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Investigation of Ultrasound Imaging and Spectroscopy for Characterizing Breast Masses

Investigation of Ultrasound Imaging and Spectroscopy for Characterizing Breast Masses

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04050423
Enrollment
1200
Registered
2019-08-08
Start date
2014-09-23
Completion date
2029-09-30
Last updated
2023-12-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Breast Cancer

Keywords

Ultrasound, Spectroscopy, Characterization

Brief summary

Our objective in this study is to identify an optimal set of quantitative ultrasound parameters that can be used, non-invasively, to characterize breast masses with high accuracy, as determined histopathologically. Breast cancer is the most frequent form of non-epithelial cancer diagnosed in women, with approximately 1.5 million new cases diagnosed annually worldwide. Accurate diagnosis and characterization of disease play an important role in therapy planning for breast cancer treatment. Currently, the gold standard method of tumour diagnosis is pathological examination of core biopsy specimens. However, the invasive core biopsies can cause post-surgical complications. Besides, some lesions require repeat biopsy due to sampling errors during the initial biopsy. Also X-ray mammography and ultrasound B-mode images, which are used by radiologists for breast examination, lack reliable information about micro-structural properties of tissues. There is an urgent need of a non-invasive imaging modality that can provide rapid and quantitative information for breast tumour characterization, in real time and at the patient bed. The main goal, as described above, is to select the best quantitative ultrasound parameters that can facilitate breast cancer characterization, non-invasively.

Detailed description

This project is an observational/early validation study in human subjects that will use ultrasound imaging and spectroscopy to characterize suspected breast cancers. Patients will be imaged with ultrasound, and the acquired data will be analyzed using quantitative ultrasound techniques, in conjunction with textural analysis on generated parametric images. Results of quantitative ultrasound data analysis for these breast lumps will be compared to and correlated with their histopathological characteristics from pathology reports on core biopsy specimens, surgery reports, or radiology reports, available from patient charts. From this data we will potentially estimate the best hybrid ultrasound-based biomarker that can characterize suspected breast cancers, noninvasively.

Interventions

None listed

Sponsors

Sunnybrook Health Sciences Centre
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

1. Women or men with suspected breast cancer 2. Patients should have the ability to understand and the willingness to sign a written Informed consent document.

Exclusion criteria

1. Patients who have had chemotherapy, radiotherapy, or major surgery within 4 weeks prior to registering in the study or those who have not recovered from adverse events due to agents administered more than 4 weeks prior to registration 2. Receiving any other investigational agents 3. Any condition that is unstable or could jeopardize the safety of the patient and their compliance in the study.

Design outcomes

Primary

MeasureTime frameDescription
Select the best quantitative ultrasound parameters that can facilitate breast cancer characterization, non-invasivelyUp to 5 yearsCorrelate quantitative ultrasound parameters obtained using spectroscopic techniques, in conjunction with textural analysis on generated parametric images, to the histopathological characteristics from pathology reports on core biopsy specimens, surgery reports, or radiology reports.

Secondary

MeasureTime frameDescription
Results of ultrasound-based breast cancer characterization and clinical outcomes.Up to 5 yearsCorrelating the results of ultrasound-based breast cancer characterization.

Countries

Canada

Contacts

Primary ContactGregory J Czarnota, PhD, MD
gregory.czarnota@sunnybrook.ca(416)480-6128
Backup ContactSchontal Halstead
416-480-6100

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026