Valleytronics is an emergent discipline in condensed matter physics and offers a new way to encode and manipulate information based on the valley degree of freedom in materials. Among the various materials being studi...Valleytronics is an emergent discipline in condensed matter physics and offers a new way to encode and manipulate information based on the valley degree of freedom in materials. Among the various materials being studied, Kekulé distorted graphene has emerged as a promising material for valleytronics applications. Graphene can be artificially distorted to form the Kekulé structures rendering the valley-related interaction. In this work, we review the recent progress of research on Kekulé structures of graphene and focus on the modified electronic bands due to different Kekulé distortions as well as their effects on the transport properties of electrons. We systematically discuss how the valley-related interaction in the Kekulé structures was used to control and affect the valley transport including the valley generation, manipulation, and detection. This article summarizes the current challenges and prospects for further research on Kekulé distorted graphene and its potential applications in valleytronics.展开更多
BACKGROUND This study employed a phenomenological research approach within qualitative research to explore the challenges encountered by elderly individuals with temporary colostomies in managing their daily lives and...BACKGROUND This study employed a phenomenological research approach within qualitative research to explore the challenges encountered by elderly individuals with temporary colostomies in managing their daily lives and care needs.Protecting the anus surgery combined with temporary colostomy has emerged as a prevalent treatment modality for low rectal cancer.However,the ileostomy is susceptible to peri-stoma skin complications,as well as fluid,electrolyte,and nutritional imbalances,posing challenges to effective management.The successful selfmanagement of patients is intricately linked to their adjustment to temporary colostomy;nonetheless,there remains a dearth of research examining the factors influencing self-care among temporary colostomy patients and the obstacles they confront.AIM To investigate the lived experiences,perceptions,and care requirements of temporary colostomy patients within their home environment,with the ultimate goal of formulating a standardized management protocol.METHODS Over the period of June to August 2023,a purposive sampling technique was utilized to select 12 patients with temporary intestinal stomas from a tertiary hospital in Shanghai,China.Employing a phenomenological research approach,a semi-structured interview guide was developed,and qualitative interviews were conducted using in-depth interview techniques.The acquired data underwent coding,analysis,organization,and summarization following Colaizzi’s seven-step method.RESULTS The findings of this study revealed that the experiences and needs of patients with temporary intestinal stomas can be delineated into four principal themes:Firstly,Temporary colostomy patients bear various burdens and concerns about the uncertainty of disease progression;secondly,patients exhibit limited self-care capabilities and face information deficits,resulting in heightened reliance on healthcare professionals;thirdly,patients demonstrate the potential for internal motivation through proactive self-adjustment;and finally,patients express a significant need for emotional and social support.CONCLUSION Home-living patients with temporary intestinal stomas confront multifaceted challenges encompassing burdens,inadequate self-care abilities,informational deficits,and emotional needs.Identifying factors influencing patients’self-care at home and proposing strategies to mitigate barriers can serve as a foundational framework for developing and implementing nursing interventions tailored to the needs of patients with temporary intestinal stomas.展开更多
Dynamic self-heating effect(SHE)of silicon-on-insulator(SOI)MOSFET is comprehensively evaluated by ultrafast pulsed I-V measurement in this work.It is found for the first time that the SHE complete heating response an...Dynamic self-heating effect(SHE)of silicon-on-insulator(SOI)MOSFET is comprehensively evaluated by ultrafast pulsed I-V measurement in this work.It is found for the first time that the SHE complete heating response and cooling response of SOI MOSFETs are conjugated,with two-stage curves shown.We establish the effective thermal transient response model with stage superposition corresponding to the heating process.The systematic study of SHE dependence on workload shows that frequency and duty cycle have more significant effect on SHE in first-stage heating process than in the second stage.In the first-stage heating process,the peak lattice temperature and current oscillation amplitude decrease by more than 25 K and 4%with frequency increasing to 10 MHz,and when duty cycle is reduced to 25%,the peak lattice temperature drops to 306 K and current oscillation amplitude decreases to 0.77%.Finally,the investigation of two-stage(heating and cooling)process provides a guideline for the unified optimization of dynamic SHE in terms of workload.As the operating frequency is raised to GHz,the peak temperature depends on duty cycle,and self-heating oscillation is completely suppressed.展开更多
Müller cells are macroglia and play many essential roles as supporting cells in the retina.To respond to pathological changes in diabetic retinopathy(DR),a major complication in the eye of diabetic patients,retin...Müller cells are macroglia and play many essential roles as supporting cells in the retina.To respond to pathological changes in diabetic retinopathy(DR),a major complication in the eye of diabetic patients,retinal Müller glia produce a high level of vascular endothelial growth factor(VEGF or VEGF-A).As VEGF is expressed by multiple retinal cell-types and Müller glia comprise only a small portion of cells in the retina,it has been a great challenge to reveal the function of VEGF or other globally expressed proteins produced by Müller cells.With the development of conditional gene targeting tools,it is now possible to dissect the function of Müller cell-derived VEGF in vivo.By using conditional gene targeting approach,we demonstrate that Müller glia are a major source of retinal VEGF in diabetic mice and Müller cell-derived VEGF plays a significant role in the alteration of protein expression and peroxynitration,which leads to retinal inflammation,neovascularization,vascular leakage,and vascular lesion,key pathological changes in DR.Therefore,Müller glia are a potential cellular target for the treatment of DR,a leading cause of blindness.展开更多
