Objective: To provide estimates of the global incidence, mortality and disability-adjusted life-years (DALYs) associated with testicular cancer (TCa) between 1990 and 2016, using findings from the Global Burden of Disease (GBD) 2016 study.
Materials And Methods: For the GBD 2016 study, cancer registry data and a vital registration system were used to estimate TCa mortality. Mortality to incidence ratios were used to transform mortality estimates to incidence, and to estimate survival, which was then used to estimate 10-year prevalence. Prevalence was weighted using disability weights to estimate years lived with disability (YLDs). Age-specific mortality and a reference life expectancy were used to estimate years of life lost (YLLs). DALYs are the sum of YLDs and YLLs.
Results: Global incidence of TCa showed a 1.80-fold increase from 37 231 (95% uncertainty interval [ UI] 36 116-38 515) in 1990 to 66 833 (95% UI 64 487-69 736) new cases in 2016. The age-standardized incidence rate also increased from 1.5 (95% UI 1.45-1.55) to 1.75 (95% UI 1.69-1.83) cases per 100 000. Deaths from TCa remained stable between 1990 and 2016 [1990: 8394 (95% UI 7980-8904), 2016: 8651 (95% UI 8292-9027)]. The TCa age-standardized death rate decreased between 1990 and 2016, from 0.39 (95% UI 0.37-0.41) to 0.25 (95% UI 0.24-0.26) per 100 000; however, the decreasing trend was not similar in all regions. Global TCa DALYs decreased by 2% and reached 391 816 (95% UI 372 360-412 031) DALYs in 2016. The age-standardized DALY rate also decreased globally between 1990 and 2016 (10.31 [95% UI 9.82-10.84]) per 100 000 in 2016).
Conclusion: Although the mortality rate for TCa has decreased over recent decades, large disparities still exist in TCa mortality, probably as a result of lack of access to healthcare and oncological treatment. Timely diagnosis of this cancer, by improving general awareness, should be prioritized. In addition, improving access to effective therapies and trained healthcare workforces in developing and under-developed areas could be the next milestones.
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Eur J Cancer
January 2025
Cancer Registry of Norway, Norwegian Institute of Public Health, Pb 5313 Majorstuen, Oslo 0304, Norway. Electronic address:
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Department of Nutrition, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
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Institute of Estuarine and Coastal Research, School of Marine Engineering and Technology, Sun Yat-sen University, Guangzhou 510275, China. Electronic address:
With climate change and intensified human activities, disasters such as heavy rainfall, flooding, typhoons, and storm surges are becoming more frequent, posing significant threats to lives, property, and economic development. We propose a method combining extreme value theory and probability distribution to examine the flood severity under the effect of strong human activities. By focusing on the Pearl River Delta (PRD), as one of the most populated areas of China, we quantified changes in the severity of extreme water level for different return levels between 1966 and 1990 and 1991-2016 (with strong human activities), associated with the spatial patterns over the PRD.
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Institute of Philosophy and Sociology, Polish Academy of Sciences, Nowy Świat 72, 00-330, Warsaw, Poland. Electronic address:
Rare diseases have had a special status within European Union (EU) health policy since the late 1990s. According to key EU legal documents, rare disease patients are entitled to the same good quality care as others. These individuals are particularly vulnerable due to the "low prevalence" and "uniqueness" of their disease.
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