
Hangzhou Dianzi
Articles
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Oct 20, 2024 |
biomedical-engineering-online.biomedcentral.com | Hangzhou Dianzi
Our proposed model, as shown in Fig. 5, employs a 2D CNN ResNet18 network as the foundational architecture for effectively extracting features from four-phase CT images. We introduce an interactive perception mechanism into each block of ResNet18 to form a multi-phase information fusion framework.
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Oct 8, 2024 |
bmcwomenshealth.biomedcentral.com | Hangzhou Dianzi
Data collection for this study took place from April to August 2023. The initial section of the questionnaire outlined the study’s purpose and provided an explanation of the requirements to complete the questionnaire items. The succeeding part comprised the measurement items for each category. All participants completed the entire questionnaire anonymously. Additionally, to minimize participants from guessing answers, the items were presented in a randomized order.
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Sep 8, 2024 |
link.springer.com | Hangzhou Dianzi |China-Austria Belt |Advanced Manufacturing
AbstractThe deployment of increasingly diverse services on edge devices is becoming increasingly prevalent. Efficiently deploying functionally heterogeneous services to resource heterogeneous edge nodes while achieving superior user experience is a challenge that every edge system must address.
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Sep 5, 2024 |
cell.com | Lang Pei |Hangzhou Dianzi |Jiasong Zhong |Zhejiang Sci-Tech
Keywords photocatalytic CO2 reduction S-scheme heterojunction charge separation charge storage long afterglow phosphor chemical bond Introduction Anthropogenic CO2 emissions due to combustion of fossil fuels constitute a serious environmental threat.1 Solar-driven photocatalytic CO2 reduction by water into chemical feedstocks and fuels using semiconductor particles now is a sustainable and compelling approach for carbon-neutral and renewable society development.2,3,4 A crucial step in...
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Sep 3, 2024 |
link.springer.com | Hangzhou Dianzi |Power Engineering |Shanghai Jiao Tong
AbstractMicrophase separation within the polyurethane (PU) matrix is caused by thermodynamic incompatibility between the soft and hard segments and the movement of them. Although degree of phase separation (DPS) is a sensitive and important parameter and reflects the formation of the internal hydrophobic network structure, research on the relationship between DPS and the corrosion resistance performance of PU coatings is very limited.
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