ClearSERS - A Novel Imaging Concept

EPSRC · United Kingdom government procurement

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August 30, 2028
Response Due
Active
Status

Opportunity Overview

We live in a world where we can image the deepest ravines in our oceans or the farthest objects in our Universe and as such it may come as a surprise to many that imaging inside of our living bodies without limitations still constitutes a major challenge. Although an array of powerful imaging techniques does exist, including Magnetic Resonance Imaging (MRI), X-ray Computed Tomography (CT), Positron Emission Tomography (PET) and Ultrasound (US), these are often unable to detect subtle chemical alternations inside our bodies associated with very early stages of diseases, such as cancers, infectious diseases and others. This is an ideal stage for these to be diagnosed; as the associated impact on the patient and their resulting symptoms are much reduced and, most importantly, associated treatments are most effective and least aggressive. This deficiency is often due to insufficient sensitivity and low bio-chemical specificity to detect the presence of low concentration biomarkers signalling the onset of a disease inside our bodies. High costs (MRI, PET) and the presence of ionising radiation (CT, PET) are additional factors precluding their wider applicability as early disease diagnostic tools.
Here we propose a radically new imaging concept, ClearSERS, that addresses many of the above limitations. The method combines the ultrahigh sensitivity and bioselectivity to low level biomarkers of Surface Enhanced Raman Spectroscopy (SERS), which uses gold nanoparticles (NP’s) to boost Raman signals billions of times or more, and the noninvasive depth probing capability of Spatially Offset Raman Spectroscopy (SORS), uniquely, with focussed ultrasound (US) resulting in a high spatial resolution, unattainable by light itself.
In this approach ultrasound is focussed onto SERS gold nanoparticles located within diseased tissue inducing a small change to their signal (e.g. intensity change or spectral shift). This signal change is read at the surface of tissue noninvasively using...

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Solicitation Details

Issuing agencyEPSRC
CountryUnited Kingdom
CategoryMedical Equipment
PublishedAugust 30, 2025
Procurement stageActive solicitation
Response dueAugust 30, 2028
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedSeptember 18, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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