Screening For Breast Cancer With No Compression And No Radiation
Screening For Breast Cancer With No Compression And No Radiation: "Screening For Breast Cancer With No Compression And No Radiation
Who would have thought that a technology for detecting breast cancer used today actually had its� roots dating back to 480 B.C.? Digital Infrared Thermal Imaging (DITI) is a fairly new technology that represents a practice that was once used by Hippocrates. This technology is based on a technique that Hippocrates would use as he spread mud over his patients and then watched to see which areas dried first. It was in those places on the body that could show a disease.
It wasn�t until 1957 that the first modern application of thermography came into existence when a Canadian doctor discovered that the skin temperature over a breast tumor was higher than that of healthy tissue. By 1982, the Food and Drug Administration approved thermography and classified it as an additional diagnostic tool for the detection of breast cancer. However, DITI was introduced as a diagnostic tool before strict protocols were established for both the technicians who performed the scans and the doctors who interpreted the scans. Shortly after its initial beginnings, DITI fell out of favor as a diagnostic tool in the medical community.
There are now stringent protocols both for testing and interpreting. Perhaps due to these guidelines, thermography (as with all digital technology) has exploded in its technique and capabilities. Thermal cameras detect heat given off by the body and display it as a picture on a computer monitor. These images are unique to the person and they remain stable over time. It is because of these characteristics that thermal imaging is a valuable and effective screening tool to determine changes that could point to trouble down the road. As we all know, early cancer detection is important to "
Who would have thought that a technology for detecting breast cancer used today actually had its� roots dating back to 480 B.C.? Digital Infrared Thermal Imaging (DITI) is a fairly new technology that represents a practice that was once used by Hippocrates. This technology is based on a technique that Hippocrates would use as he spread mud over his patients and then watched to see which areas dried first. It was in those places on the body that could show a disease.
It wasn�t until 1957 that the first modern application of thermography came into existence when a Canadian doctor discovered that the skin temperature over a breast tumor was higher than that of healthy tissue. By 1982, the Food and Drug Administration approved thermography and classified it as an additional diagnostic tool for the detection of breast cancer. However, DITI was introduced as a diagnostic tool before strict protocols were established for both the technicians who performed the scans and the doctors who interpreted the scans. Shortly after its initial beginnings, DITI fell out of favor as a diagnostic tool in the medical community.
There are now stringent protocols both for testing and interpreting. Perhaps due to these guidelines, thermography (as with all digital technology) has exploded in its technique and capabilities. Thermal cameras detect heat given off by the body and display it as a picture on a computer monitor. These images are unique to the person and they remain stable over time. It is because of these characteristics that thermal imaging is a valuable and effective screening tool to determine changes that could point to trouble down the road. As we all know, early cancer detection is important to "

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