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12 March 2018 Photo Hanno Otto
Odeion School of Music opening concert presented on 17 March 2018
The Odeion School of Music Camerata 2018.

The University of the Free State’s Odeion School of Music is presenting the annual opening concert on Saturday, 17 March at 7:30pm at the Odeion. The programme will comprise a curated sequence of solo recitals, chamber music, including ensembles recited by the talented OSM students.

The Free State Youth Wind Ensemble will make their debut as part of the programme with an Ammerland recital by the Dutch composer Jacob den Haan (1959 -) as well as Majestia by James Swearingen (1947 -), an American born composer. This composition will be accompanied by a variety of diverse works.

George Foster and colleague Danré Strydom founded the ensemble in the form of a collaboration initiative between the Odeion School of Music and the Free State Symphony Orchestra. Six cellists, Chris van Zyl, Aschlin Grobbelaar, Marcus Motaung, Matthys Coetzee and John Minnaar will join forces with Prof Anmari van der Westhuizen to recite the riveting Requiem for Six Cellos and Piano, Op.66 by David Popper. 

During the concert, the OSM will bestow the Order of the OSM on string pedagogues Francois and Tilla Henkins, as a gesture of gratitude and respect for their lifelong dedication to the education and mentoring of several excellent South African violinists and cellists.

The OSM Camerata will end the concert with a rendition of the Romanian Folk Dances, Sz.56 Béla Bartok for Orchestra under the baton of Xavier Cloete. The OSM Camerata is the laureate of the first International Ictus Music Competition (University and Conservatory Orchestras) presented last year for the first time. For more information about the Odeion School of Music and the upcoming concert please visit the website.

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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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