Areas of Expertise and Treatments
3D Conformal Radiotherapy uses three-dimensional imaging and treatment planning to shape radiation beams according to the tumour while reducing unnecessary exposure to surrounding healthy tissues.
IMRT is an advanced radiation technique that varies radiation intensity across treatment beams to accurately deliver the prescribed dose to complex tumour shapes.
IGRT uses imaging before or during radiation treatment to verify tumour position and improve treatment accuracy, particularly when tumour or organ position may change between sessions.
Stereotactic Radiosurgery delivers highly focused radiation to selected brain and spinal lesions without conventional surgical incisions and may be performed using technologies such as CyberKnife or Gamma Knife.
SBRT delivers highly focused radiation in a limited number of treatment sessions for selected tumours outside the brain while aiming to minimise exposure to surrounding healthy structures.
Stereotactic Adaptive Radiotherapy combines stereotactic precision with adaptive treatment planning to account for changes in tumour position, size or surrounding anatomy during therapy.
Proton Beam Therapy uses charged particles to deliver radiation with controlled dose distribution and may help reduce radiation exposure to healthy tissues in selected cancers, including paediatric malignancies.
Carbon Ion Therapy is an advanced particle radiation technique that uses carbon ions to deliver highly focused radiation to selected tumours and may be considered for certain complex or radiation-resistant cancers.
CyberKnife uses robotic radiation delivery to target selected tumours and lesions with stereotactic precision while continuously accounting for patient and tumour position.
Gamma Knife Radiosurgery delivers focused radiation to selected brain lesions and neurological conditions using multiple precisely directed radiation beams.
VMAT delivers modulated radiation while the treatment machine rotates around the patient, helping provide conformal radiation dose distribution efficiently for selected cancers.
Image-Guided Brachytherapy combines internal radiation treatment with imaging guidance to accurately place radiation sources near or within the tumour.
Radiation treatment for brain tumours may involve stereotactic radiosurgery, conventional radiation or other precision techniques depending on tumour type, size and location.
Radiation therapy for spinal tumours requires precise targeting to control disease while limiting radiation exposure to the spinal cord and surrounding healthy tissues.
Radiation treatment for paediatric cancers requires specialised planning to achieve tumour control while reducing unnecessary exposure to developing tissues and organs.
Head and neck radiation therapy uses precise treatment planning to target cancer while protecting important structures involved in swallowing, speech, salivary function and other essential functions.
Radiation treatment for prostate cancer may include external beam radiation, stereotactic techniques or other precision radiotherapy approaches depending on cancer stage and patient-specific factors.