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Stellenbosch University


Shocking rate of plant extinctions in South Africa

According to a study published in Current Biology, 79 plants have been confirmed extinct from South Africa's three biodiversity hotspots since 1700, representing 45.4% of all known plant extinctions from 10 world hotspots. The main drivers for these extinctions are agriculture, urbanisation, and invasive species.

SourceStellenbosch University·JournalCurrent Biology·DateAug 22, 2019

More black South Africans are donating blood

The South African National Blood Service has increased the proportion of donations from black South Africans by fivefold since 2005. This significant improvement is attributed to the implementation of individual donation nucleic acid testing (NAT), which has reduced HIV transmission risks.

SourceStellenbosch University·JournalTransfusion·DateOct 31, 2018

Zambezi Valley may soon be too hot for tsetse flies

A study based on 27 years of data from Mana Pools National Park suggests that temperature increases have caused significant declines in local tsetse fly populations. This could lead to reduced transmission of trypanosome pathogens causing sleeping sickness, but may also make other areas more suitable for the flies.

SourceStellenbosch University·JournalPLOS Medicine·DateOct 23, 2018

Biodiversity suffers as climate warms

A global temperature increase of 2°C would double risks for plants, animals, and insects, leading to widespread biodiversity loss. If left unchecked, warming could trigger systemic ecological simplification, threatening ecosystem services crucial for human well-being.

SourceStellenbosch University·JournalScience·DateMay 17, 2018

HIV also targets the brain

Researchers at Stellenbosch University found that HIV affects the brain in early stages of infection, leading to decreased blood flow and brain functional impairment. The study used fMRI scans to compare brain activity of people with and without HIV, revealing a link between frontal lobe atrophy and cognitive symptoms.

SourceStellenbosch University·JournalAIDS·DateNov 30, 2017

Reformulation of Markowitz theorem

A new version of Markowitz's portfolio theory predicts inflated growth and reduced volatility in diverse populations across the landscape. It was developed by Prof Cang Hui and colleagues to quantify population demographics and behavior in invasive species management.

SourceStellenbosch University·JournalProceedings of the National Academy of Sciences·DateNov 7, 2017

Phones keeping students from concentrating during lectures

Research suggests that smartphones and digital media are distracting students during university lectures, leading to lower academic performance. The constant multitasking of digital natives hampers their ability to focus on the lecture content, making sense of it difficult when switching attention to their phones every five minutes.

SourceStellenbosch University·JournalComputers in Human Behavior·DateOct 19, 2017

New treatment options for type 2 diabetes

Researchers have found that bacterial cell wall constituents can cause abnormal clotting, leading to inflammation in Type 2 diabetes. A new treatment option involves using LPS-binding protein (LBP) to reverse this process, offering a new approach to treating the disease.

SourceStellenbosch University·JournalScientific Reports·DateAug 29, 2017

Should we be worried about hepatitis E?

Scientists are noticing a shift from hepatitis E as only a disease of the poor to one that can also affect affluent people in developed world settings. The virus is re-emerging as zoonotic, with transmission linked to pork products and environmental contamination.

SourceStellenbosch University·JournalJournal of Clinical Virology·DateJul 27, 2017

Saving the paintbrush lily from extinction

A major conservation effort is underway to conserve the last remaining paintbrush lilies in Stellenbosch University Botanical Garden. The species, Haemanthus pumilio, has declined drastically due to habitat destruction and invasive species. The garden aims to increase the population through micropropagation and control burns.