Invention Application
US20130183246A1 SYSTEMS AND METHODS FOR HIGH-THROUGHPUT MICROFLUIDIC BEAD PRODUCTION
有权
用于高通量微流控珠粒生产的系统和方法
- Patent Title: SYSTEMS AND METHODS FOR HIGH-THROUGHPUT MICROFLUIDIC BEAD PRODUCTION
- Patent Title (中): 用于高通量微流控珠粒生产的系统和方法
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Application No.: US13822983Application Date: 2011-10-03
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Publication No.: US20130183246A1Publication Date: 2013-07-18
- Inventor: Tza-Huei Wang , Weijie Beh , Dara L. Kraitchman , Hsa-Quan Mao
- Applicant: Tza-Huei Wang , Weijie Beh , Dara L. Kraitchman , Hsa-Quan Mao
- Applicant Address: US MD Baltimore
- Assignee: The Johns Hopkins University
- Current Assignee: The Johns Hopkins University
- Current Assignee Address: US MD Baltimore
- International Application: PCT/US11/54598 WO 20111003
- Main IPC: B29B9/12
- IPC: B29B9/12

Abstract:
A system for producing microbeads includes a microfluidic device defining a supply channel and a shearing channel, a microbead precursor material disposed in the supply channel, a carrier fluid disposed in the shearing channel, and a pressure distribution system fluidly connected to each of the supply channel and the shearing channel to control at least relative pressures of the microbead precursor material and the carrier fluid. The supply channel includes a check valve adapted to be subjected to a bias pressure that is sufficient to close the check valve to flow of microbead precursor material when a supply pressure of the microbead precursor material is below a threshold pressure and is open to flow of the microbead precursor material when the supply pressure of the microbead precursor material is greater than the threshold pressure. An end of the supply channel opens into the shearing channel such that the microbead precursor material is sheared into droplets by the carrier fluid flowing through the shearing channel. A pressure of the carrier fluid is less than the bias pressure. The microbead precursor material and the carrier fluid are substantially immiscible.
Public/Granted literature
- US09156189B2 Systems and methods for high-throughput microfluidic bead production Public/Granted day:2015-10-13
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