There are limitations associated with IR imaging, which is much slower than morphological analysis. Added to this is IR imaging's diffraction limit, which results in a lower spatial resolution. These limitations motivated Falahkheirkhah and Bhargava to develop software to make IR imaging 20 times faster with only a 5% drop in accuracy.
Society is currently in the golden age of software development, where developing new software is much faster than developing new hardware. Because of this, scientists can develop software that extracts more out of today’s machinery while waiting on the machines of tomorrow.
"Even though developing new software and computational tools is important, the development of true next-gen machines will require both software and hardware to go hand in hand," Falahkheirkhah said.
Having been in development for almost 20 years, IR imaging is approaching deployment as a staple technology for cancer diagnosis. With many of its pitfalls addressed, the main hurdles that lie in the way of its mainstream use include publicity and training.
As with every new technology, users must be trained in the software's use. According to Falahkheirkhah, this software can be modified to a user’s preferences and ease of access in as short a time as one week.
COMPAMED-tradefair.com; Source: Beckman Institute for Advanced Science and Technology