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1.
IEEE Trans Vis Comput Graph ; 29(1): 798-808, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36166562

ABSTRACT

Contrails are condensation trails generated from emitted particles by aircraft engines, which perturb Earth's radiation budget. Simulation modeling is used to interpret the formation and development of contrails. These simulations are computationally intensive and rely on high-performance computing solutions, and the contrail structures are not well defined. We propose a visual computing system to assist in defining contrails and their characteristics, as well as in the analysis of parameters for computer-generated aircraft engine simulations. The back-end of our system leverages a contrail-formation criterion and clustering methods to detect contrails' shape and evolution and identify similar simulation runs. The front-end system helps analyze contrails and their parameters across multiple simulation runs. The evaluation with domain experts shows this approach successfully aids in contrail data investigation.

2.
Polymers (Basel) ; 14(14)2022 Jul 21.
Article in English | MEDLINE | ID: mdl-35890735

ABSTRACT

The combination of microfluidics and photo-polymerization techniques such as stereolithography (SLA) has emerged as a new field which has a lot of potential to influence in such important areas as biological analysis, and chemical detection among others. However, the integration between them is still at an early stage of development. In this article, after analyzing the resolution of a custom SLA 3D printer with commercial resins, microfluidic devices were manufactured using three different approaches. First, printing a mold with the objective of creating a Polydimethylsiloxane (PDMS) replica with the microfluidic channels; secondly, open channels have been printed and then assembled with a flat cover of the same resin material. Finally, a closed microfluidic device has also been produced in a single process of printing. Important results for 3D printing with commercial resins have been achieved by only printing one layer on top of the channel. All microfluidic devices have been tested successfully for pressure-driven fluid flow.

3.
Bioengineering (Basel) ; 8(6)2021 Jun 09.
Article in English | MEDLINE | ID: mdl-34207754

ABSTRACT

Tumor vessel-on-a-chip systems have attracted the interest of the cancer research community due to their ability to accurately recapitulate the multiple dynamic events of the metastatic cascade. Vessel-on-a-chip microfluidic platforms have been less utilized for investigating the distinctive features and functional heterogeneities of tumor-derived vascular networks. In particular, vascular tumors are characterized by the massive formation of thrombi and severe bleeding, a rare and life-threatening situation for which there are yet no clear therapeutic guidelines. This is mainly due to the lack of technological platforms capable of reproducing these characteristic traits of the pathology in a simple and well-controlled manner. Herein, we report the fabrication of a versatile tumor vessel-on-a-chip platform to reproduce, investigate, and characterize the massive formation of thrombi and hemorrhage on-chip in a fast and easy manner. Despite its simplicity, this method offers multiple advantages to recapitulate the pathophysiological events of vascular tumors, and therefore, may find useful applications in the field of vascular-related diseases, while at the same time being an alternative to more complex approaches.

4.
Sensors (Basel) ; 21(4)2021 Feb 16.
Article in English | MEDLINE | ID: mdl-33669434

ABSTRACT

Microfabrication and Polydimethylsiloxane (PDMS) soft-lithography techniques became popular for microfluidic prototyping at the lab, but even after protocol optimization, fabrication is yet a long, laborious process and partly user-dependent. Furthermore, the time and money required for the master fabrication process, necessary at any design upgrade, is still elevated. Digital Manufacturing (DM) and Rapid-Prototyping (RP) for microfluidics applications arise as a solution to this and other limitations of photo and soft-lithography fabrication techniques. Particularly for this paper, we will focus on the use of subtractive DM techniques for Organ-on-a-Chip (OoC) applications. Main available thermoplastics for microfluidics are suggested as material choices for device fabrication. The aim of this review is to explore DM and RP technologies for fabrication of an OoC with an embedded membrane after the evaluation of the main limitations of PDMS soft-lithography strategy. Different material options are also reviewed, as well as various bonding strategies. Finally, a new functional OoC device is showed, defining protocols for its fabrication in Cyclic Olefin Polymer (COP) using two different RP technologies. Different cells are seeded in both sides of the membrane as a proof of concept to test the optical and fluidic properties of the device.


