Background: In recent years, the introduction of the E‑Health Act and the relaxation of the ban on remote treatment has improved the framework for telemedicine in Germany.
Objectives: The aim of this article is to present an overview of the evidence of different areas of application for teledermatology.
Materials And Methods: A narrative review of national and international studies and projects on the use of teledermatology for diagnosis, monitoring of diseases, triage between primary care physicians (PCPs) and dermatologists, and its use in facilities with reduced organizational and/or geographical access to specialist care was conducted.
Results: Diagnostic applications allow teledermatological assessment in a large proportion of cases, with high concordance of diagnosis and patient satisfaction. For the monitoring of patients, the majority of studies demonstrated no difference in effectiveness between on-site and remote consultation, while patients are spared travel distance and waiting time. For programs enabling triage most of the patients with dermatologic conditions were able to remain with the PCP, while acute patients requiring direct referral to a dermatologist were identified. In special facilities, such as prisons, dermatological teleconsultations are successfully utilized.
Conclusion: An adequate framework and promising evidence for the use of teledermatology exist. The areas of application are described in detail within the German S2k guideline for teledermatology. However, there is a potential risk for decreased access to telemedicine services for certain population groups.
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http://dx.doi.org/10.1007/s00105-021-04917-y | DOI Listing |
BMC Med Imaging
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Department of Ultrasound Medicine, First Affiliated Hospital, Fujian Medical University, Fuzhou, 350005, China.
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Institute of Physical Chemistry and Polymer Physics, Leibniz-Institut für Polymerforschung Dresden e.V. (IPF), 01069, Dresden, Germany.
Template-assisted colloidal self-assembly has gained significant attention due to its flexibility and versatility. By precisely controlling the shape of the template, it is possible to achieve custom-designed nanoparticle assemblies. However, a major challenge remains in fabricating these templates over large areas at a low cost.
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January 2025
Materials Science and Engineering Program, College of Arts and Sciences, American University of Sharjah, POB 26666, Sharjah, United Arab Emirates.
Graphene, a two-dimensional material featuring densely packed sp-hybridized carbon atoms arranged in a honeycomb lattice, has revolutionized material science. Laser-induced graphene (LIG) represents a breakthrough method for producing graphene from both commercial and natural precursors via direct laser writing, offering advantages such as simplicity, efficiency, and cost-effectiveness. This study demonstrates a novel approach to synthesize a composite material exclusively from a porous organic polymer (POP) by direct femtosecond laser writing on a compressed imide-linked porous organic polymer substrate.
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January 2025
Department of Computer Science, American International University-Bangladesh (AIUB), Dhaka, 1229, Bangladesh.
The transportation industry contributes significantly to climate change through carbon dioxide ( ) emissions, intensifying global warming and leading to more frequent and severe weather phenomena such as flooding, drought, heat waves, glacier melting, and rising sea levels. This study proposes a comprehensive approach for predicting emissions from vehicles using deep learning techniques enhanced by eXplainable Artificial Intelligence (XAI) methods. Utilizing a dataset from the Canadian government's official open data portal, we explored the impact of various vehicle attributes on emissions.
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Department of Neuroscience, Brown University, Providence RI, USA.
Voltage-gated potassium conductances [Formula: see text] play a critical role not only in normal neural function, but also in many neurological disorders and related therapeutic interventions. In particular, in an important animal model of epileptic seizures, 4-aminopyridine (4-AP) administration is thought to induce seizures by reducing [Formula: see text] in cortex and other brain areas. Interestingly, 4-AP has also been useful in the treatment of neurological disorders such as multiple sclerosis (MS) and spinal cord injury, where it is thought to improve action potential propagation in axonal fibers.
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