Publications by authors named "Jaros J"

Granuloma annulare (GA) is a benign inflammatory skin condition that most commonly presents on the dorsal surfaces of the hands and feet. The etiology of GA is unknown; however, it has been associated with multiple triggers, including malignancy and targeted cancer therapy drugs. This case report describes a 66-year-old female with metastatic breast cancer on ribociclib who presented with painful, erythematous papules on the palmar surfaces of the hands.

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The alveolar-capillary interface is the key functional element of gas exchange in the human lung, and disruptions to this interface can lead to significant medical complications. However, it is currently challenging to adequately model this interface in vitro, as it requires not only the co-culture of human alveolar epithelial and endothelial cells but mainly the preparation of a biocompatible scaffold that mimics the basement membrane. This scaffold should support cell seeding from both sides, and maintain optimal cell adhesion, growth, and differentiation conditions.

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Article Synopsis
  • The study discusses advancements in photoacoustic tomography (PAT) for visualizing microvascular structures, essential for assessing conditions like diabetes and inflammatory skin diseases.
  • By improving the scanner's speed from minutes to mere seconds or milliseconds, the authors enable better visualization with less motion-related interference and detailed 3D imaging.
  • These enhancements allow for the exploration of microvascular changes in various medical conditions, suggesting potential applications in fields such as cardiovascular medicine, oncology, dermatology, and rheumatology.
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The development of 3D organoids has provided a valuable tool for studying human tissue and organ development in vitro. Cerebral organoids, in particular, offer a unique platform for investigating neural diseases. However, current methods for generating cerebral organoids suffer from limitations such as labor-intensive protocols and high heterogeneity among organoids.

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Scientists must have an integrative understanding of ecology and evolution across spatial and temporal scales to predict how species will respond to global change. Although comprehensively investigating these processes in nature is challenging, the infrastructure and data from long-term ecological research networks can support cross-disciplinary investigations. We propose using these networks to advance our understanding of fundamental evolutionary processes and responses to global change.

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  • The vegetation history of semi-dry grasslands in Central Europe is complex, with current species diversity potentially stemming from long-standing open landscapes or past forested phases.
  • Detailed studies were conducted on soil samples to analyze carbon and nitrogen content, lipid distribution, and stable isotopes from various plant materials.
  • Findings indicate a significant contribution of C3 trees to soil organic matter during the late Pleistocene to early Holocene, with a notable transition to grassy and herbaceous vegetation occurring from the early Holocene onwards.
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Several in vitro models have been developed to mimic chronic lymphocytic leukemia (CLL) proliferation in immune niches; however, they typically do not induce robust proliferation. We prepared a novel model based on mimicking T-cell signals in vitro and in patient-derived xenografts (PDXs). Six supportive cell lines were prepared by engineering HS5 stromal cells with stable expression of human CD40L, IL4, IL21, and their combinations.

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The low specific density and good strength-to-weight ratio make magnesium alloys a promising material for lightweight applications. The combination of the properties of magnesium alloys and Additive Manufacturing by the Laser Powder Bed Fusion (LPBF) process enables the production of complex geometries such as lattice or bionic structures. Magnesium structures are intended to drastically reduce the weight of components and enable a reduction in fuel consumption, particularly in the aerospace and automotive industries.

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Many dynamic interactions within the cell microenvironment modulate cell behavior and cell fate. However, the pathways and mechanisms behind cell-cell or cell-extracellular matrix interactions remain understudied, as they occur at a nanoscale level. Recent progress in nanotechnology allows for mimicking of the microenvironment at nanoscale ; electron-beam lithography (EBL) is currently the most promising technique.

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Computational models of acoustic wave propagation are frequently used in transcranial ultrasound therapy, for example, to calculate the intracranial pressure field or to calculate phase delays to correct for skull distortions. To allow intercomparison between the different modeling tools and techniques used by the community, an international working group was convened to formulate a set of numerical benchmarks. Here, these benchmarks are presented, along with intercomparison results.

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This article presents a method to calculate the average acoustic intensity during ultrasound simulation using a new approach that exploits compression of intermediate results. One of the applications of high-intensity focused ultrasound (HIFU) simulations is the calculation of the thermal dose, which indicates the amount of tissue destroyed using a state-of-the-art k-space pseudospectral method. The thermal simulation is preceded by the calculation of the average intensity within the acoustic simulation.

