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15 March 2023 | Story Jóhann Thormählen | Photo Supplied
Nomsa Mathontsi is a senior member of the Kovsie women’s football team and has played in two Varsity Football and three USSA tournaments.

Nomsa Mathontsi senior member of the University of the Free State (UFS) Women’s Football team has, despite enormous challenges excelled and achieved remarkable heights on and off the field.

Ms Mathontsi has been an avid sportsperson from an early age. Among her many extraordinary achievements the talented Ms Mathontsi has also been on the South African Women’s National Soccer squad Banyana Banyana.

What many may not know though, is that this is notwithstanding the obstacle Ms Mathontsi overcame in order to reach such heights. The Kovsie striker has limited hearing in her right ear and received a cochlear implant before she began her UFS journey in 2018.

I got affected when I was really young. I was doing athletics. This one time I had a very hectic race, which blocked my right ear –

At the University of the Free State Kovsie Health takes into account the medical history of its’ high-performance athletes who are closely monitored with the aim of achieving optimal performance. As in the case of Ms Mathonsi it is most important that the medical practitioner, Dr Gerhard Jansen, and his team at Kovsie Health take into consideration her medical history. 

Kovsie Health provides a range of services to the UFS football programme that include: medical screenings; injury diagnosis; treatment; and rehabilitation. 

Compulsory medicals

“I got affected when I was really young. I was doing athletics. This one time I had a very hectic race, which blocked my right ear.

“At first my family thought it was going to be OK, until we realised it was extremely serious and we had to do medicals,” the versatile player says.

Ms Mathontsi, a BAdmin student in Economic and Management Sciences has an implant in her skull but cannot play with her hearing device.

“Even the implant itself can be dangerous. If someone hits me with an elbow or something hard or (on the) head, it will hurt.”

It is compulsory for all UFS football players to take the South African Football Association medicals. Kovsie Health assists players in this process. This is conducted before each new season and include a basic medical, family and practice history, basis line tests, injury assessments etc.

According to Jansen, Kovsie Health needs to be aware of Mathontsi’s medical history so that they may make informed decisions and provide guidance. We will document it and if she should get concussion you will have to take it into account. We for instance know we shouldn’t see a loss of hearing as a negative sign.”

Special Kovsie football family

Mathontsi has represented the UFS in two Varsity Football campaigns, three USSA tournaments and plays in the Free State Sasol League.

Although she hasn’t made her international debut, she received two call-ups to the South African women’s squad and trained with Banyana Banyana.

The number 8 loves her UFS football family and says she has also learnt to balance sport and university.

“I think it is the bond and relationships we have with each other on and off the field that makes it special.

“I have learnt a lot in terms of leadership and how to take leadership as a senior player in the team.”

News Archive

UFS physicists publish in prestigious Nature journal
2017-10-16

Description: Boyden Observatory gravitational wave event Tags: Boyden Observatory, gravitational wave event, Dr Brian van Soelen, Hélène Szegedi, multi-wavelength astronomy 
Hélène Szegedi and Dr Brian van Soelen are scientists in the
Department of Physics at the University of the Free State.

Photo: Charl Devenish

In August 2017, the Boyden Observatory in Bloemfontein played a major role in obtaining optical observations of one of the biggest discoveries ever made in astrophysics: the detection of an electromagnetic counterpart to a gravitational wave event.
 
An article reporting on this discovery will appear in the prestigious science journal, Nature, in October 2017. Co-authors of the article, Dr Brian van Soelen and Hélène Szegedi, are from the Department of Physics at the University of the Free State (UFS). Both Dr Van Soelen and Szegedi are researching multi-wavelength astronomy.
 
Discovery is the beginning of a new epoch in astronomy
 
Dr van Soelen said: “These observations and this discovery are the beginning of a new epoch in astronomy. We are now able to not only undertake multi-wavelength observations over the whole electromagnetic spectrum (radio up to gamma-rays) but have now been able to observe the same source in both electromagnetic and gravitational waves.”
 
Until recently it was only possible to observe the universe using light obtained from astronomical sources. This all changed in February 2016 when LIGO (Laser Interferometer Gravitational-Wave Observatory) stated that for the first time they had detected gravitational waves on 14 September 2015 from the merger of two black holes. Since then, LIGO has announced the detection of two more such mergers. A fourth was just reported (27 September 2017), which was the first detected by both LIGO and Virgo. However, despite the huge amount of energy released in these processes, none of this is detectable as radiation in any part of the electromagnetic spectrum. Since the first LIGO detection astronomers have been searching for possible electromagnetic counterparts to gravitational wave detections. 
 
Large international collaboration of astronomers rushed to observe source
 
On 17 August 2017 LIGO and Virgo detected the first ever gravitational waves resulting from the merger of two neutron stars. Neutron star mergers produce massive explosions called kilonovae which will produce a specific electromagnetic signature. After the detection of the gravitational wave, telescopes around the world started searching for the optical counterpart, and it was discovered to be located in an elliptical galaxy, NGC4993, 130 million light years away. A large international collaboration of astronomers, including Dr Van Soelen and Szegedi, rushed to observe this source.
 
At the Boyden Observatory, Dr Van Soelen and Szegedi used the Boyden 1.5-m optical telescope to observe the source in the early evening, from 18 to 21 August. The observations obtained at Boyden Observatory, combined with observations from telescopes in Chile and Hawaii, confirmed that this was the first-ever detection of an electromagnetic counterpart to a gravitational wave event. Combined with the detection of gamma-rays with the Fermi-LAT telescope, this also confirms that neutron star mergers are responsible for short gamma-ray bursts.  
 
The results from these optical observations are reported in A kilonova as the electromagnetic counterpart to a gravitational-wave source published in Nature in October 2017.
 
“Our paper is one of a few that will be submitted by different groups that will report on this discovery, including a large LIGO-Virgo paper summarising all observations. The main results from our paper were obtained through the New Technology Telescope, the GROND system, and the Pan-STARRS system. The Boyden observations helped to obtain extra observations during the first 72 hours which showed that the light of the source decreased much quicker than was expected for supernova, classifying this source as a kilonova,” Dr Van Soelen said.

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