Synchrotron Imaging of Human Ovaries Ex Situ
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 10
- 试验地点
- 1
- 主要终点
- Follicular counts
研究概览
简要总结
Ultrasonography is currently the most common diagnostic tool for imaging the female reproductive tissues. However, clinical ultrasonography is limited to the detection of ovarian structures ≥ 2 mm, with an inability to image microanatomy including small antral follicles and oocytes. The objective of this study is to determine whether the synchrotron can be used to effectively image bovine and human ovaries ex situ. We hypothesize that synchrotron imaging will provide greater resolution and thereby allow the detection of fine structural details of the ovary compared to conventional ultrasonography. Ovaries will be imaged using conventional ultrasonography, synchrotron and histology. We anticipate that our results will provide important information about ovarian physiology which can be applied to the study of female reproductive dysfunctions.
详细描述
The objective of our research is to determine whether the synchrotron is an effective tool for imaging human ovaries ex situ. Approximately 1 in every 6 women in Canada is affected by infertility; however, the underlying causes remain largely unknown. Imaging techniques are essential for increasing our understanding of normal and abnormal female reproductive biology. At present, ultrasonography is the most commonly-used tool to image human ovaries. However, ultrasonography only allows the detection of structures ≥ 2 mm in size within the ovaries, limiting the ability to detect smaller anatomic details (eg. the eggs and the surrounding cells and 'follicles' or the small fluid filled sacs that contain the eggs). Other limitations of ultrasonography for imaging the ovaries include a limited depth of penetration within the pelvis and the inability to see the ovaries clearly due to bowel activity and/or gas.
The synchrotron has been effectively used for imaging soft tissues, including the breast, heart and lungs. We hypothesize that the synchrotron will provide greater resolution for imaging the ovaries compared to conventional ultrasonography. Specifically, we anticipate that synchrotron imaging will provide greater structural details of the ovaries (including small follicles <2 mm and eggs) compared to conventional ultrasonography.
The study will consist of three different phases listed below:
- Phase 1 - Imaging of 10 fresh and preserved bovine ovaries
- Phase 2 - Imaging of 5 preserved human ovaries from the Department of Pathology
- Phase 3 - Imaging of 2-4 fresh human ovaries from women having their ovaries surgically removed
The initial imaging of bovine ovaries will help us determine the best synchrotron settings to image the human samples. All ovaries will be preserved using formaldehyde. In all 3 study phases, ovarian specimens will be imaged first with 2D and 3D ultrasonography and then with the Biomedical Imaging and Therapy Beamline (BMIT) at the Canadian Light Source. Furthermore, histologic sections of structures of interest within the ovaries will be made, and digital images will be acquired.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Only
- 时间视角
- Prospective
入排标准
- 年龄范围
- 20 Years 至 65 Years(Adult, Older Adult)
- 性别
- Female
- 接受健康志愿者
- 是
入选标准
- •women undergoing unilateral/bilateral oophorectomy at Saskatoon City Hospital or Royal University Hospital between May - August 2012
排除标准
- 未提供
结局指标
主要结局
Follicular counts
时间窗: July-Aug 2012
total number of antral ovarian follicles will be counted in the ultrasonographic and synchrotron images
次要结局
- Diameter measurements(July-Aug 2012)
- Microanatomy of ovarian tissues(July -Aug 2013)
研究者
Angela Baerwald
Assistant Professor
University of Saskatchewan
