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22 September 2020 | Story Leonie Bolleurs | Photo Anja Aucamp
Every year, several of our staff and students are involved in projects in our community to make a positive difference. One of the projects where we are making a difference is at Bloemshelter.

I am because you are. Ubuntu. What better month do we have to celebrate our Ubuntu, our South Africanness, than September – Heritage Month. 

South Africans are known for their warm and generous spirit, their humanity. Closer to home, here at the University of the Free State, this is also a reality. 

Bettering the lives of others

Numerous staff members and students engage in community projects and partnerships. “As a regionally engaged university, the UFS supports development and social justice through the practice of engaged scholarship,” says Karen Venter, Head of the Division: Service Learning within the Directorate of Community Engagement.

Engaged scholarship occurs at the heart of community-university partnerships in close and co-operative interaction with several organisations in broader society for the common public good.

A few of the flagship partnership projects that come to mind are Bloemshelter (caring for the homeless and developing as a social enterprise); Towers of Hope (caring for the vulnerable and transforming the city); and the Princess Gabo Foundation (in Thaba ‘Nchu, where they obtained a zero teenage pregnancy rate in school with a simulating doll-parenting programme to initiate responsible reproductive health education). 

In Qwaqwa, Community Engagement partnerships involve the Itemoheleng Soy Project and the AGAPE Foundation for Community Development. Here, the development focuses on nutrition to boost people’s immune systems – especially during the COVID-19 pandemic. According to Moodi Matsoso from the Directorate: Community Engagement on our Qwaqwa Campus, the AGAPE Foundation is manufacturing rosehip juice, which helps with digestion and the healing of ulcers. 

Bishop Billyboy Ramahlele, Director of Community Engagement, is also passionate about sharing knowledge and skills regarding enterprise development to others, supporting them to reach their full potential with the building of tiny houses. 

According to him, an estimated 3 000 of our students are spending at least 127 000 hours per year engaging in the community through 73 academic service-learning modules, excluding the engagement of student organisations such as the Enactus UFS and co-curricular KOVSIE ACT (Active Civic Teaching) residential schools projects.

Vegetables for the food insecure

Another project that is making a difference not only in the lives of our students, but also for food-insecure families, is the UFS Community Garden Project. 

Kovsie ACT, in collaboration with Student Affairs and the university’s Centre for Sustainable Agriculture, Rural Development and Extension (CENSARDE), is running a project where they provide fresh vegetables, including cabbage, carrots, beetroot, kale, and peas to food-insecure families. 

Heritage Month is an ideal opportunity for everyone to show their Ubuntu spirit. Get involved and share some of your time, your talents, and your treasures to improve the lives of others.  There are several causes in Bloemfontein and Phuthaditjhaba that need support (clothes, food, blankets, toys, funding). 

You saw what some of our colleagues and students are doing. What are you doing to make a difference in communities?

- See Mandala Day poster for a complete list of the partnerships, programmes, and projects where our university’s Directorate of Community Engagement is making a difference. 

News Archive

Mathematical methods used to detect and classify breast cancer masses
2016-08-10

Description: Breast lesions Tags: Breast lesions

Examples of Acho’s breast mass
segmentation identification

Breast cancer is the leading cause of female mortality in developing countries. According to the World Health Organization (WHO), the low survival rates in developing countries are mainly due to the lack of early detection and adequate diagnosis programs.

Seeing the picture more clearly

Susan Acho from the University of the Free State’s Department of Medical Physics, breast cancer research focuses on using mathematical methods to delineate and classify breast masses. Advancements in medical research have led to remarkable progress in breast cancer detection, however, according to Acho, the methods of diagnosis currently available commercially, lack a detailed finesse in accurately identifying the boundaries of breast mass lesions.

Inspiration drawn from pioneer

Drawing inspiration from the Mammography Computer Aided Diagnosis Development and Implementation (CAADI) project, which was the brainchild Prof William Rae, Head of the department of Medical Physics, Acho’s MMedSc thesis titled ‘Segmentation and Quantitative Characterisation of Breast Masses Imaged using Digital Mammography’ investigates classical segmentation algorithms, texture features and classification of breast masses in mammography. It is a rare research topic in South Africa.

 Characterisation of breast masses, involves delineating and analysing the breast mass region on a mammogram in order to determine its shape, margin and texture composition. Computer-aided diagnosis (CAD) program detects the outline of the mass lesion, and uses this information together with its texture features to determine the clinical traits of the mass. CAD programs mark suspicious areas for second look or areas on a mammogram that the radiologist might have overlooked. It can act as an independent double reader of a mammogram in institutions where there is a shortage of trained mammogram readers. 

Light at the end of the tunnel

Breast cancer is one of the most common malignancies among females in South Africa. “The challenge is being able to apply these mathematical methods in the medical field to help find solutions to specific medical problems, and that’s what I hope my research will do,” she says.

By using mathematics, physics and digital imaging to understand breast masses on mammograms, her research bridges the gap between these fields to provide algorithms which are applicable in medical image interpretation.

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