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08 October 2021 | Story Angie Vorster | Photo Supplied
Angie Vorster is a Clinical Psychologist in the School of Clinical Medicine, University of the Free State (UFS), and believes that the only way to get rid of COVID-19, or at least to continue our lives alongside it, is for all of us to be vaccinated against this deadly virus

Opinion article by Angie Vorster, Clinical Psychologist in the School of Clinical Medicine, University of the Free State.


The World Mental Health Day campaign has chosen ‘Mental Health in an Unequal World’ as the theme for 2021. This is partly to raise awareness of the distinct polarisation between countries and individuals that has been highlighted by the COVID-19 pandemic over the past two years.  Access to health-care resources is significantly impinging the ability of countries across the world to address the effects of the pandemic, and stark inequality regarding pivotal elements such as access to vaccines has become visible. Obtaining, storing, and distributing vaccines has proven to add another burden to countries that are already financially and resource-impeded. Yet, once South Africa was lucky enough to secure adequate amounts of vaccines, we were faced with a baffling dilemma. How to get our residents to actually take it? In trying to understand the psychology behind vaccine hesitancy, it is interesting to note that the World Health Organisation listed vaccine hesitancy (delaying or refusing vaccination) as one of the top ten threats to global health – well before the outbreak of the COVID-19 virus. 

Understanding why people refuse or resist vaccination

To understand why people – who are otherwise reasonable, conscientious, and informed individuals – would refuse or resist vaccination, it is helpful to look at the 5C model. The first aspect is confidence – the extent to which the person trusts that the vaccine is safe and will in fact do what it is said to do. Confidence is also affected by the level of trust that the individual has in the system that dispatches the vaccine – consequently, individuals who are hesitant to vaccinate are likely to be suspicious of authority figures and structures. Another factor is the number of constraints that individuals face in accessing the vaccine. If there are many barriers (e.g., unable to afford transport to the vaccination site, unable to take time off work, etc.) in terms of the calculation of costs versus benefits, obviously it would be easier to delay or refuse vaccination. Interestingly, perceived scarcity makes items/events more desirable. Perhaps it is the very fact that the vaccine is free and available that makes people not interested in receiving it. 

Having a sense of collective responsibility and altruism are important characteristics in those who submit to vaccination. People who refuse vaccination tend to be more individualistically orientated and less motivated by the greater good of all, than by their own personal preferences. And this brings us to the final C, which is complacency. People who perceive the risk of COVID-19 as low tend to feel less urgency to vaccinate. Unfortunately, these are the patients who admit to COVID ward front-line workers that they now regret not getting vaccinated when they had the chance; instead, they frequently come to this realisation once their prognosis is terminal and they are facing the harrowing reality of dying, separated from their loved ones. 

And then we all know someone who believes in an ‘alternative’ explanation for the COVID-19 virus and its vaccine. There are many hypotheses as to why people prefer conspiracy theories over scientific truth – some of which include the fact that the science behind understanding viruses and their prevention is quite abstract and too complicated for lay people to understand. Unless they witness the devastating impact of the virus first-hand – it may be difficult to comprehend that an invisible entity can do so much damage. Another explanation is that the truth of a natural disaster such as a pandemic, which can occur at any time, randomly, and without warning, catching humanity off guard, is just too frightening to accept. So, it makes us feel safer to believe that humans ARE in fact in control and actually created COVID-19 for some larger sinister goal. Otherwise, we are left to contemplate how utterly vulnerable we all really are. Instead, we deny reality and substitute it with something that makes us feel a bit better. 

How to encourage all citizens to get vaccinated

So, how do we encourage all citizens to get vaccinated in order for our society to regain some pre-pandemic normality? Force, anger, and frustration (which are undoubtedly justified, particularly by those who work on the front line, and by those who have lost loved ones due to this virus) are not going to get us there. Instead, we need religious and other leaders to set the example and publicly advocate for vaccination. We need to tailor the information to the vast majority of South Africans who are not science-literate, making it accessible and understandable in their home language. Unfortunately, there is a significant percentage who will not be swayed by these actions, and for these fellow South Africans I have the following message:

