Thursday, October 08, 2026

  

Chronic respiratory disease burden rises in the WHO Western Pacific Region despite falling age-standardized mortality



A GBD 2023 analysis in Med Research highlights aging, COPD, tobacco smoking and air pollution as central priorities




International Society for Health Data Science

Trends in age-standardized rates of chronic respiratory diseases in the Western Pacific Region, 1990-2023

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Time trends are shown in separate panels for (A) age‐standardized incidence rate (ASIR), (B) age‐standardized prevalence rate (ASPR), (C) age‐standardized mortality rate (ASMR), and (D) age‐standardized DALY rate (ASDR). Solid lines represent point estimates, and shaded regions indicate 95% uncertainty intervals. EAPC values with 95% confidence intervals are shown within each panel. All rates are expressed per 100,000 population.

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Credit: Zhang Yue | Yi‐Cheng Fu | Wen Zuo | Li‐Na Wang| Xing‐Xing Suo | Peng Sun | Jin‐Hui Bian| Ming‐Yan Wang

A new analysis in Med Research uses the Global Burden of Disease 2023 study to assess chronic respiratory diseases (CRDs) across 37 countries and territories in the WHO Western Pacific Region from 1990 to 2023. The study examined incidence, prevalence, deaths, disability-adjusted life years (DALYs), age-standardized rates, disease subtypes and selected modifiable risk factors.

By 2023, CRDs accounted for 22.0 million incident cases, 155.9 million prevalent cases, 1.4 million deaths and 29.9 million DALYs in the region. Compared with 1990, absolute numbers increased across all major indicators, largely reflecting population growth and aging. At the same time, age-standardized mortality and DALY rates declined substantially, with estimated annual percentage changes of -2.67% and -2.31%, respectively.

The burden was concentrated among older adults and remained higher in males. COPD dominated the disease composition, accounting for 75.3% of CRD-related DALYs in 2023. Among the selected risk factors, tobacco smoking and air pollution were the leading modifiable contributors, followed by occupational exposure.

Illustrative comparisons of China, Japan, the Republic of Korea, Vietnam, the Philippines and Australia showed marked heterogeneity within the region. The findings suggest that respiratory-health strategies in the Western Pacific Region should combine sustained tobacco control, cleaner air, stronger occupational protection, earlier detection and long-term management of chronic respiratory conditions.

Because the analysis relies on GBD modelled estimates, country-level differences in diagnostic access, data completeness and cause-of-death coding should be considered when interpreting cross-country comparisons.

Even brief e-cigarette use can cause lasting lung damage and weaken defenses against respiratory viruses, study finds




National Jewish Health






Just days of e-cigarette vapor exposure can injure the lungs' most delicate tissue and leave it more vulnerable to viral infection, according to a study led by National Jewish Health researchers and published in JCI Insight.(Opens in a new window)

The research team studied human lung epithelial and endothelial cells, along with precision-cut human lung tissue, all taken from the distal lung — the deep, delicate region where oxygen passes into the bloodstream. They exposed these tissues to e-cigarette vapor alone, and separately tested vapor exposure followed by infection with a respiratory virus, in preclinical models. Within 24 hours, e-cigarette vapor damaged the protective barrier of the distal lung, triggered cellular stress, impaired cells’ internal process for clearing damaged components, slowed cell growth and repair, and increased cell death.

Strikingly, signs of lung stress persisted 10 days after just a five-day exposure period ended. The team observed lasting changes in barrier function, tissue remodeling, and Th1 immunity — a branch of the immune system critical to fighting viral infections.

Prior vaping exposure also increased SARS-CoV-2 viral burden and suppressed several antiviral genes following infection.

“Our findings suggest that even short-term vaping exposure can initiate injury in the deepest and most delicate regions of the lung,” said senior author Irina Petrache, MD, pulmonologist and chief of the Division of Pulmonary, Critical Care and Sleep Medicine at National Jewish Health. “Importantly, some effects persisted after exposure ended and altered the immune response to a subsequent viral infection.”

The findings, which will need to be confirmed in future studies in people, point to biological mechanisms that may help explain why vaping has been linked to lung injury and greater susceptibility to respiratory infections. The researchers noted that repeated exposure could potentially contribute to chronic lung disease by sustaining cellular injury and disrupting normal repair.
 

