目的探讨以问题为导向的教学法(problerm-based learning,PBL)、情景教学法联合放射学信息系统(radiography information system,RIS)在超声医学本科实习教学中的应用价值。方法选取2020年6月—2022年6月在重庆医科大学附属大学城医院...目的探讨以问题为导向的教学法(problerm-based learning,PBL)、情景教学法联合放射学信息系统(radiography information system,RIS)在超声医学本科实习教学中的应用价值。方法选取2020年6月—2022年6月在重庆医科大学附属大学城医院超声科实习的医学影像专业本科实习生48名为研究对象,随机分为观察组24名学生,对照组24名学生,察组采用PBL、情景教学法联合RIS进行教学,对照组采用传统教学法进行教学,对2组出科考核成绩(理论、操作技能)、问卷调查进行比较。结果观察组的出科成绩理论为(88.24±2.18)分,操作为(84.47±3.49)分,均高于对照组的出科成绩理论(74.48±2.32)分,操作(71.33±3.24)分,差异有统计学意义(P<0.001);观察组满意度为95.83%,对照组满意度为79.17%,差异有统计学意义(P<0.05);观察组83.33%的学生认为PBL教学法+情景教学+RIS激发了学习兴趣,87.50%的学生认为训练了临床思维能力,91.67%的学生认为培养了团队协作能力,83.33%的学生认为提高了沟通能力,而对照组54.17%学生认为传统教学激发了学习兴趣,54.17%的学生认为训练了临床思维能力,45.83%的学生认为培养了团队协作能力,50.00%的学生认为提高了沟通能力,观察组的学习兴趣、学习主动性、团队协作意识、人文关怀意识、沟通能力、理论知识掌握、技能操作熟练程度、临床思维能力方面均优于对照组,差异有统计学意义(P<0.05)。结论PBL、情景学法联合RIS在超声实习教学中不仅有助于提高学生的专业素养,还有助于提高学生的综合素质,能提高教学效果,提升学生对教学的满意度。展开更多
Cell-free(CF)multiple-input multiple-output(MIMO)is a promising technique to enable the vision of ubiquitous wireless connectivity for next-generation network communications.Compared to traditional co-located massive ...Cell-free(CF)multiple-input multiple-output(MIMO)is a promising technique to enable the vision of ubiquitous wireless connectivity for next-generation network communications.Compared to traditional co-located massive MIMO,CF MIMO allows geographically distributed access points(APs)to serve all users on the same time-frequency resource with spatial multiplexing techniques,resulting in better performance in terms of both spectral efficiency and coverage enhancement.However,the performance gain is achieved at the expense of deploying more APs with high cost and power consumption.To address this issue,the recently proposed reconfigurable intelligent surface(RIS)technique stands out with its unique advantages of low cost,low energy consumption and programmability.In this paper,we provide an overview of RIS-assisted CF MIMO and its interaction with advanced optimization designs and novel applications.Particularly,recent studies on typical performance metrics such as energy efficiency(EE)and spectral efficiency(SE)are surveyed.Besides,the application of RIS-assisted CF MIMO techniques in various future communication systems is also envisioned.Additionally,we briefly discuss the technical challenges and open problems for this area to inspire research direction and fully exploit its potential in meeting the demands of future wireless communication systems.展开更多
文摘目的探讨以问题为导向的教学法(problerm-based learning,PBL)、情景教学法联合放射学信息系统(radiography information system,RIS)在超声医学本科实习教学中的应用价值。方法选取2020年6月—2022年6月在重庆医科大学附属大学城医院超声科实习的医学影像专业本科实习生48名为研究对象,随机分为观察组24名学生,对照组24名学生,察组采用PBL、情景教学法联合RIS进行教学,对照组采用传统教学法进行教学,对2组出科考核成绩(理论、操作技能)、问卷调查进行比较。结果观察组的出科成绩理论为(88.24±2.18)分,操作为(84.47±3.49)分,均高于对照组的出科成绩理论(74.48±2.32)分,操作(71.33±3.24)分,差异有统计学意义(P<0.001);观察组满意度为95.83%,对照组满意度为79.17%,差异有统计学意义(P<0.05);观察组83.33%的学生认为PBL教学法+情景教学+RIS激发了学习兴趣,87.50%的学生认为训练了临床思维能力,91.67%的学生认为培养了团队协作能力,83.33%的学生认为提高了沟通能力,而对照组54.17%学生认为传统教学激发了学习兴趣,54.17%的学生认为训练了临床思维能力,45.83%的学生认为培养了团队协作能力,50.00%的学生认为提高了沟通能力,观察组的学习兴趣、学习主动性、团队协作意识、人文关怀意识、沟通能力、理论知识掌握、技能操作熟练程度、临床思维能力方面均优于对照组,差异有统计学意义(P<0.05)。结论PBL、情景学法联合RIS在超声实习教学中不仅有助于提高学生的专业素养,还有助于提高学生的综合素质,能提高教学效果,提升学生对教学的满意度。
基金supported in part by ZTE Industry-University-Institute Co⁃operation Funds.
文摘Cell-free(CF)multiple-input multiple-output(MIMO)is a promising technique to enable the vision of ubiquitous wireless connectivity for next-generation network communications.Compared to traditional co-located massive MIMO,CF MIMO allows geographically distributed access points(APs)to serve all users on the same time-frequency resource with spatial multiplexing techniques,resulting in better performance in terms of both spectral efficiency and coverage enhancement.However,the performance gain is achieved at the expense of deploying more APs with high cost and power consumption.To address this issue,the recently proposed reconfigurable intelligent surface(RIS)technique stands out with its unique advantages of low cost,low energy consumption and programmability.In this paper,we provide an overview of RIS-assisted CF MIMO and its interaction with advanced optimization designs and novel applications.Particularly,recent studies on typical performance metrics such as energy efficiency(EE)and spectral efficiency(SE)are surveyed.Besides,the application of RIS-assisted CF MIMO techniques in various future communication systems is also envisioned.Additionally,we briefly discuss the technical challenges and open problems for this area to inspire research direction and fully exploit its potential in meeting the demands of future wireless communication systems.