Rubik’s Cube is a widely popular mechanical puzzle that has attracted attention around the world because of its unique characteristics. As a classic brain-training toy well known to the public, Rubik’s Cube was used...Rubik’s Cube is a widely popular mechanical puzzle that has attracted attention around the world because of its unique characteristics. As a classic brain-training toy well known to the public, Rubik’s Cube was used for scientific research and technology development by many scholars. This paper provides a basic understanding of the Rubik’s Cube and shows its mechanical art from the aspects of origin and development, characteristics, research status and especially its mechanical engineering design, as well as making a vision for the application in mechanism. First, the invention and origin of Rubik’s Cube are presented, and then the special characteristics of the cube itself are analyzed.After that, the present researches of Rubik’s Cube are reviewed in various disciplines at home and abroad, including the researches of Rubik’s Cube scientific metaphors, reduction algorithms, characteristic applications, and mechanism issues. Finally, the applications and prospects of Rubik’s Cube in the field of mechanism are discussed.展开更多
Ge-based selenides have attracted extensive attention as promising candidates for future optoelectronic applications.Despite great progress has been achieved,the controlled synthesis of GeSe2and GeSe nanostructures an...Ge-based selenides have attracted extensive attention as promising candidates for future optoelectronic applications.Despite great progress has been achieved,the controlled synthesis of GeSe2and GeSe nanostructures and understanding the relative growth mechanisms of them are still lacking.Herein,monodispersed GeSe_(2) nanoflowers with a diameter of~4μm and highly uniform GeSe nanoparticles with a lateral size of~100 nm are presented by using a colloidal synthetic method.It is found that borane tert-butylamine complex(TBAB)plays an important role in determining the Ge-Se crystal phases due to its moderately reducibility.Furthermore,the coexistence of GeSe_(2) and GeSe phases can also be acquired by precisely controlling the amount of TBAB.In brief,this work provides both new insights of the phase control of Gebased selenides by liquid-phase method and a practical means of producing well-controlled germanium selenide nanostructures.展开更多
Manipulating an exogenous or endogenous gene of interest at a defined level is critical for a wide variety of experiments.The Gal4/UAS system has been widely used to direct gene expression for studying complex genetic...Manipulating an exogenous or endogenous gene of interest at a defined level is critical for a wide variety of experiments.The Gal4/UAS system has been widely used to direct gene expression for studying complex genetic and biological problems in Drosophila melanogaster and other model organisms.Driven by a given tissue-specific Gal4,expressing UAS-transgene or UAS-RNAi(RNA interference)could be used to up-or down-regulate target gene expression,respectively.However,the efficiency of the Gal4/UAS system is roughly predefined by properties of transposon vector constructs and the insertion site in the transgenic stock.Here,we describe a simple way to modulate optomotor blind(omb)expression levels in its endogenous expression region of the wing disc.We co-expressed UAS-omb and UAS-omb-RNAi together under the control of dpp-Gal4 driver which is expressed in the omb expression region of the wing pouch.The repression effect is more sensitive to temperature than that of overexpression.At low temperature,overexpression plays a dominant role but the efficiency is attenuated by UAS-omb-RNAi.In contrast,at high temperature RNAi predominates in gene expression regulation.By this strategy,we could manipulate omb expression levels at a moderate level.It allows us to manipulate omb expression levels in the same tissue between overexpression and repression at different stages by temperature control.展开更多
Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)targets angiotensin-converting enzyme-2 on host cells and attacks various tissues including the heart and vasculature[1,2].Increasing evidence has shown that ...Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)targets angiotensin-converting enzyme-2 on host cells and attacks various tissues including the heart and vasculature[1,2].Increasing evidence has shown that considerable numbers of patients with coronavirus disease 2019(COVID-19)suffer from cardiovascular injury[3,4].展开更多
基金Project supported by the National Natural Science Foundation of China (Grant Nos.12174051 and 12304069)。
文摘Valleytronics is an emergent discipline in condensed matter physics and offers a new way to encode and manipulate information based on the valley degree of freedom in materials. Among the various materials being studied, Kekulé distorted graphene has emerged as a promising material for valleytronics applications. Graphene can be artificially distorted to form the Kekulé structures rendering the valley-related interaction. In this work, we review the recent progress of research on Kekulé structures of graphene and focus on the modified electronic bands due to different Kekulé distortions as well as their effects on the transport properties of electrons. We systematically discuss how the valley-related interaction in the Kekulé structures was used to control and affect the valley transport including the valley generation, manipulation, and detection. This article summarizes the current challenges and prospects for further research on Kekulé distorted graphene and its potential applications in valleytronics.