National Jewish Health is the leading respiratory hospital in the nation delivering excellence in multispecialty care and world class research. Founded in 1899 as a nonprofit hospital, National Jewish Health today is the only facility in the world dedicated exclusively to groundbreaking medical research and treatment of children and adults with respiratory, cardiac, immune and related disorders. Patients and families come to National Jewish Health from around the world to receive cutting-edge, comprehensive, coordinated care. To learn more, visit njhealth.org or the media resources page.

 

Reshaping banking and financial services with disruptive technologies



New book explores how disruptive technologies are transforming banking and financial services




Bentham Science Publishers





Bentham Books announces the release of Reshaping Banking and Financial Services with Disruptive Technologies, an insightful edited volume examining how emerging technologies are transforming financial institutions, customer experiences, risk management and the broader financial ecosystem.
 

About the Book

Rapid advances in artificial intelligence, blockchain, cloud computing, the Internet of Things and data analytics are reshaping the way financial institutions operate and deliver services. Alongside opportunities for greater efficiency, transparency and innovation, these technologies are creating new challenges related to cybersecurity, regulation, ethics and digital trust.

Reshaping Banking and Financial Services with Disruptive Technologies explores the opportunities and challenges associated with the digital transformation of modern finance. The book covers emerging issues including fintech regulation, ethical decision-making, financial fraud detection, cybersecurity, investor confidence, green banking, portfolio management, digital payments, hyper-personalized banking, AI and machine learning, and cyber-physical financial systems.

By bringing together conceptual analysis, contemporary research and practical perspectives, the volume provides a comprehensive understanding of the technological and strategic forces shaping the future of banking and financial services.
 

Key Highlights

• Impact of AI, blockchain, cloud computing, IoT and data analytics on financial services
• Fintech regulation, cybersecurity, digital trust and ethical decision-making
• Financial fraud detection, investor confidence and risk management
• Green banking, digital payments and hyper-personalized financial services
• Emerging technologies and cyber-physical systems shaping the future of finance


Readership: Researchers, financial-sector practitioners, policymakers and postgraduate students interested in banking, fintech, financial technology and digital transformation.
 

About the Editors

Monica Gupta, Priya Jindal, and Piyush Gupta bring together contemporary research and multidisciplinary perspectives on financial innovation, digital transformation, emerging technologies and the evolving banking and financial services landscape.

Book Link: https://bit.ly/4rT66Us

DOI: https://doi.org/10.2174/97988988175341260101

 

Material cycling across Earth’s spheres and triggers of Cambrian explosion: A tectonic perspective





ELSP
Cartoon for contributions of tectonics to Earth surficial system during Cambrian explosion

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Cartoon for contributions of tectonics to Earth surficial system during Cambrian explosion

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Credit: Jinlong Yao/ Northwest University, Yigui Han/ Northwest University, Donghai Zhang/ Northwest University, Qian Liu/ Northwest University, Long Chen/ Northwest University, Pengyuan Cui/ Northwest University, Guochun Zhao/ Northwest University & The University of Hong Kong





A comprehensive model of the Cambrian explosion featuring "multi-factors coupling and multi-sphere driving". Supercontinent breakup and mantle plume activity served as the initial trigger of environmental change in the Neoproterozoic, the orogenic belts and subduction zones under the modern plate tectonic regime during Gondwanan assembly served as the long-term sustained driving force, and the extreme geomagnetic field served as an important environmental stressor. The coupling of these three factors jointly provided the genetic and environmental triggers, material basis, and ecological space required for the Cambrian explosion, and together they drove the milestone evolution of Earth's habitability.

The unique characteristics of Earth include life, an oxidized atmosphere, plate tectonics, continental crust, and the hypsometry between ocean and continent. These characteristics are also fundamental elements of Earth's habitability. The evolution of Earth's habitability is largely attributed to its stable but continuously evolving oceans, continents, magnetic field, atmosphere, and surface temperature, as well as the exchange of elements and energy among Earth's different spheres. On geological timescales, tectonic movement and the supercontinent cycle have been the main drivers of continental formation and the exchange of elements and energy between oceans and continents, and between the surface spheres and the solid Earth, which has driven the evolution of Earth's surface environment. Multi-sphere driving mechanisms have triggered extreme events in the evolution of life and the environment, and ultimately shaped a habitable planet with an oxidizing ocean and atmosphere and biodiversity. Related research has become a focus of international Earth science research. These advances also have broad implications for understanding natural hazards, resource distribution, environmental change, climate evolution, and the development of planetary habitability. However, how Earth evolved from an early uninhabitable planet into a habitable planet with a multi-sphere system and flourishing life still involves major scientific debates.

