Automated Microchannel Bovine Culture Parameter Studies
自动化微通道牛培养参数研究
基本信息
- 批准号:6736111
- 负责人:
- 金额:$ 43.72万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2000
- 资助国家:美国
- 起止时间:2000-09-22 至 2006-01-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
DESCRIPTION (provided by applicant): An important limitation of current IVP methods is the ability to perform experiments involving large numbers of embryos and repetitions in a highly accurate and repeatable way. Current methods are laborious, inefficient and depend on the skill of the technician. Micro channel embryo culture enables automated high throughput processing because the embryo is not moved, but rather held in a "parking place." This allows the fluid to be exchanged via automated systems rather than attempting to automate embryo manipulation. We propose to develop an automated micro channel embryo culture system to allow rapid optimization of micro channel culture conditions. The system utilizes commercially available automated liquid handling equipment combined with a custom incubation chamber and a digital visualization system. Specific advantages of the proposed automated micro channel culture system (AMCS) include the use of micro channel culture devices (Vitae Cell TM) which facilitates automated processing and allows one to achieve gentle medium changes, a closed system that eliminates perturbations in gas concentrations and temperature, robotically controlled medium changes and visualization eliminating operator variability. The system will initially be used to optimize bovine embryo culture. We propose to investigate parameters such as medium (single vs. sequential), medium replenishment (by flow), gas atmosphere, embryo-to-volume ratio, and medium supplementation in the micro channel system compared to the standard micro-drop.
描述(由申请方提供):当前IVP方法的一个重要限制是以高度准确和可重复的方式进行涉及大量胚胎和重复的实验的能力。目前的方法是费力的,低效的,并依赖于技术人员的技能。微通道胚胎培养能够实现自动化的高通量处理,因为胚胎不移动,而是保持在“停车位”。“这使得流体可以通过自动化系统进行交换,而不是试图自动化胚胎操作。我们建议开发一个自动化的微通道胚胎培养系统,允许快速优化微通道培养条件。该系统利用市售的自动化液体处理设备与定制孵育室和数字可视化系统相结合。所提出的自动化微通道培养系统(AMCS)的具体优点包括使用微通道培养装置(Vitae Cell TM),其促进自动化处理并允许实现温和的培养基更换、消除气体浓度和温度的扰动的封闭系统、机器人控制的培养基更换和消除操作者可变性的可视化。该系统最初将用于优化牛胚胎培养。我们建议调查参数,如介质(单次与顺序),介质补充(通过流量),气体气氛,胚胎体积比,和介质补充的微通道系统相比,标准的微滴。
项目成果
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KATHRYN HAUBERT其他文献
KATHRYN HAUBERT的其他文献
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{{ truncateString('KATHRYN HAUBERT', 18)}}的其他基金
Automated Microchannel Bovine Culture Parameter Studies
自动化微通道牛培养参数研究
- 批准号:
6844763 - 财政年份:2000
- 资助金额:
$ 43.72万 - 项目类别: