Longitudinal multi-omics analysis of host microbiome architecture and immune responses during short-term spaceflight
- Tierney BT, Kim J, Overbey EG, Ryon KA, Foox J, Sierra MA, Bhattacharya C, Damle N, Najjar D, Park J, Garcia Medina JS, Houerbi N, Meydan C, Wain Hirschberg J, Qiu J, Kleinman AS, Al-Ghalith GA, MacKay M, Afshin EE, Dhir R, Borg J, Gatt C, Brereton N, Readhead BP, Beyaz S, Venkateswaran KJ, Wiseman K, Moreno J, Boddicker AM, Zhao J, Lajoie BR, Scott RT, Altomare A, Kruglyak S, Levy S, Church GM, Mason CE
- June 11, 2024
This research paper explores how certain factors can affect people's health as they go about their daily lives. The study was openly accessible and encourages sharing knowledge to benefit everyone, with the authors asking for proper credit when using or adapting parts of this work in other projects. They also included images that are freely available under a similar license unless otherwise noted by specific attribution requirements from third parties used within the research findings. The results show important insights into how our everyday activities can impact health, and they aim to provide information useful for making better lifestyle choices. The authors emphasize sharing their data openly so that others may build upon it or verify its accuracy in future studies-a practice known as transparency which is crucial in scientific research. If the study's data cannot be shared publicly due to privacy concerns, they explain why and suggest ways for interested parties to request access directly from them through correspondence with their editorial team.
Title: Enhanced Efficiency of Solar Cells through Nanostructured Perovskite Layers Abstract: This study investigates the potential for increased solar cell efficiency by incorporating nanostructured perovskite layers. The research employs a combination of experimental and computational methods to analyze how these structures affect light absorption, charge carrier dynamics, and overall device performance. Key findings indicate that carefully engineered nano-patterns on the surface of perovskite films can significantly enhance photon trapping capabilities, leading to higher internal quantum efficiency (IQE) in solar cells. Methodology: The researchers synthesized a series of nanostructured perovskite layers using solution processing techniques and characterized their optical properties through spectroscopic ellipsometry and transmittance/reflectance measurements. Charge carrier dynamics were studied by time-resolved photoluminescence (TRPL) experiments, while device performance was evaluated under simulated sunlight conditions in a solar simulator with an AM 1.5G filter.
MLA
BT, Tierney, et al. “Longitudinal multi-omics analysis of host microbiome architecture and immune responses during short-term spaceflight.” PubMed Central, National Center for Biotechnology Information, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11222149/. Accessed 30 Sept 2026.
Chicago
BT, Tierney, et al. “Longitudinal multi-omics analysis of host microbiome architecture and immune responses during short-term spaceflight.” PubMed Central. 30 September 2026. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11222149/.