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| 1 | Hounsfield unit density in the determination of urinary stone composition 显示文摘 | Motley G Dalrymple N Keesling C | 2001 | Urology2001,58,2: | 1 |
| 2 | Hounsfield unit density in the determination of urinary stone composition显示文摘 | Motley G Dalrymple N Keesling C | 2001 | Urology2001,58,2: | 1 |
| 3 | Hounsfield unit density in the determination of urinary stone composition显示文摘 | Motley G Dalrymple N Keesling C | | 0,,2: | 1 |
| 4 | The Funding for HIV/AIDS: Implications for Strategic Development by Nonprofit Organizations显示文摘 | KEESLING G KAYNAMA S A | 1996 | Journal of Marketing Theory and Practice1996,4,4: | 1 |
| 5 | The Hausdorff dimension of the lévy dragon显示文摘 | Duvall P Keesling J | 1999 | Contemporary Mathematics1999,246,: | 1 |
| 6 | A simulation of hand impairments: Effects on upper extremity function and implications toward medical impairment rating and disability determination显示文摘 | Robert D. Rondinelli Winnie Dunn Khatahb M. Hassanein Christine A. Keesling Sharon C. Meredith Trina L. Schulz Nancy J. Lawrence | 1997 | Archives of Physical Medicine and Rehabilitation1997,,12: | 1 |
| 7 | Housfidd united detemination of urinary stone composition显示文摘 | Motley G Dalrymple N Keesling C | 2001 | Urology2001,58,20: | 1 |
| 8 | The Hausdorff Dimension of the Boundary of A Self-similartile显示文摘 | Duvall P Keesling J Vince A | 2000 | J London Math:Soc2000,61,: | 1 |
| 9 | The Hausdorff Dimension of the Levy Dragon Contemporary Math - ematics显示文摘 | Duvall P Keesling J | 1999 | American Mathematics Society1999,246,: | 1 |
| 10 | Housfield unit density in the determination of urinary stone composition显示文摘 | MOTLEY G DALRYMPLE N KEESLING C | 2001 | Urology2001,58,2: | 1 |
| 11 | 可重复使用的机器人抓取软件显示文摘为了让研究人员更容易掌握机器人的抓取技术,Energid公司正在开发一个图形用户界面(GUI)的工具和算法,该算法包括可重复使用的软件工具包,从而能够快速轻松地实现抓取。该方法是通用的,可应用于所有的机器人手臂、机械臂及移动平台,将视觉、位置控制、力控制、避障算法自然地整合到进程中,并且将有效的抓取参数存储于数据库内,用于以后实时应用。本文描述了Energid软件系统如何利用便捷的人机界面、驱动机器人手臂的新方法实现对抓取过程的实时仿真。 | 李英 Justin Keesling Chalongrath Pholsiri Neil Tardella James English | 2011 | 机器人技术与应用2011,,2: | 0 |
| 12 | Silent circulation of poliovirus in small populations显示文摘Background:Small populations that have been isolated by conflict make vaccination and surveillance difficult,threatening polio eradication.Silent circulation is caused by asymptomatic infections.It is currently not clear whether the dynamics of waning immunity also influence the risk of silent circulation in the absence of vaccination.Such circulation can,nevertheless,be present following a declaration of elimination as a result of inadequate acute flaccid paralysis surveillance(AFPS)or environmental surveillance(ES).Methods:We have constructed a stochastic model to understand how stochastic effects alter the ability of small populations to sustain virus circulation in the absence of vaccination.We analyzed how the stochastic process determinants of the duration of silent circulation that could have been detected by ES were affected by R0,waning dynamics,population size,and AFPS sensitivity in a discrete individual stochastic model with homogeneous contagiousness and random mixing.We measured the duration of silent circulation both by the interval between detected acute flaccid paralysis(AFP)cases and the duration of circulation until elimination.Results:As R0 increased and population size increased,the interval between detected AFP cases and the duration of circulation until elimination increased.As AFPS detection rates decreased,the interval between detected AFP cases increased.There was up to a 22%chance of silent circulation lasting for more than 3 years with 100%AFP detection.The duration of silent circulation was not affected by the waning immunity dynamics.Conclusion:We demonstrated that small populations have the potential to sustain prolonged silent circulation.Surveillance in these areas should be intensified before declaring elimination.To further validate these conclusions,it is necessary to realistically relax the simplifying assumptions about mixing and waning. | Celeste Vallejo James Keesling James Koopman Burton Singer | 2017 | Infectious Disease Modelling2017,2,4: | 0 |
| 13 | Corrigendum to“Silent circulation of poliovirus in small populations”[Infectious Disease Modeling 2(2017)431e440]显示文摘An error in a previous publication in the calculation of the average age at first infection for the model is corrected here.The average age at first infection for the effective contact rates used to generate the data ranges from 1.2 to 3.3 years of age instead of 3e5 years of age as advertised in the previous version of the paper.This change has an effect on the force of infection generated by this model.In this corrigendum,we demonstrate the correct method to calculate the average age at first infection for the model.We compare the forces of infection that correspond to these ages in our model with the forces of infection in other endemic populations.We show that the modified age range corresponds to forces of infection which are higher than those that are known to exist in historical studies of polioendemic regions.Thus,the results in the paper have limited applicability to real-world endemic situations. | Celeste Vallejo James Keesling James Koopman Burton Singer | 2018 | Infectious Disease Modelling2018,3,1: | 0 |
| 14 | 一个可重复使用的创作抓取的软件显示文摘为了使机器人专家容易掌握机器人抓取技术,Energid正在开发一个图形用户界面(GUI)的工具和可重复使用的软件工具箱,该工具箱包括轻松地创作抓取和快速搜索抓取算法。该方法是通用的,可用于任何机器手和各类机械臂及移动式平台。文中介绍:如何用Energid的系统软件和方便的人机界面创作抓取动作;用新的方式来约束机器人的手;实时仿真的抓取的过程。特别强调了在创作抓取得过程中,整合使用了力的控制。力的控制包括各种控制算法,这些算法可适用于不同种类的力/力矩传感器。研究结果表明:使用抓取工具创作的抓取路径和抓取力,可以用于实时机器人控制系统。这是一篇机器人软件技术开发者值得一读的文章。 | 李英 Justin Keesling Chalongrath Pholsiri Neil Tardella James | 2011 | 伺服控制2011,,1: | 0 |
| 15 | 一个可重复使用的创作抓取的软件显示文摘为了使机器人专家容易掌握机器人抓取技术,Energid正在开发一个图形用户界面(GUI)的工具和可重复使用的软件工具箱,该工具箱包括轻松地创作抓取和快速搜索抓取算法。该方法是通用的,可以应用于任何机器人的手,所有类型机械臂和移动式平台。本文介绍了如何用Energid的系统软件和方便的人机界面创作抓取动作,用新的方式来约束机器人的手,和实时仿真的抓取的过程。特别强调:在创作抓取得过程中,整合使用了力的控制。力的控制包括各种控制算法,这些算法可适用于不同种类的力/力矩传感器;基于视觉的跟踪,提供物体识别和从数据库中抓取的自动选择(视觉系统提供3维跟踪引导抓取的过程)。模拟和硬件验证的研究使用的是Schunk的SDH的手和LWA手臂。 | Ying Li Justin Keesling Chalongrath Pholsiri Neil Tardella James English | 2010 | 伺服控制2010,,6: | 0 |