Latest News Archive

Please select Category, Year, and then Month to display items
Previous Archive
25 January 2024 | Story Leonie Bolleurs | Photo Sonia Small
Prof Corinna Walsh
Prof Corinna Walsh says the PEA POD Infant Body Composition System works by directly measuring an infant’s body weight and volume, and then uses these measurements to calculate the body fat percentage, fat mass, and fat-free mass.

Nutritional and growth patterns during early life have been associated with health, development, and well-being throughout the life cycle. It is also associated with risks for developing obesity and non-communicable diseases, such as cardiometabolic diseases, later in life. These are the findings of Prof Corinna Walsh, Professor in the Department of Nutrition and Dietetics.

Maternal and child health

”In line with national priorities, a strong research focus area of the Faculty of Health Sciences and the School of Health and Rehabilitation Sciences is maternal and child health,” she says. She goes on to mention that the Department of Nutrition and Dietetics has established a reputable research programme. This programme focuses primarily on the nutritional status of pregnant women and how the early environment to which they are exposed during and after pregnancy affects short- and long-term health outcomes of the offspring.

“In our previous work, the assessment of birth outcomes of infants was, however, limited by the lack of equipment to analyse body composition. The research that we can conduct with the PEA POD® provides us with immense additional potential,” remarks Prof Walsh.

She explains, “The PEA POD Infant Body Composition System is an infant-sized air displacement plethysmography system. It works by directly measuring an infant’s body weight and volume, and then uses these measurements to calculate the body fat percentage, fat mass, and fat-free mass.

According to her, the assessment of body volume takes two minutes. “The PEA POD technique also does not require collection of any fluids and does not expose the infant to radiation. It can be performed as often as required without any risks and be used up to a maximum of 8-10 kg body weight, from birth to about eight months,” she says.

Advanced technology

In the context of research on infant body weight and composition, there is a need for accurate measurement techniques that can differentiate between fat mass and fat-free mass. Prof Walsh is of the opinion that traditional measures such as body mass index (BMI) and weight for length have limitations in this regard, as they do not provide a clear distinction between these components. Furthermore, BMI may not be reliable for assessing adiposity or obesity in paediatric populations, and it can vary significantly with age and gender.

Addressing these challenges, the PEA POD equipment offers advanced technology that allows for highly accurate quantification of infant body composition. This technological capability opens up opportunities to study the effects of early-life nutrition on growth and the developmental mechanisms that may lead to later comorbidities. So, when it comes to researching infant body weight and composition, the PEA POD equipment plays a crucial role in providing precise data and insights.

News Archive

School of Medicine boasts with a new unit
2013-02-22

 

New Clinical Skills Simulation unit is one of its kind.
Photo: Supplied
22 February 2013


The Faculty of Health Sciences at the University of the Free State (UFS) can now boasts with a new Medical Clinical Skills Simulation unit (MCSU) at the School of Medicine.

This newly established Clinical Simulation Unit is the first dedicated clinical simulation unit of its kind in South Africa. It was opened on Thursday 21 February 2013.

This facility is equipped with an operating theatre, Intensive Care Unit, two simulation and three private rooms.

In addition, the Unit has control rooms with cameras for recording purposes and debriefing facilities, the latter with video equipment for playback of recorded scenarios.

The Simulation Unit at the UFS’ School of Medicine is based on accredited units in the USA and the UK.

Dr Mathys Labuschagne, Head of the Simulation Unit, says the concept for this kind of unit is still new, but is already a very important part of clinical skills training in the health professions.

“We are the only university in South Africa with a unit dedicated to clinical skills simulation only and not a combination of clinical skills training which includes some simulation.”

The primary goal of the MCSU is to provide educational opportunities to undergraduate and postgraduate medical students, as well as opportunities for other healthcare students in the Faculty of Health Sciences, to be exposed to inter-professional skills training. The MCSU will play a role in quality assurance of training and assessment, as well as research.

The aim of the Clinical Simulation Unit is to provide a facility where medical and other healthcare students or professionals can be exposed to:

  • Training in a safe environment.
  • Training without harm to the patient.
  • Scenario-based learning.
  • Debriefing.

The facility will also be utilised for post-qualification refresher and training courses.

We use cookies to make interactions with our websites and services easy and meaningful. To better understand how they are used, read more about the UFS cookie policy. By continuing to use this site you are giving us your consent to do this.

Accept