To address these long-standing uncertainties, this paper systematically summarizes the patterns and characteristics of Earth's multi-sphere evolution, explores tectonically driven cross-sphere material cycling, and discusses the driving factors of the Cambrian explosion from the perspective of solid Earth science. The authors believe that the evolution of Earth's tectonic regime is a key driving force for changes in the mode and efficiency of cross-sphere material cycling. Although certain characteristics of modern plate tectonics may have appeared locally in the Archean or Paleoproterozoic, Dr. Yao argues that a global-scale modern plate tectonic regime was not finally established until the assembly of Gondwana during the Neoproterozoic–Early Paleozoic. Relevant indicators include whole-plate deep subduction and global tectonic reorganization, along with extensive metamorphic records and bimodal metamorphic T/P ratio distribution identical to that of the modern Earth.

This paper constructs a co-evolutionary mechanism of "supercontinent cycle–surface environment–life evolution," linking the breakup of Rodinia → Snowball Earth → the Neoproterozoic Oxygenation Event (NOE) → Gondwana orogens and carbon cycling → the Cambrian explosion into a complete chain of reactions. The breakup of Rodinia triggered large igneous province (LIP) eruptions and CO₂ degassing, followed by basalt weathering that consumed CO₂ and triggered Snowball Earth. The extreme greenhouse climate after the end of Snowball Earth and the oxidation event laid the ecological foundation for the Ediacaran biota radiation and the Cambrian explosion. The assembly of Gondwana formed a 9,000-km-long super-orogenic belt located at middle to low latitudes, triggering intense weathering and denudation, delivering large amounts of nutrient elements (such as phosphorus) to the ocean, enhancing marine productivity, and driving and sustaining the NOE. In addition, "orogen-driven carbon cycling" played a key role in the long-term stability of the climate. The large-scale subduction–accretionary orogens during Gondwanan assembly had dual functions as both carbon source and carbon sink. Subduction-zone metamorphic decarbonation and arc volcanism continuously degassed CO₂, preventing the Earth from falling into a permanent "icehouse" due to excessive weathering. Meanwhile, intense silicate weathering continuously consumed CO₂, forming a negative feedback cooling effect. Together, these maintained the surface temperature above the threshold suitable for life. This surface environment of "continuous oxygenation, sufficient nutrients, and relatively stable climate" provided the necessity of large-scale metazoan radiation for energy supply, biomineralization, and ecological stability. Finally, extreme geomagnetic events should also be incorporated into the triggering mechanisms of the Cambrian explosion. At the Ediacaran–Cambrian boundary, the strength of Earth's magnetic field dropped to an extremely low level, and the polarity reversal frequency reached as high as 20–25 times per million years, indicating that the geodynamo mechanism once collapsed. The initial formation of Earth's inner core may have been related to the cooling of Earth's interior caused by whole-plate deep subduction under the modern plate tectonic regime, while the enhanced penetration of high-energy particles and UV-B radiation caused by the weakened magnetic field may have exerted extinction pressure on the Ediacaran biota, while also providing selective advantages for animals with vertical burrowing, biomineralized shells, or free-swimming capabilities, thereby "accelerating" the Cambrian explosion.

Key findings include:

(1) Tectonics and supercontinent cycles serve as primary driving forces for the evolution of Earth’s habitability.

(2) Plate tectonics and mantle plume drive the exchange of elements and energy between different spheres.

(3) Coupled tectonic-environmental changes and geomagnetic field triggered the Cambrian explosion.

This paper “Material cycling across Earth’s spheres and triggers of Cambrian explosion: a tectonic perspective” was published in Continent and Life Evolution.

Yao J, Han Y, Zhang D, Liu Q, Chen L, et al. Material cycling across Earth’s spheres and triggers of Cambrian explosion: a tectonic perspective. Cont. Life Evol. 2026(2):0011, https://doi.org/10.55092/cle20260011.

 

Armed conflict accelerates global cropland loss: Study





Chinese Academy of Sciences Headquarters





Armed conflict accelerates cropland loss, and the effects can persist for years after conflict begins and vary substantially with conflict severity and social conditions, according to a new study published in Nature Food on September 24.