基金The study was reviewed and approved by the Science and Research Office of Tong Ren Hospital(Shanghai), No. AF/SC-08/04.0.
文摘BACKGROUND This study employed a phenomenological research approach within qualitative research to explore the challenges encountered by elderly individuals with temporary colostomies in managing their daily lives and care needs.Protecting the anus surgery combined with temporary colostomy has emerged as a prevalent treatment modality for low rectal cancer.However,the ileostomy is susceptible to peri-stoma skin complications,as well as fluid,electrolyte,and nutritional imbalances,posing challenges to effective management.The successful selfmanagement of patients is intricately linked to their adjustment to temporary colostomy;nonetheless,there remains a dearth of research examining the factors influencing self-care among temporary colostomy patients and the obstacles they confront.AIM To investigate the lived experiences,perceptions,and care requirements of temporary colostomy patients within their home environment,with the ultimate goal of formulating a standardized management protocol.METHODS Over the period of June to August 2023,a purposive sampling technique was utilized to select 12 patients with temporary intestinal stomas from a tertiary hospital in Shanghai,China.Employing a phenomenological research approach,a semi-structured interview guide was developed,and qualitative interviews were conducted using in-depth interview techniques.The acquired data underwent coding,analysis,organization,and summarization following Colaizzi’s seven-step method.RESULTS The findings of this study revealed that the experiences and needs of patients with temporary intestinal stomas can be delineated into four principal themes:Firstly,Temporary colostomy patients bear various burdens and concerns about the uncertainty of disease progression;secondly,patients exhibit limited self-care capabilities and face information deficits,resulting in heightened reliance on healthcare professionals;thirdly,patients demonstrate the potential for internal motivation through proactive self-adjustment;and finally,patients express a significant need for emotional and social support.CONCLUSION Home-living patients with temporary intestinal stomas confront multifaceted challenges encompassing burdens,inadequate self-care abilities,informational deficits,and emotional needs.Identifying factors influencing patients’self-care at home and proposing strategies to mitigate barriers can serve as a foundational framework for developing and implementing nursing interventions tailored to the needs of patients with temporary intestinal stomas.
文摘Dynamic self-heating effect(SHE)of silicon-on-insulator(SOI)MOSFET is comprehensively evaluated by ultrafast pulsed I-V measurement in this work.It is found for the first time that the SHE complete heating response and cooling response of SOI MOSFETs are conjugated,with two-stage curves shown.We establish the effective thermal transient response model with stage superposition corresponding to the heating process.The systematic study of SHE dependence on workload shows that frequency and duty cycle have more significant effect on SHE in first-stage heating process than in the second stage.In the first-stage heating process,the peak lattice temperature and current oscillation amplitude decrease by more than 25 K and 4%with frequency increasing to 10 MHz,and when duty cycle is reduced to 25%,the peak lattice temperature drops to 306 K and current oscillation amplitude decreases to 0.77%.Finally,the investigation of two-stage(heating and cooling)process provides a guideline for the unified optimization of dynamic SHE in terms of workload.As the operating frequency is raised to GHz,the peak temperature depends on duty cycle,and self-heating oscillation is completely suppressed.
