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oa_package/1e/1c/PMC10002494.tar.gz | Int J Mol Sci. 2023 Mar 3; 24(5):4931 | PMC10002494 | 2023-03-12T12:10:32 | 36,902,358 | CC BY | Amino Acids in Health and Disease: The Good, the Bad, and the Ugly. | 2023 Mar 3 | [
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oa_package/1e/1c/PMC10002494.tar.gz | Int J Mol Sci. 2023 Mar 3; 24(5):4931 | PMC10002494 | 2023-03-12T12:10:32 | 36,902,358 | CC BY | Amino Acids in Health and Disease: The Good, the Bad, and the Ugly. | 2023 Mar 3 | [
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oa_package/1e/1c/PMC10002494.tar.gz | Int J Mol Sci. 2023 Mar 3; 24(5):4931 | PMC10002494 | 2023-03-12T12:10:32 | 36,902,358 | CC BY | Amino Acids in Health and Disease: The Good, the Bad, and the Ugly. | 2023 Mar 3 | [
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oa_package/1e/1c/PMC10002494.tar.gz | Int J Mol Sci. 2023 Mar 3; 24(5):4931 | PMC10002494 | 2023-03-12T12:10:32 | 36,902,358 | CC BY | Amino Acids in Health and Disease: The Good, the Bad, and the Ugly. | 2023 Mar 3 | [
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oa_package/1e/1c/PMC10002494.tar.gz | Int J Mol Sci. 2023 Mar 3; 24(5):4931 | PMC10002494 | 2023-03-12T12:10:32 | 36,902,358 | CC BY | Amino Acids in Health and Disease: The Good, the Bad, and the Ugly. | 2023 Mar 3 | [
"Ishii I",
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/92/aa/PMC10005368.tar.gz | Molecules. 2023 Mar 6; 28(5):2397 | PMC10005368 | 2023-03-13T04:10:10 | 36,903,642 | CC BY | Application of Green Technology to Extract Clean and Safe Bioactive Compounds from Tetradesmus obliquus Biomass Grown in Poultry Wastewater. | 2023 Mar 6 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/40/86/PMC10006961.tar.gz | Sensors (Basel). 2023 Feb 24; 23(5):2538 | PMC10006961 | 2023-03-12T12:10:32 | 36,904,740 | CC BY | TLS Protocol Analysis Using IoTST-An IoT Benchmark Based on Scheduler Traces. | 2023 Feb 24 | [
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oa_package/43/7b/PMC10009711.tar.gz | Sleep Med X. 2023 Feb 28; 5:100065 | PMC10009711 | 2024-09-13T12:25:17 | 36,923,964 | CC BY | Sleep apnea in patients with exacerbated heart failure and overweight. | 2023 Dec | [
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"Ilieva R",
"Markov D",
"Kinova E",
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oa_package/43/7b/PMC10009711.tar.gz | Sleep Med X. 2023 Feb 28; 5:100065 | PMC10009711 | 2024-09-13T12:25:17 | 36,923,964 | CC BY | Sleep apnea in patients with exacerbated heart failure and overweight. | 2023 Dec | [
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"Markov D",
"Kinova E",
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oa_package/43/7b/PMC10009711.tar.gz | Sleep Med X. 2023 Feb 28; 5:100065 | PMC10009711 | 2024-09-13T12:25:17 | 36,923,964 | CC BY | Sleep apnea in patients with exacerbated heart failure and overweight. | 2023 Dec | [
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"Markov D",
"Kinova E",
"Goudev A"
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oa_package/43/7b/PMC10009711.tar.gz | Sleep Med X. 2023 Feb 28; 5:100065 | PMC10009711 | 2024-09-13T12:25:17 | 36,923,964 | CC BY | Sleep apnea in patients with exacerbated heart failure and overweight. | 2023 Dec | [
"Kalaydzhiev P",
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"Markov D",
"Kinova E",
"Goudev A"
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
"He W",
"Wei W",
"Zhang Q",
"Lv R",
"Qu S",
"Huang X",
"Ma J",
"Zhang P",
"Zhai H",
"Wang N"
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
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"Wei W",
"Zhang Q",
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"Qu S",
"Huang X",
"Ma J",
"Zhang P",
"Zhai H",
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
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"Wei W",
"Zhang Q",
"Lv R",
"Qu S",
"Huang X",
"Ma J",
"Zhang P",
"Zhai H",
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
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"Wei W",
"Zhang Q",
"Lv R",
"Qu S",
"Huang X",
"Ma J",
"Zhang P",
"Zhai H",
"Wang N"
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
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"Zhang Q",
"Lv R",
"Qu S",
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"Ma J",
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
"He W",
"Wei W",
"Zhang Q",
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"Qu S",
"Huang X",
"Ma J",
