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29 April 2020 | Story Andre Damons | Photo Supplied
Intubation training on a manikin (Doctors from Department of Anaesthesiology).

The Department of Anaesthesiology at the University of the Free State, in collaboration with the Clinical Simulation and Skills Unit, has trained almost 500 hospital staff members dealing with the Covid-19 pandemic since the lockdown started.

The unit assisted doctors, nurses, and staff working at the Universitas and Pelonomi hospitals with training in the use of personal protective equipment (PPE), including protective clothing, masks, gloves, aprons, and eye protection. The training started the week of 16 March and was led by Prof Gillian Lamacraft, Head of the Pain Control Unit in the Department of Anaesthesiology, and registrars in the Department of Anaesthesiology. Training was not only limited to healthcare workers in hospital wards designated for COVID-19-positive or suspected COVID-19 patients, but workers throughout the hospital received training, lest they be required to care for COVID-19-positive patients in the future, especially if there is an increase in the cases being treated in the hospital.

Training members of the anaesthesia department
According to Prof Lamacraft, the training was initially started to ensure that members of the anaesthesia department would be protected if the need arose for them to wear PPE while treating a COVID-19 patient. Members of the anaesthesia department are not routinely involved in the medical care of patients with serious infectious disease (e.g. Ebola virus), and because they were not previously required to wear PPE regularly, they are not familiar with its use. 
“Internationally, the healthcare workers most exposed to the virus appear to be the ones most at risk of dying, presumably owing to the greater viral load they receive. COVID-19 patients who are severely ill, may require intubation so they can be ventilated – this procedure puts the doctor performing it very close to the airway of the patient, and greatly at risk of being contaminated with COVID 19 during this procedure.” 

“Failure to intubate the patient successfully can lead to the rapid demise of the patient, so it has been decided as hospital policy that anaesthetists will preferably be the doctors performing these intubations, if they are available, as they are considered the doctors best at this procedure. Therefore, anaesthetists will be a group of doctors in the hospital at great risk of COVID virus exposure,” says Prof Lamacraft.

Training other healthcare workers
To facilitate this training, registrars in the Department of Anaesthesiology made videos to demonstrate the donning (putting on) and doffing (taking off) procedure for PPE. Members of the Universitas Academic Hospital’s Infection Control Team provided them with the required information and assessed the training videos for correctness.

The department used the Clinical Simulation and Skills Unit’s facilities at the university to conduct this training, so that the participants could also physically practise putting on and taking off the PPE after watching the videos. 

“Since then, we have been doing this training every working day. Having trained our department, the members of the COVID-19 task team for the Universitas Hospital asked us to train other healthcare workers at the hospital. Accordingly, we have trained many other healthcare workers (over 430 for PPE training alone), including heads of department, professors of medicine, specialists, registrars, medical officers, interns, all ranks of nursing staff, clinical technologists, and household aids.”

The different types of PPE
Prof Lamacraft says it is important that all these healthcare workers are taught the different types of PPE (i.e. standard and aerosol-generating procedure PPE (AGP PPE). In particular, they had to understand that a special type of mask, an N95 mask, should only be used for AGP PPE, as these are in extremely short supply internationally. 

“Many healthcare workers did not know how to put these on correctly, or which size to wear – this had the potential for wastage of this precious commodity. Taking off PPE contaminated with the COVID-19 virus is a very risky procedure. Failure to do so correctly, can lead to not only the healthcare worker contaminating themselves (e.g. by touching their eyes or face while taking off their masks), but also to the contamination of the healthcare workers assisting the person in taking off their PPE; or even to the participant taking home the virus on their bodies and contaminating their family at home. Therefore, the healthcare workers had to be shown how to take off their PPE without contaminating themselves.”
In order to reduce the risk of trainers and other participants being infected during training by healthcare workers who are asymptomatic carriers of COVID-19, only two to four participants have been trained at a time and strict rules were kept regarding social distancing and the use of hand sanitiser.

The training is essential to protect healthcare workers
Prof Mathys Labuschagne, Head: Clinical Simulation and Skills Unit, says volunteering doctors and nurses are also trained to work in ICUs with COVID-19 patients. The ICU department trained these volunteers in the use of ventilators, to assist with putting up drips and lines, intubation, and PPE. The goal is to train healthcare providers to assist in ICU when needed. 

“This training is essential to train and prepare healthcare workers when the patient numbers are increasing. The training is also essential to protect the healthcare workers against infection, because we need them to stay healthy to be able to manage the patients,” according to Prof Labuschagne.

