A Novel, One Stop, Affordable, Point of Care and Artificial Intelligence Supported System of Screening, Triage and Treatment Selection for Cervical Cancer and Precancer in the Low-to-middle Income Countries
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 发起方
- 入组人数
- 3,200
- 试验地点
- 2
- 主要终点
- Histologically confirmed cervical intraepithelial neoplasia grade 2 or worse (CIN2+)
研究概览
简要总结
Artificial intelligence (AI) is fast gaining reputation as a highly promising solution for cervical cancer screening. AI-based detection of cervical neoplasias is named automated visual exam (AVE) by the National Cancer Institute, USA. The investigators propose to develop and evaluate the performance characteristics of a novel AI system to both screen and triage women as well as help in treatment decision making. AI will analyse infrared spectroscopic signals derived from urine samples of unscreened women for the presence of high-risk human papillomavirus (hr-HPV). Our preliminary study has shown that spectroscopy can detect hr-HPV in urine. For screen-positive women the AI will interpret a set of cervical images captured with a high-quality devoted camera to detect high grade cervical precancers and cancers and to determine the type of transformation zone (TZ) (helps in treatment decision). The prototype device for image capture and the AI algorithms are already developed by us. The technologies will be further improved in part 1 (initial 2 years) and validated in part 2 (subsequent 3 years). During Part 1, the investigators will analyse urine samples collected from 1100 women at multiple screening clinics in Zimbabwe for the presence of hr-HPV using spectroscopy and use the signals generated to improve the AI algorithm. In this part the investigators will also assess the concordance between hr-HPV detection in urine samples using spectroscopy and cervical human papillomavirus (HPV) detection using a validated HPV test. The cervical image recognition device and the AI algorithm will be further improved during part 1 by collecting more images from hr-HPV positive and negative women. AI will also be trained to interpret the cervical images to determine the TZ type. In part 2 total 2100 women will be screened in Zimbabwe with AI-supported spectroscopic analysis of urine to detect hr-HPV and a validated HPV test to evaluate and compare their sensitivity and specificity to detect histology-proved high grade cervical precancers and cancers. The sensitivity and specificity of AI-supported detection of cervical neoplasias on cervical images will be evaluated to triage the HPV positive women. The accuracy of AI to determine TZ type will be compared with expert opinion. During the field validation part (part 2), the investigators will also conduct a cost analysis and compare cost of our approach to current standard Zimbabwean practice. The International Agency for Research on Cancer- World Health Organization WHO (IARC-WHO) has partnered with The Neo Sense Vector Company (NSV), Delaware, USA (industry), The Engineering Department, Lancaster University, Lancaster, UK and The University of Zimbabwe, College of Health Sciences, Harare, Zimbabwe to implement this study focusing on innovation that will greatly contribute to the global elimination of cervical cancer, a WHO priority.
详细描述
Cervical cancer is a major public health challenge killing over 300,000 women annually at the most productive period of their lives and disproportionately affecting women in low- and middle-income countries (LMICs). Even in developed countries like the USA, the disparity between low- and high-income populations is striking. A cervical cancer death dramatically alters family and societal dynamics. In sub-Saharan Africa (SSA) for every 100 women who die from cervical cancer, 14 to 30 children die as an indirect consequence. Indeed, cervical cancer mortality is a real impediment to achieving WHO's Sustainable Development Goal of reducing premature mortality from non- communicable diseases (NCD) by a third before 2030. WHO have also recently adopted a resolution to eliminate cervical cancer globally. Whilst HPV vaccination will undoubtedly support this ambition for the next generation of girls, this vision also demands an effective screening and treatment programme. Yet current LMIC screening, investigation, and treatment regimes, especially are deeply flawed and not widely adopted.
The EASTER project aims to further develop and validate two new technologies for cervical cancer screening and diagnosis: (i) screening for human papillomavirus (HPV) in urine with spectroscopy, and (ii) diagnosis with artificial intelligence-assisted technology from the Neo Sense Vector Company (NSV), a private company. The project will recruit 3200 women and screen them for HPV.
The project will be implemented in two parts. Part 1. Technology improvement to achieve two key improvements.
- Improve the performance of spectroscopy and AI to detect high-risk human papillomavirus (hr-HPV) in urine samples.
- Improve the performance of the n-Gyn device and Artificial intelligence (AI) to capture the cervical images and interpret them.
Part 2. In the second part of the study, the investigators will test the functionality and effectiveness of the AI algorithms and devices developed through Part 1 in the same setting in Zimbabwe. The developed system of AI interpretation of urine samples will be evaluated as a screening test to detect cervical intraepithelial neoplasia grade 2 or worse (CIN2+) lesions and compared to a validated HPV detection test. The AI diagnostic accuracy of n-Gyn system to detect CIN2+ lesions based on captured cervical images will be evaluated as a triage test for HPV positive women in the detection of histopathologically confirmed CIN 2+ lesions.
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Screening
- 盲法
- None
入排标准
- 年龄范围
- 25 Years 至 49 Years(Adult)
- 性别
- Female
- 接受健康志愿者
- 否
入选标准
- •No cervical screening during the previous 3 years
- •Between the ages of 25 and 49 years
- •Understands and signs a written informed consent form
排除标准
- •Refusal to take part for any reason
- •Actively menstruating or pregnant
- •Treated earlier for cervical precancer or cancer
研究组 & 干预措施
Screening
The EASTER project aims to further develop and validate two new technologies for cervical cancer screening and diagnosis: (i) screening for human papillomavirus (HPV) in urine with spectroscopy, and (ii) diagnosis with artificial intelligence-assisted technology from the Neo Sense Vector Company (NSV), a private company. The project will recruit 3200 women and screen them for HPV.
干预措施: Screening with HPV test (Diagnostic Test)
结局指标
主要结局
Histologically confirmed cervical intraepithelial neoplasia grade 2 or worse (CIN2+)
时间窗: a) Through completion of part 1, an average of 2 years from the start of recruitment; b) Through completion of part 2, an average of 3 years after completion of part 1
Participants with histologically confirmed cervical intraepithelial neoplasia grade 2, 3 or cancer, including CIN2 positive for p16.
次要结局
未报告次要终点