It does not matter anymore whether or not COVID-19 is in fact the product of a global conspiracy and whether or not the companies that create vaccines do so only for financial gain. It does not matter that this all happened very fast and that we all realised how terribly weak and vulnerable the human body is. What does matter is that this virus is here. In our homes, our schools, cities, and country. And the only way to get rid of it, or at least to continue our lives alongside it, is for all of us to be vaccinated. We have science – facts, not opinions or feelings or theories or beliefs – to tell us that vaccines are safe and effective. In ten years from now, this will be the plague of 2020. I hope that you will be able to say that you were brave, even though you were scared, even though you were unsure, even though you might have been fine without the vaccine, but that you were strong enough and kind enough and human enough to do this small thing for the greater good of humanity. And our children will thank you for restoring connection and hugs, concerts, and playtime at school without distancing and sanitiser and masks. You will have done something important. For your community and your country and in fact, the world. This is your chance to be part of a great victory of humanity over a seemingly insurmountable tide of death and suffering. Our hope lies in you. Take this great responsibility, wear it with pride and importance, and meet us at the other side of COVID-19.

News Archive

State-of-the-art physics equipment and investment in students result in academic success
2017-09-26

Description: State-of-the-art physics equipment 1 Tags: State-of-the-art physics equipment 1 

At the recent nanotechnology facility tour at the UFS,
were, from the left, Dr Mthuthuzeli Zamxaka, SAASTA;
Prof Hendrik Swart, Sarchi Chair in the Department of Physics;
and Xolani Makhoba, Department of Science and Technology.
Photo: Leonie Bolleurs

Nanoscience, which is revealing new properties of very small arrangements of atoms, called nanoparticles, is opening a new world of possibilities. The Department of Physics at the University of the Free State is undertaking fundamental research with potential commercial applications. Its equipment and expertise is giving solid state physics research the edge in South Africa.

The UFS team of researchers and students are passionate about studying planets and atoms, all under one roof. Recently, the department, in collaboration with the South African Agency for Science and Technology Advancement (SAASTA), hosted a nanotechnology facility tour to give the public, learners and the media the opportunity to familiarise themselves with the science of nanotechnology, its origins, potential applications and risks.

Successes of the department
According to Prof Hendrik Swart, Senior Professor in the Department of Physics, the increase in resources since 2008 is playing a big role in the success rate of its research outputs. The Sarchi Chair awarded to Prof Swart in 2012 (bringing with it funding for equipment and bursaries) also contributed to the successes in the department.

The UFS Directorate Research Development also availed funding that was used for bursaries. These bursaries made it possible for the department to appoint 10 post-doctoral fellows, not one of them originally from South Africa.

The investment in people and equipment resulted in researchers and students publishing some 80 articles in 2016. Their work was also cited more than 900 times by other researchers in that year.

Another highlight in terms of the department’s growth in the past 10 years is the new wing of the Physics Building. Physics at the UFS is the only place in sub-Saharan Africa where state-of-the art equipment is found under one roof.

Description: State-of-the-art physics equipment 2  Tags: State-of-the-art physics equipment 2  

Antonie Fourie, Junior Lecturer in the UFS Department of
Physics, explained to a group of delegates and
members of the media the workings of an electron beam
evaporation system.
Photo: Leonie Bolleurs

Application of research
The department is a unique research facility with equipment that includes the X-ray Photoelectron Spectrometer (for the study of atoms), the Scanning Auger Microscope, as well as the Ion Time-of-Flight Secondary Ion Mass Spectrometer (revealing the chemical bonds in a sample, and drawing maps of the positions of atoms).

One of the areas on which the department is focusing its research, is phosphors. Researchers are exploring light emitting diodes (LEDs) which use less energy, are brighter and provide a wider viewing field. They are also looking into LED displays (LCDs) which are used in flat screens – the phosphors create the different colours and backlighting.

The research on solar cells reveals that phosphors can increase their efficiency by increasing the range of light frequencies which can be converted into electricity. Glow-in-the-dark coatings absorb light in the day and emit it later so cells can charge at night. As glow-in-the-dark phosphors become cheaper and more effective, they can be used as a lighting substitute on the walls of houses, street numbers and stop signs.

Video production of the Department of Physics research and equipment

 

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