IIT Madras researchers develop instrumentation for cancer treatment

One of the treatment modalities for cancer is hyperthermia. This is a method by which the temperature of a region containing tumour cells is raised above normal levels. Exposing cells to elevate temperature leads to cytotoxicity.

Hyperthermia can be used in several ways. According to the U.S. National Cancer Institute’s website, it can be used for achieving hyperthermia locally by using an external applicator or by placing probes inside cavities to treat small areas; regionally, for large areas; or whole body, to treat metastatic cancer.

Some of the modalities are being used, such as in the treatment of peritoneal cavity (space inside the abdomen which contains intestines, stomach and liver) when the doctor uses an infusion of the area, during surgery, with heated anticancer drug.

Others such as using applicators regionally are in the process of being developed, as fabricating the antennae, or array of antennae, that can achieve this can present challenges in instrumentation.

Key Points

The hyperthermia therapy may not be very effective as a stand alone method but is good when used along with radiation therapy and chemotherapy.

When there is an array of antennas, the heat may be focussed into a greater depth than is possible with a single antenna.

A “water bag” attached to the surface of the applicator cools down the skin from outside.

The resultant temperature profile shows a peaking at a certain depth which can be adjusted by the cooling process.

Hyperthermia is scarcely practised in India and has little influence on oncology practice and awareness regarding this treatment modality is low. Hyperthermia therapy is time-consuming.

Microwaves have a larger wavelength in the tissue as compared to high-frequency acoustic waves and so can be used to target larger tumours which can range in size from few centimetres to several centimetres.

Their achievement is in reducing the size of the antenna to suit the required frequency of operation at 434 Megahertz. From the available large 10x10 cm square antenna, they have made progress to a circular one with radius 2 cm.

Current Affairs 7th August, 2016
Current Affairs Round Up Bullet Points, June, 2016 Current Affairs Round Up Bullet Points, May, 2016

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