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Human papilloma virus (HPV) is the causative agent for a variety of cutaneous lesions including verruca vulgaris (VV) and epidermodysplasia verruciformis (EDV). There are more than 200 known genotypes of HPV, and specific HPV types are associated with different clinical manifestations and malignant potentials. Herein, we describe a case of a 43-year-old immunocompetent woman who presented with morphologically distinct lesions that were most consistent with EDV on clinical examination.

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Article Synopsis
  • Hidradenitis suppurativa (HS) is gaining global attention, yet research is predominantly originating from North America and Europe, prompting a bibliometric analysis focused on Asia and Australasia over the past decade.
  • The analysis revealed 163 HS-related articles from the region, with a significant publication spike after 2015, predominantly consisting of case reports, while efforts were made to produce more high-level evidence studies.
  • Major contributors to HS research included China, Japan, and India, with an increasing involvement from Australia, Israel, and Turkey, highlighting the need for greater geographical representation in research to enhance understanding and treatment of the disease.
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Adaptive recovery of cerebral perfusion after pediatric arterial ischemic stroke (AIS) is sought to be crucial for sustainable rehabilitation of cognitive functions. We therefore examined cerebral blood flow (CBF) in the chronic stage after stroke and its association with cognitive outcome in patients after pediatric AIS. This cross-sectional study investigated CBF and cognitive functions in 14 patients (age 13.

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Engineering hierarchical vasculatures is critical for creating implantable functional thick tissues. Current approaches focus on fabricating mesoscale vessels for implantation or hierarchical microvascular in vitro models, but a combined approach is yet to be achieved to create engineered tissue flaps. Here, millimetric vessel-like scaffolds and 3D bioprinted vascularized tissues interconnect, creating fully engineered hierarchical vascular constructs for implantation.

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Atopic dermatitis (AD) is a common inflammatory dermatosis that has multiple contributing factors including genetic, immunologic and environmental. Staphylococcus aureus (SA) has long been associated with exacerbation of AD. SA produces many virulence factors that interact with the human skin and immune system.

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Hidradenitis suppurativa (HS) is a chronic inflammatory dermatosis characterized by painful nodules, sinus tracts, and scarring, with a predilection for intertriginous areas. HS is particularly prevalent in women of childbearing age and can have varying psychological and physical consequences. The chronic and debilitating nature of this disease can lead to significant impairments in patients' sexual health and overall quality of life.

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In the fast-developing field of tissue engineering there is a constant demand for new materials as scaffolds for cell seeding, which can better mimic a natural extracellular matrix as well as control cell behavior. Among other materials, polysaccharides are widely used for this purpose. One of the main candidates for scaffold fabrication is alginate.

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Duchenne muscular dystrophy (DMD) is a devastating condition shortening the lifespan of young men. DMD patients suffer from age-related dilated cardiomyopathy (DCM) that leads to heart failure. Several molecular mechanisms leading to cardiomyocyte death in DMD have been described.

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Organ function depends on tissues adopting the correct architecture. However, insights into organ architecture are currently hampered by an absence of standardized quantitative 3D analysis. We aimed to develop a robust technology to visualize, digitalize, and segment the architecture of two tubular systems in 3D: oble resin asting micro computed omography (DUCT).

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Article Synopsis
  • * A systematic review analyzed the effectiveness, patient demographics, and side effects of using low-dose radiotherapy for HS, revealing it as a potential option for treatment-resistant cases.
  • * Despite some positive outcomes, there's still a lack of agreement on the best practices for using radiotherapy in HS, including how to choose patients and dosage recommendations.
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A full-wave model for nonlinear ultrasound propagation through a heterogeneous and absorbing medium in an axisymmetric coordinate system is developed. The model equations are solved using a nonstandard or k-space pseudospectral time domain method. Spatial gradients in the axial direction are calculated using the Fourier collocation spectral method, and spatial gradients in the radial direction are calculated using discrete trigonometric transforms.

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A broadband all-optical plane-wave ultrasound imaging system for high-resolution 3-D imaging of biological tissues is presented. The system is based on a planar Fabry-Perot (FP) scanner for ultrasound detection and the photoacoustic generation of ultrasound in a carbon-nanotube-polydimethylsiloxane (CNT-PDMS) composite film. The FP sensor head was coated with the CNT-PDMS film which acts as an ultrasound transmitting layer for pulse-echo imaging.

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