Subject(s)
Lab-On-A-Chip Devices , Microfluidics , Microtechnology , Oligonucleotide Array Sequence Analysis , Polymers
5.
RSC Adv ; 10(59): 35930-35940, 2020 Sep 28.
Article in English | MEDLINE | ID: mdl-35517089

ABSTRACT

The control of the morphology, as well as the physical and chemical properties, of nanopores is a key issue for many applications. Reducing pore size is important in nanopore-based sensing applications as it helps to increase sensitivity. Changes of other physical properties such as surface net charge can also modify transport selectivity of the pores. We have studied how polyelectrolyte layer-by-layer (LBL) surface modification can be used to change the characteristics of nanoporous membranes. Studies were performed with a custom made three-dimensional multilayer microfluidic device able to fit membrane samples. The device allowed us to efficiently control LBL film deposition over blank low-cost commercially available polycarbonate track-etched (PCTE) membranes. We have demonstrated pore diameter reduction and deposition of the layers inside the pores through confocal and SEM images. Posterior impedance measurement studies served to evaluate experimentally the effect of the LBL deposition on the net inner nanopore surface charge and diameter. Measurements using direct current (DC) and alternative current (AC) voltages have demonstrated contrasted behaviors depending on the number and parity of deposited opposite charge layers. PCTE membranes are originally negatively charged and results evidenced higher impedance increases for paired charge LBL depositions. Impedance decreased when an unpaired positive layer was added. These results showed a different influence on the overall ion motility due to the effect of different surface charges. Results have been fit into a model that suggested a strong dependence of nanopores' impedance module to surface charge on conductive buffers, such as Phosphate Buffer Saline (PBS), even on relatively large nanopores. In AC significant differences between paired and unpaired charged LBL depositions tended to disappear as the total number of layers increased.

6.
Biomimetics (Basel) ; 4(3)2019 Aug 28.
Article in English | MEDLINE | ID: mdl-31466234

ABSTRACT

The fog-basking behavior of the Onymacris unguicularis, a beetle species living in the coastal regions of the Namibian desert, has recently caught the attention of the engineering community, as suggesting a viable biomimetic approach to address the problem of harvesting water in arid regions of the globe. Previous research has focused on observation and analysis of the beetle's elytron properties and how these affect fog-collection rates. The head stance taken by the Onymacris unguicularis when fog basking is well documented. However, how this stance affects droplet collection has not been studied up to now. The present paper addresses this problem from a computational fluid dynamics perspective, where three-dimensional numerical simulations are used to characterize the fog flow properties around a simplified geometry mimicking the beetle's body. The simulations employ two-way coupling between the gas flow and the dispersed fog phase to account for feedback effects of fog droplets on the carrier fluid (air), and assume that droplets are captured after hitting the elytron surface. The study considers several combinations of free-stream velocity and droplet volume fraction. The analysis reveals that there is a range of head-stance angles, corresponding to an inclination of the beetle between 35 deg and 45 deg with respect to the horizon, that maximizes water collection on the beetle's back, in qualitative agreement with observations in nature and laboratory experiments. A rationale is proposed to explain this phenomenon, finding that the specific head stance corresponds to the maximum residence time of fluid particles above the beetle's elytron surface. This, in turn, designates the maximum likelihood for water droplets to be captured in the boundary layer developing over the beetle and subsequently hit the surface where they get captured. The results reveal the importance of the fluid flow pattern around the beetle's body in addition to the microphysical properties of the elytron when reliable predictions of the water droplet collection efficiency are sought.

7.
Stem Cell Reports ; 13(1): 207-220, 2019 07 09.
Article in English | MEDLINE | ID: mdl-31231023

ABSTRACT

In vitro surrogate models of human cardiac tissue hold great promise in disease modeling, cardiotoxicity testing, and future applications in regenerative medicine. However, the generation of engineered human cardiac constructs with tissue-like functionality is currently thwarted by difficulties in achieving efficient maturation at the cellular and/or tissular level. Here, we report on the design and implementation of a platform for the production of engineered cardiac macrotissues from human pluripotent stem cells (PSCs), which we term "CardioSlice." PSC-derived cardiomyocytes, together with human fibroblasts, are seeded into large 3D porous scaffolds and cultured using a parallelized perfusion bioreactor with custom-made culture chambers. Continuous electrical stimulation for 2 weeks promotes cardiomyocyte alignment and synchronization, and the emergence of cardiac tissue-like properties. These include electrocardiogram-like signals that can be readily measured on the surface of CardioSlice constructs, and a response to proarrhythmic drugs that is predictive of their effect in human patients.


