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21 December 2020 | Story Eugene Seegers | Photo Sonia Small
Prof Fanie Snyman, retired Dean of the Faculty of Theology and Religion, is the first South African to publish a volume in the respected Tyndale Old Testament Commentaries series, which deals with the Bible books of Nahum, Habakkuk, and Zephaniah.

Against the backdrop of the Faculty of Theology and Religion’s 40th anniversary, Prof Fanie Snyman, retired Dean and research associate, has recently published a commentary in the Tyndale Old Testament Commentaries series based in Cambridge, England, on the prophetic books Nahum, Habakkuk, and Zephaniah of the Old Testament. What makes his book special is that Prof Snyman is the first and for the foreseeable future the only South African Old Testament scholar to be commissioned to publish in this distinguished commentary series. This commentary series is widely read and consulted in the English-speaking scholarly communities of Africa, Australia, Great Britain, New Zealand, the USA, and many European countries.

In a virtual ‘sit-down’ with Prof Fanie, he explained how a research volume of this type is usually compiled: It starts with a verse-by-verse analysis of the Bible books, looking at the literary aspects of how the passage was written as well as considering its historical, social, and cultural background. This is done to obtain a better overall understanding of the text. Secondly, a volume of commentary is not merely regurgitating knowledge that has already been generated. Prof Fanie says that “it must deliver new, fresh perspectives on the current state of research on these books. What can I contribute to the understanding of these writings?” To accomplish this, he had to pore over stacks of research on these prophetic works to be as current as possible with modern research.

First contributor from Africa

Dr David Firth, the series editor, says: “Over the nearly sixty-year history of the Tyndale Old Testament Commentaries, we have not previously had any contributors from Africa. That has now been put right with the release of Prof SD Snyman’s new volume on Nahum, Habakkuk, and Zephaniah. Prof Snyman has brought together his expertise on the prophetic literature of the Old Testament and theological awareness to present a fresh work on these often-neglected books. Through his careful attention to how these books functioned in their ancient setting and mastery of the secondary literature, he is also able to point to the enduring importance of each of these books for contemporary readers. As such, he has admirably fulfilled the brief for the series and produced a volume that will serve a new generation who come to these books.”

Prof Fanie affirms that the burning issues raised in each of these books regarding situations in ancient Israel often mimic comparable issues in our modern society. For example, he underscores how Nahum brings the misuse of political power to the fore, a current and topical point of contention. Prof Snyman says: “My aim was to create a vertical theological perspective of that historical situation against the backdrop of contemporary issues. I believe that these texts have a relevance for us and upon us today.”

Other international works

This book is the third one published internationally by Prof Snyman. In 2012, he published a book on the prophetic literature of the Old Testament together with a Dutch colleague in the USA. In 2015, he published a commentary on the book of Malachi in Europe. This book was awarded the UFS Book Prize for Distinguished Scholarship in 2017. 

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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