Police and road traffic injury surveillance data (5) Mortuary data (6) Hospital based morbidity study (7) DSS INDEPTH Sites -verbal autopsy of cause of death

  33. Ghana death rate DSS ?

  34. Global Burden of Disease

  35. GBD INJURY EXPERT GROUP • Theoretical Input • List of Discussion Papers • Case definition • GBD “Sequelae” • Multiple injuries • Empirical disability wts • Handling unspecifieds • Recurrent injuries • … • … • Real World Data • High Income Countries • - ??? • Low Income Countries • Environmental scan • Data Access Data Analysis Numbers Theory GBD ENGINE Estimates Sensible health priorities

  36. GBD-Injury Expert Group: Discussion Topics Topic 1: Case definition John Langley, Ronan Lyons, Limor Aharonson-Daniel, Tim Driscoll, Caroline Finch Topic 3: Categories and definitions for GBD injury 'sequelae'James Harrison, Wendy Watson, Maria Segui-Gomez, Jed Blore, Belinda Gabbe, Fred Rivara, Saeid Shahraz, Phil Edwards, Pablo PerelTopic 4: Dimensions of functioning relevant to injuryWendy Watson, Maria Segui-Gomez, Ronan Lyons, Sarah DerrettTopic 5: Dealing with multiple injuriesBelinda Gabbe, Limor Aharonson-Daniel, Mohsen Naghavi, Theo Vos, Phil Edwards, Pablo Perel, Margaret WarnerTopic 6: Implications for measurement of injury burden of method chosen to generate weights Ronan Lyons, Rebecca Spicer, Juanita Haagsma, Ed Van Beeck, Steven Macey

  37. GBD-Injury Expert Group: Discussion Topics (contd) Topic 7: Dealing with unspecified and poorly specified categories in case data setsKavi Bhalla, James Harrison, Lois Fingerhut, Margaret Warner, M. Naghavi Topic 9: Recurrent injuryCaroline Finch, Ronan Lyons, Soufiane Boufous Topic 10: Assumption that burden of a condition is independent of the mechanism that produced itMaria Segui-Gomez, Belinda Gabbe, Limor Aharanson-DanielTopic 11: Mortality dataLois Fingerhut, Kavi Bhalla, Mohsen Naghavi, Tim DriscollTopic 12: GBD External Cause List and Associated ICD Code Groups James Harrison, Kavi Bhalla, Caroline Finch

  38. GBD-Injury Expert Group: Discussion Topics (contd) Topic 13: Disability prevalence Wendy Watson, Sarah DerrettTopic 15: Making optimal use of police reported statistics on national road traffic injuriesDavid Bartels, Kavi BhallaTopic 16:  Sports injuries - are we ignoring a significant public health opportunityCaroline Finch

  39. GBD Data Sources

  40. What Data Sources • Mortality • Gold Standard: High Quality death registration data • Alternate sources: police, mortuary, ? • Non-fatal Injuries: • Health Surveys with injury questions • Hospital and ER records What Types of Data • Variables: Age, sex, external causes, nature of injuries • Degree of Aggregation: • Unit record data (very nice but not essential) • Tabulations in GBD injury and “sequelae” groups using our scripts (excellent) • Detailed tabulations using other groupings (very good) • Report or paper with summary tabulations (ok – better than nothing)

  41. Maximizing Data Access(from low income countries) • Conduct Environmental Scan • Scan published literature (ongoing) • Google searches (ongoing) • Ask expert group (ongoing) • Requesting Data Access • Personal contacts • Call for contributions in journal (ongoing) • Circulate requests via World Bank, WHO field offices (not yet done)

  42. Environmental Scan • Availability of death registration data

  43. Environmental Scan • Where do we have hospital data

  44. Environmental Scan Countries with surveys

  45. Environmental Scan Countries with: national death registration hospital registry data health surveys

  46. Making optimal use of available data to fill in the information gaps Population based health surveys Administrative records from medical institutions Death registers

  47. GBD INJURY EXPERT GROUP • Theoretical Input • List of Discussion Papers • Case Definition • GBD “Sequelae” • Multiple Injuries • Empirical Disability wts • Handling unspecifieds • Recurrent injuries • … • … • Real World Data • High Income Countries • - ??? • Low Income Countries • Environmental scan • Data Access Data Analysis Numbers Theory GBD ENGINE Estimates Sensible health priorities

  48. http://sites.google.com/site/gbdinjuryexpertgroup

  49. Thanks! • Email: kavi_bhalla@harvard.edu • Website: http://www.globalhealth.harvard.edu (click on Research => Road Traffic Injuries) This work is supported by a grant from the World Bank Global Road Safety Facility

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