基金Supported by The NIH grants,Nos.GM104934,EY020900 and EY021725(NEI Core)Chinese National Natural Science Foundation grant,No.81200699grants from Presbyterian Health Foundation and Oklahoma Center for Adult Stem Cell Research and an endowment from Choctaw Nation(to Le YZ)
文摘Müller cells are macroglia and play many essential roles as supporting cells in the retina.To respond to pathological changes in diabetic retinopathy(DR),a major complication in the eye of diabetic patients,retinal Müller glia produce a high level of vascular endothelial growth factor(VEGF or VEGF-A).As VEGF is expressed by multiple retinal cell-types and Müller glia comprise only a small portion of cells in the retina,it has been a great challenge to reveal the function of VEGF or other globally expressed proteins produced by Müller cells.With the development of conditional gene targeting tools,it is now possible to dissect the function of Müller cell-derived VEGF in vivo.By using conditional gene targeting approach,we demonstrate that Müller glia are a major source of retinal VEGF in diabetic mice and Müller cell-derived VEGF plays a significant role in the alteration of protein expression and peroxynitration,which leads to retinal inflammation,neovascularization,vascular leakage,and vascular lesion,key pathological changes in DR.Therefore,Müller glia are a potential cellular target for the treatment of DR,a leading cause of blindness.
基金Supported by National Natural Science Foundation of China(Grant No.51775473)Hebei Provincial Natural Science Foundation of China(Grant No.E2018203140)Hebei Provincial System Construction Project of Guide Program for Technology Innovation(Grant No.18241905D)
文摘Rubik’s Cube is a widely popular mechanical puzzle that has attracted attention around the world because of its unique characteristics. As a classic brain-training toy well known to the public, Rubik’s Cube was used for scientific research and technology development by many scholars. This paper provides a basic understanding of the Rubik’s Cube and shows its mechanical art from the aspects of origin and development, characteristics, research status and especially its mechanical engineering design, as well as making a vision for the application in mechanism. First, the invention and origin of Rubik’s Cube are presented, and then the special characteristics of the cube itself are analyzed.After that, the present researches of Rubik’s Cube are reviewed in various disciplines at home and abroad, including the researches of Rubik’s Cube scientific metaphors, reduction algorithms, characteristic applications, and mechanism issues. Finally, the applications and prospects of Rubik’s Cube in the field of mechanism are discussed.
基金supported by the National Natural Science Foundation of China(Nos.51971122 and 12174237)Technological Innovation Programs of Higher Education Institutions in Shanxi(No.2021Y440)。
文摘Ge-based selenides have attracted extensive attention as promising candidates for future optoelectronic applications.Despite great progress has been achieved,the controlled synthesis of GeSe2and GeSe nanostructures and understanding the relative growth mechanisms of them are still lacking.Herein,monodispersed GeSe_(2) nanoflowers with a diameter of~4μm and highly uniform GeSe nanoparticles with a lateral size of~100 nm are presented by using a colloidal synthetic method.It is found that borane tert-butylamine complex(TBAB)plays an important role in determining the Ge-Se crystal phases due to its moderately reducibility.Furthermore,the coexistence of GeSe_(2) and GeSe phases can also be acquired by precisely controlling the amount of TBAB.In brief,this work provides both new insights of the phase control of Gebased selenides by liquid-phase method and a practical means of producing well-controlled germanium selenide nanostructures.
基金supported by National Natural Science Foundation of China(NSFC31402021and NSFC31672364)2018 Special Talents Projects in Shanxi Province,China(201805D211019).
文摘Manipulating an exogenous or endogenous gene of interest at a defined level is critical for a wide variety of experiments.The Gal4/UAS system has been widely used to direct gene expression for studying complex genetic and biological problems in Drosophila melanogaster and other model organisms.Driven by a given tissue-specific Gal4,expressing UAS-transgene or UAS-RNAi(RNA interference)could be used to up-or down-regulate target gene expression,respectively.However,the efficiency of the Gal4/UAS system is roughly predefined by properties of transposon vector constructs and the insertion site in the transgenic stock.Here,we describe a simple way to modulate optomotor blind(omb)expression levels in its endogenous expression region of the wing disc.We co-expressed UAS-omb and UAS-omb-RNAi together under the control of dpp-Gal4 driver which is expressed in the omb expression region of the wing pouch.The repression effect is more sensitive to temperature than that of overexpression.At low temperature,overexpression plays a dominant role but the efficiency is attenuated by UAS-omb-RNAi.In contrast,at high temperature RNAi predominates in gene expression regulation.By this strategy,we could manipulate omb expression levels at a moderate level.It allows us to manipulate omb expression levels in the same tissue between overexpression and repression at different stages by temperature control.
文摘Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)targets angiotensin-converting enzyme-2 on host cells and attacks various tissues including the heart and vasculature[1,2].Increasing evidence has shown that considerable numbers of patients with coronavirus disease 2019(COVID-19)suffer from cardiovascular injury[3,4].