Subject(s)
Myocardium , Tissue Engineering , Tissue Scaffolds , Batch Cell Culture Techniques , Biomechanical Phenomena , Bioreactors , Cell Differentiation , Cells, Cultured , Electrophysiological Phenomena , Humans , Induced Pluripotent Stem Cells/cytology , Induced Pluripotent Stem Cells/metabolism , Myocardium/cytology , Myocardium/metabolism
8.
Micromachines (Basel) ; 7(7)2016 Jul 20.
Article in English | MEDLINE | ID: mdl-30404298

ABSTRACT

Pharmaceutical drug screening and research into diseases call for significant improvement in the effectiveness of current in vitro models. Better models would reduce the likelihood of costly failures at later drug development stages, while limiting or possibly even avoiding the use of animal models. In this regard, promising advances have recently been made by the so-called "organ-on-chip" (OOC) technology. By combining cell culture with microfluidics, biomedical researchers have started to develop microengineered models of the functional units of human organs. With the capacity to mimic physiological microenvironments and vascular perfusion, OOC devices allow the reproduction of tissue- and organ-level functions. When considering drug testing, nephrotoxicity is a major cause of attrition during pre-clinical, clinical, and post-approval stages. Renal toxicity accounts for 19% of total dropouts during phase III drug evaluation-more than half the drugs abandoned because of safety concerns. Mimicking the functional unit of the kidney, namely the nephron, is therefore a crucial objective. Here we provide an extensive review of the studies focused on the development of a nephron-on-chip device.

9.
Psychiatry Res ; 118(3): 249-57, 2003 Jun 15.
Article in English | MEDLINE | ID: mdl-12834819

ABSTRACT

Demographic, psychopathological and hormonal parameters of 22 women with previous anorexia nervosa (AN) presently recovered, in a state of stabilized nutritional normalization for 3 months to 2 years but with persistent amenorrhoea, and of 20 psychophysically healthy age- and sex-matched normally menstruating controls were studied. Body mass index (BMI) values did not differ in patients and controls. Psychological examination, monitored by Eating Disorder Inventory 1, Bulimic Investigation Test Edinburgh, Yale-Brown-Cornell Eating Disorder Scale, and Tridimensional Personality Questionnaire rating scales, showed the persistence of some of the psychopathological symptoms of AN. Hormonal examinations included basal plasma concentrations of follicle stimulating hormone, luteotropic hormone, estrogens (E), progesterone, thyrotropic hormone, FT(3), FT(4) (immunoradiometric assays), leptin (LEP) (enzymatic-linked-immunosorbent assay) and 24 h urinary free cortisol (immunoradiometric assay). Hormone values were the same in patients and controls, except for E and LEP levels, which were significantly lower in patients than in controls. The concentrations of the two hormones were not correlated with the BMI of the patients, but LEP values were correlated negatively with the difference between the present BMI and the preanorexic one. The values of both hormones correlated negatively with some of the psychopathological aspects typical of AN, in particular with high 'body dissatisfaction', 'ineffectiveness', and 'interpersonal distrust' and with low 'interoceptive awareness'.


Subject(s)
Amenorrhea , Anorexia Nervosa/epidemiology , Anorexia Nervosa/therapy , Recovery of Function , Weight Gain , Adult , Amenorrhea/blood , Amenorrhea/epidemiology , Amenorrhea/psychology , Body Mass Index , Estrogens/blood , Female , Humans , Hydrocortisone/blood , Leptin/blood , Personality Disorders/diagnosis , Personality Inventory , Progesterone/blood , Recurrence , Thyrotropin-Releasing Hormone/blood
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