"Zhang P",
"Zhai H",
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oa_package/4b/1b/PMC10010038.tar.gz | BMC Endocr Disord. 2023 Mar 13; 23:62 | PMC10010038 | 2024-05-03T00:25:17 | 36,915,127 | CC BY | A retrospective cohort study of tamoxifen versus surgical treatment for ER-positive gynecomastia. | 2023 Mar 13 | [
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oa_package/f5/46/PMC10011705.tar.gz | Front Microbiol. 2023 Feb 28; 14:1158958 | PMC10011705 | 2023-03-17T07:10:29 | 36,925,465 | CC BY | Editorial: New perspectives in fighting multidrug-resistant organisms: Natural sources of bioactive compounds. | 2023 | [
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oa_package/f5/46/PMC10011705.tar.gz | Front Microbiol. 2023 Feb 28; 14:1158958 | PMC10011705 | 2023-03-17T07:10:29 | 36,925,465 | CC BY | Editorial: New perspectives in fighting multidrug-resistant organisms: Natural sources of bioactive compounds. | 2023 | [
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oa_package/f5/46/PMC10011705.tar.gz | Front Microbiol. 2023 Feb 28; 14:1158958 | PMC10011705 | 2023-03-17T07:10:29 | 36,925,465 | CC BY | Editorial: New perspectives in fighting multidrug-resistant organisms: Natural sources of bioactive compounds. | 2023 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/d5/22/PMC10019765.tar.gz | JMIR Form Res. 2023 Mar 16; 7:e44633 | PMC10019765 | 2023-07-20T00:25:10 | 36,927,553 | CC BY | Factors Associated With Open Access Publishing Costs in Oncology Journals: Cross-sectional Observational Study. | 2023 Mar 16 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
"Mulaga AN",
"Kamndaya MS",
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] | pdfs/PMC10021269.pdf | 5 | false | false |
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/ff/62/PMC10021269.tar.gz | PLOS Glob Public Health. 2022 Feb 8; 2(2):e0000182 | PMC10021269 | 2023-03-25T12:10:12 | 36,962,147 | CC BY | Decomposing socio-economic inequality in catastrophic out-of-pocket health expenditures in Malawi. | 2022 | [
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oa_package/4f/2e/PMC10030526.tar.gz | Eur J Nutr. 2023 Dec 9; 62(3):1217-1229 | PMC10030526 | 2024-06-01T17:25:13 | 36,484,807 | CC BY | Dietary profiling of physical frailty in older age phenotypes using a machine learning approach: the Salus in Apulia Study. | 2023 Apr | [
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oa_package/4f/2e/PMC10030526.tar.gz | Eur J Nutr. 2023 Dec 9; 62(3):1217-1229 | PMC10030526 | 2024-06-01T17:25:13 | 36,484,807 | CC BY | Dietary profiling of physical frailty in older age phenotypes using a machine learning approach: the Salus in Apulia Study. | 2023 Apr | [
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oa_package/40/9a/PMC10033809.tar.gz | Neth Heart J. 2023 Apr 16; 31(4):138-139 | PMC10033809 | 2024-09-13T23:25:39 | 36,929,111 | CC BY | Left bundle branch pacing: a promising modality for cardiac resynchronisation therapy. | 2023 Apr | [
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oa_package/40/9a/PMC10033809.tar.gz | Neth Heart J. 2023 Apr 16; 31(4):138-139 | PMC10033809 | 2024-09-13T23:25:39 | 36,929,111 | CC BY | Left bundle branch pacing: a promising modality for cardiac resynchronisation therapy. | 2023 Apr | [
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oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
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oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 2 | false | false |
|
oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 3 | false | false |
|
oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 4 | false | false |
|
oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 5 | false | false |
|
oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 6 | false | false |
|
oa_package/5a/81/PMC10038220.tar.gz | FEMS Microbiol Lett. 2022 Dec 7; 370:fnac120 | PMC10038220 | 2024-09-14T02:25:47 | 36,477,252 | CC BY | Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach. | 2023 Jan 17 | [
"O'Neill EC"
] | pdfs/PMC10038220.pdf | 7 | false | true |
|
oa_package/59/9f/PMC10038767.tar.gz | Pan Afr Med J. 2022 Dec 30; 43:214 | PMC10038767 | 2023-03-28T08:10:12 | 36,974,313 | CC BY | [Neuromeningeal tuberculosis: clinical, paraclinical, therapeutic and evolutionary profile of 21 patients]. | 2022 | [
"Taous A",
"Berri MA",
"Boulahri T",
"Traibi I",
"Amrani HN",
"Rouimi A"
] | pdfs/PMC10038767.pdf | 1 | true | false |
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