The study, led by Prof. LI Guangdong, Dr. QI Wei, and Prof. WANG Zhenbo from the Institute of Geographic Sciences and Natural Resources Research of the Chinese Academy of Sciences, provides global evidence of the long-term effects of armed conflict on cropland and agricultural production.

Armed conflict is widely recognized as a major driver of food insecurity, but its long-term effects on cropland have been poorly understood at the global scale.

In this study, the researchers combined annual 30-m-resolution global cropland maps from 2000 to 2020 with more than 460,000 georeferenced armed conflict events across 155 countries.

They examined cropland changes in buffer regions extending five kilometers from conflict locations. They then used difference-in-differences and propensity score matching statistical methods to distinguish conflict-related changes from broader environmental and socioeconomic trends.

The study found that areas exposed to armed conflict covered only about 3% of the global land area yet accounted for more than 6% of the world’s cropland in 2020, indicating disproportionate exposure of agricultural land to conflict. While global cropland expanded overall between 2000 and 2020, cropland within conflict-affected areas declined slightly over the same period.

Further analysis showed that armed conflict was associated with an average 3.01% reduction in cropland area, equivalent to an annual loss of 14.46 hectares per conflict-exposed buffer region. These effects persisted for years after the onset of conflict.

A complementary spatial comparison showed that conflict-affected areas experienced 23.7% greater cropland loss than otherwise comparable non-conflict areas. The largest losses were concentrated in Western Africa, Eastern Africa, and Southeast Asia.

According to the researchers, the agricultural consequences of armed conflict vary substantially across regions and depend on conflict severity and social context.

The effects varied substantially with conflict intensity and duration. Areas experiencing very frequent conflict showed particularly severe cropland losses, with the highest-frequency group losing about one-third of its cropland. Protracted and high-severity conflicts were associated with much greater losses than intermittent or low-severity conflicts. By contrast, areas transitioning to post-conflict peace showed no clear evidence of continued cropland decline.

The researchers also found that conflict-related cropland losses varied with broader social and institutional conditions. Losses tended to be greater in countries with higher levels of refugee displacement, with a similar pattern observed for food insecurity. By contrast, higher scores for government effectiveness, regulatory quality, and the rule of law corresponded to smaller losses. According to the researchers, these findings suggest that institutional capacity may help protect agricultural systems against the effects of conflict.

To assess the implications for food production, the research team converted the estimated cropland losses into potential crop production and dietary energy. After accounting for cropland gains and losses related to urban expansion, conflict-affected areas lost approximately 249,667 km2 of cropland between 2000 and 2020.

The dietary energy associated with the crops that could have been produced on this land was estimated to be sufficient to meet the minimum annual requirements of approximately 255.54 million people.

The researchers emphasized that this figure represents forgone production potential, rather than actual food consumption or realized food insecurity, which also depend on trade, prices, distribution, and access.

Overall, the findings reveal the persistent and uneven effects of armed conflict on cropland and show how these effects vary with conflict characteristics and institutional conditions.

According to the researchers, the findings highlight the importance of monitoring conflict alongside cropland change and integrating short-term humanitarian responses with longer-term efforts to restore agricultural infrastructure, support farmers, and strengthen local institutions in conflict-affected regions.

 

Climate disinformation can push carbon taxes off a cliff model shows





KeAi Communications Co., Ltd.

Fig. 1 from the article

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Climate and policy outcomes under disinformation scenarios, comparing peak temperature, final atmospheric CO₂, early carbon taxation, and average abatement under a politically constrained planner and majority voting across benchmark, early, late, persistent, and intervention scenarios.

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Credit: Katsiaryna Bahamazava and Stanley Reznik




Carbon pricing is widely regarded as a cornerstone of climate policy, yet real-world carbon prices remain far below the levels recommended by benchmark climate models. One reason may lie not in the physics or economics of climate change, but in what people believe about it. Most climate-economy models assume that citizens hold correct beliefs about climate damages. In practice, climate disinformation can distort those beliefs and weaken support for mitigation.

In a study published in the KeAi journal Risk Sciences, researchers from University College Dublin and the ILaVita Foundation developed a dynamic climate-economy model in which the population is divided into two groups: "informed" agents, who understand the true extent of climate damage, and "misinformed" agents, who systematically understate it. The share of informed agents shifts over time through learning, disinformation shocks, and feedback from visible climate harm.

