Contamination-Free Switch Design and Synthesis for Microfluidic Large-Scale Integration

被引:0
|
作者
Shen, Duan [1 ]
Zhang, Yushen [1 ]
Li, Mengchu [1 ]
Tseng, Tsun-Ming [1 ]
Schlichtmann, Ulf [1 ]
机构
[1] Tech Univ Munich, Chair Elect Design Automat, Arcisstr 21, D-80333 Munich, Germany
关键词
microfluidic large-scale integration; design automation; quadratic linear programming; contamination;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Microfluidic large-scale integration (mLSI) biochips have developed rapidly in recent decades. The gap between design efficiency and application complexity has led to a growing interest in mLSI design automation. The state-of-the-art design automation tools for mLSI focus on the simultaneous co-optimisation of the flow and control layers but neglect potential contamination between different fluid reagents and products. Microfluidic switches, as fluid routers at the intersection of flow paths, are especially prone to contamination. State-of-the-art tools design the switches as spines with junctions, which aggregate the contamination problem. In this work, we present a contamination-free microfluidic switch design and a synthesis method to generate application-specific switches that can be employed by physical design tools for mLSI. We also propose a scheduling and binding method to transport the fluids with least time and fewest resources. To reduce the number of pressure inlets, we consider pressure sharing between valves within the switch. Experimental results demonstrate that our methods show advantages in avoiding contamination and improving transportation efficiency over conventional methods.
引用
收藏
页码:646 / 651
页数:6
相关论文
共 50 条
  • [1] Microfluidic large-scale integration
    Thorsen, T
    Maerkl, SJ
    Quake, SR
    SCIENCE, 2002, 298 (5593) : 580 - 584
  • [2] Integrated Test Module Design for Microfluidic Large-Scale Integration
    Li, Mengchu
    Zhang, Yushen
    Lee, Ju Young
    Gasvoda, Hudson
    Araci, Ismail Emre
    Tseng, Tsun-Ming
    Schlichtmann, Ulf
    IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 2023, 42 (06) : 1939 - 1950
  • [3] Controller for microfluidic large-scale integration
    White, Jonathan A.
    Streets, Aaron M.
    HARDWAREX, 2018, 3 : 135 - 145
  • [4] Microfluidic large-scale integration: The evolution of design rules for biological automation
    Melin, Jessica
    Quake, Stephen R.
    ANNUAL REVIEW OF BIOPHYSICS AND BIOMOLECULAR STRUCTURE, 2007, 36 : 213 - 231
  • [6] Efficiency in contamination-free machining using microfluidic structures
    Ferri, Carlo
    Minton, Timothy
    Ghani, Saiful Bin Che
    Cheng, Kai
    CIRP JOURNAL OF MANUFACTURING SCIENCE AND TECHNOLOGY, 2014, 7 (02) : 97 - 105
  • [7] Architectural Synthesis of Flow-Based Microfluidic Large-Scale Integration Biochips
    Minhass, Wajid Hassan
    Pop, Paul
    Madsen, Jan
    Blaga, Felician Stefan
    CASES'12: PROCEEDINGS OF THE 2012 ACM INTERNATIONAL CONFERENCE ON COMPILERS, ARCHITECTURES AND SYNTHESIS FOR EMBEDDED SYSTEMS, 2012, : 181 - 190
  • [8] Control Synthesis for the Flow-Based Microfluidic Large-Scale Integration Biochips
    Minhass, Wajid Hassan
    Pop, Paul
    Madsen, Jan
    Ho, Tsung-Yi
    2013 18TH ASIA AND SOUTH PACIFIC DESIGN AUTOMATION CONFERENCE (ASP-DAC), 2013, : 205 - 212
  • [9] LARGE-SCALE INTEGRATION IN ORGAN DESIGN
    SCHRECONGOST, RB
    JOURNAL OF THE AUDIO ENGINEERING SOCIETY, 1972, 20 (04): : 275 - +
  • [10] Design rules and operational optimization for rapid, contamination-free microfluidic transfer using monolithic membrane valves
    Stockton, Amanda M.
    Mora, Maria F.
    Cable, Morgan L.
    Willis, Peter A.
    SENSORS AND ACTUATORS B-CHEMICAL, 2013, 177 : 668 - 675