» Authors » Michael C Murphy

Michael C Murphy

Explore the profile of Michael C Murphy including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 39
Citations 583
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Park D, Young B, You B, Singh V, Soper S, Murphy M
J Microelectromech Syst . 2024 Oct; 29(4):600-609. PMID: 39391841
An improved, laser-induced fluorescence-based micro-optical biosensor was designed and fabricated, with cyclic olefin copolymer (COC) optical waveguides, a poly(methyl methacrylate) (PMMA) fluidic substrate with an array of microlenses, and a...
2.
Shiri F, Choi J, Vietz C, Rathnayaka C, Manoharan A, Shivanka S, et al.
Lab Chip . 2023 Oct; 23(22):4876-4887. PMID: 37870483
While injection molding is becoming the fabrication modality of choice for high-scale production of microfluidic devices, especially those used for diagnostics, its translation into the growing area of nanofluidics (structures...
3.
Rathnayaka C, Amarasekara C, Akabirov K, Murphy M, Park S, Witek M, et al.
J Chromatogr A . 2022 Oct; 1683:463539. PMID: 36223665
Over the last 30-years, microchip electrophoresis and its applications have expanded due to the benefits it offers. Nanochip electrophoresis, on the other hand, is viewed as an evolving area of...
4.
Zhao X, Ma C, Park D, Soper S, Murphy M
Sens Actuators B Chem . 2022 May; 361. PMID: 35611132
The presence of air bubbles boosts the shear resistance and causes pressure fluctuation within fluid-perfused microchannels, resulting in possible cell damage and even malfunction of microfluidic devices. Eliminating air bubbles...
5.
Zhao X, Murphy M
Colloids Surf A Physicochem Eng Asp . 2022 Feb; 625. PMID: 35221533
One of the long-standing problems for the nanoparticle-based liquid-repellent coatings is their poor adhesion to substrates. For polymers of low glass transition temperature, it is highly desirable to have low...
6.
Brown C, Zhao X, Park T, Chen P, You B, Park D, et al.
Microsyst Nanoeng . 2021 Sep; 7:69. PMID: 34567781
Chip-to-chip and world-to-chip fluidic interconnections are paramount to enable the passage of liquids between component chips and to/from microfluidic systems. Unfortunately, most interconnect designs add additional physical constraints to chips...
7.
Pahattuge T, Freed I, Hupert M, Vaidyanathan S, Childers K, Witek M, et al.
ACS Sens . 2021 May; 6(5):1831-1839. PMID: 33938745
Liquid biopsies are becoming popular for managing a variety of diseases due to the minimally invasive nature of their acquisition, thus potentially providing better outcomes for patients. Circulating tumor cells...
8.
Zhao X, Park D, Soper S, Murphy M
J Microelectromech Syst . 2021 Mar; 29(5):894-899. PMID: 33746475
Existing methods for sealing chip-to-chip (or module-to-motherboard) microfluidic interconnects commonly use additional interconnect components (O-rings, gaskets, and tubing), and manual handling expertise for assembly. Novel gasketless superhydrophobic fluidic interconnects (GSFIs)...
9.
Zhao X, Park D, Choi J, Park S, Soper S, Murphy M
J Colloid Interface Sci . 2020 Oct; 585:668-675. PMID: 33127056
Hypothesis: Compared to vertical micro-pillars, re-entrant micro-structures exhibited superior omniphobicity for suspending liquids to Cassie-Baxter state. However, the existing re-entrant structures rely on complex multi-step deposition and etching procedures. The...
10.
Wijerathne H, Witek M, M Jackson J, Brown V, Hupert M, Herrera K, et al.
Commun Biol . 2020 Oct; 3(1):613. PMID: 33106557
Currently there is no in vitro diagnostic test for acute ischemic stroke (AIS), yet rapid diagnosis is crucial for effective thrombolytic treatment. We previously demonstrated the utility of CD8(+) T-cells'...