The team compared two ways of setting a carbon tax. In the first, a politically constrained planner understands the true damages but faces implementation costs whenever policy exceeds what public opinion will support. In the second, policy is decided by majority voting and adjusts gradually, reflecting how slowly real tax systems change.

"Contrary to the common view that insulated planners are always better suited for long-horizon climate policy, majority voting can initially generate stronger carbon taxation than a politically constrained planner," explains corresponding author Katsiaryna Bahamazava of University College Dublin. “As long as informed voters remain the majority, the median voter backs the ambitious policy, producing stronger early mitigation and lower peak warming.”

That "democratic advantage", however, proved fragile. Once disinformation erodes the informed majority, the political target for carbon taxation shifts sharply, producing what the authors describe as a cliff-edge dynamic in which implemented policy declines rapidly. The planner, by contrast, weakens more smoothly as public support fades.

Notably, timing matters too. Disinformation arriving late or persisting over time was especially damaging because it undermines support after the transition to stronger climate policy has begun, generating "hothouse" warming trajectories under both regimes. Encouragingly, a sufficiently strong counter-disinformation intervention almost completely offset an early disinformation shock, returning outcomes close to the no-disinformation benchmark.

"Protecting the information environment is not merely a matter of public discourse or democratic quality; it is a macroeconomic component of effective climate policy," says co-author Stanley Reznikof the ILaVita Foundation. "Information policy is not just complementary to carbon pricing; it helps sustain the political conditions under which carbon pricing remains feasible."

###

Contact the author: Katsiaryna Bahamazava, School of Computer Science, University College Dublin, Dublin, Ireland

Email: Katsiaryna.Bahamazava@ul.ie

The publisher KeAi was established by Elsevier and China Science Publishing & Media Ltd to unfold quality research globally. In 2013, our focus shifted to open access publishing. We now proudly publish more than 300 world-class, open access, English language journals, spanning all scientific disciplines. Many of these are titles we publish in partnership with prestigious societies and academic institutions, such as the National Natural Science Foundation of China (NSFC).

 

Only 9% of major companies use biodiversity indicators, study finds




Lund University






Biodiversity indicators can help companies make more sustainable decisions. But only nine per cent of the world’s largest companies in sectors with a major impact on biodiversity use such indicators, according to a new study from Lund University. The researchers also show that different indicators can lead to different conclusions and present seven recommendations for how they should be used.

Researchers from Lund University reviewed sustainability reports from 89 of the world’s largest companies operating in the sectors with the greatest impact on biodiversity: food, beverages, tobacco, apparel, chemicals, construction, energy and mining. Eight of the companies reported using biodiversity indicators to inform their decisions. However, only two of the eight reported using more than one indicator, something the researchers can now show is of great importance.

“Different indicators measure different aspects of nature. Our results show that no single biodiversity indicator provides a complete picture. Companies that rely on only one indicator may therefore make decisions that protect one biodiversity value while damaging another,” says William Sidemo Holm, one of the researchers behind the study.

In the new study, the researchers conducted analyses comparing four different indicators. The results show that the indicators often differ in their assessments of how important a geographical area is for biodiversity. A company that uses only one indicator risks concluding that an area is of little importance for biodiversity, even though it may be highly valuable from perspectives that the particular indicator does not capture.

“If companies want to understand and report their impact on biodiversity accurately, they need to use several indicators rather than a single measure. Indicators can play a crucial role in informing decisions that affect biodiversity, but there is still considerable room for improvement in how they are used today,” says William Sidemo Holm.
 

The researchers’ recommendations for future development and application of biodiversity indicators:

  1. Use multiple biodiversity indicators to capture different aspects of biodiversity and avoid overlooking important values.
  2. Use more than one indicator per biodiversity aspect when possible, reducing bias from specific datasets or methods.
  3. Use composite indicators cautiously, mainly as an initial screening tool; rely on individual indicators for important decisions.
  4. Assess biodiversity at the ecoregion level, not only globally, to recognise important biodiversity in less species-rich ecosystems.
  5. Develop new indicators for underrepresented biodiversity dimensions, such as genetic diversity and ecological connectivity.
  6. Improve taxonomic coverage, especially for plants, fungi and invertebrates, which are currently underrepresented.
  7. Combine biodiversity indicators with assessments of future human pressures, such as projected land-use change, to better inform business decisions.