Dr Edwin Turton from the Department of Anaesthesiology says the training is for frontline healthcare workers (nurses, cleaners, porters, doctors, and even washers from theatre) who need to protect themselves in order to protect their patients and all other staff helping them to care for the patients.

“Doctors and nurses need different forms or levels of PPE for working in the clinical environment, and we need them to train to wear appropriate PPE for AGP and contact with PUI and positive patients. They need to be able to protect themselves. The training is for all healthcare workers and not only for doctors and nurses,” says Dr Turton.

News Archive

UFS boasts with most advanced chemical research apparatus in Africa
2005-11-23

Celebrating the inauguration of the NMR were from the left Prof Frederick Fourie (Rector and Vice-Chancellor of the UFS),  Dr Detlef Müller (Development Scientist and Manager:  Africa and Asia of Bruker in Germany, the supplier of the NMR), Prof Jannie Swarts (head of the head of the Division Physical Chemistry at the UFS) and Prof Herman van Schalkwyk (Dean:  Faculty of Natural and Agricultural Sciences at the UFS). Photo: Lacea Loader

UFS boasts with most advanced chemical research apparatus in Africa 

The University of the Free State’s (UFS) Department of Chemistry now boasts with some of the most advanced chemical research apparatus in Africa after the latest addition, a nuclear magnetic resonance (NMR) spectrometer, was inaugurated today by the Rector and Vice-Chancellor, Prof Frederick Fourie.  The NMR is used to analyse molecular structures. 

Last month the Department of Chemistry celebrated the installation of the most advanced single crystal X-ray diffractometer in Africa.  The diffractometer provides an indispensable technique to investigate among others the solid state of compounds for medicinal application.

“Three years ago the UFS executive management realised that, if we want to build a university of excellence, we should invest in research.  We started to think strategically about chemistry and decided to bring the apparatus at the Department of Chemistry on a more competitive standard.  Strategic partnerships were therefore secured with companies like Sasol,” said Prof Fourie during the inauguration ceremony.

“The installation of the NMR symbolises the ability of the UFS to turn academic areas around.  I hope that this is the beginning of a decade of excellence for chemistry at the UFS,” said Prof Fourie.

”The catalogue value of the Bruker 600 MHz NMR is approximately R11 million.  With such an advanced apparatus we are now able to train much more post-graduate students,“ said Prof Jannie Swarts, head of the Division Physical Chemistry at the UFS.

”The NMR is the flagship apparatus of the UFS Department of Chemistry that enables chemists to look at compounds more easily at a molecular level.  Research in chemistry is critically dependent on NMR, which is a technique that can determine the composition of reactants and products in complicated chemical reactions, with direct application is most focus areas in chemistry,“ said Prof Swarts.

”Parts of the spectrometer consists of non-commercial items that were specifically designed for the UFS Department of Chemistry to allow the study of unique interactions in e.g. rhodium and platinum compounds,” said Prof Swarts.

According to Prof Swarts the NMR enables chemists to conduct investigations on the following:

To evaluate for example the complex behaviour of DNA in proteins as well as the analysis of illegal drugs sometimes used by athletes. 
It provides an indispensable technique to investigate compounds for medicinal application for example in breast, prostate and related bone cancer identification and therapy, which are currently synthesised in the Department of Chemistry.  
It can also be applied to the area of homogeneous catalysis where new and improved compounds for industrial application are synthesized and characterised, whereby Sasol and even the international petrochemical industry could benefit. This analytical capacity is highly rated, especially in the current climate of increased oil prices.
The NMR can detect and identify small concentrations of impurities in feed streams in the petrochemical industry, e.g. at Sasol and also the international petrochemical industry.  These minute amounts of impurities can result in metal catalyst deactivation or decomposition and can cause million of rands worth in product losses.
It is indispensable for studying the complexity of samples that is non-crystalline. These materials represent the vast majority of chemical compounds such as solvents, gasoline, cooking oil, cleaning agents and colorants as examples. 

According to Prof Swarts the general medical technique of MRI (magnetic resonance imaging) in use at larger hospitals, is based on NMR technology.

”The NMR apparatus enabled the Department of Chemistry to characterise complex molecules that were synthesised for the multi-national company, FARMOFS-PAREXEL, and to negotiate research agreements with overseas universities,” said Prof Swarts. 

Media release
Issued by: Lacea Loader
Media Representative
Tel:  (051) 401-2584
Cell:  083 645 2454
E-mail:  loaderl.stg@mail.uovs.ac.za
22 November 2005
 

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