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1

Bott, Julia. « Single Subject Experimental Design ». Physiotherapy 80, no 5 (mai 1994) : 316. http://dx.doi.org/10.1016/s0031-9406(10)61066-8.

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Wambaugh, Julie, et Ralf Schlosser. « Single-Subject Experimental Design : An Overview ». Clinical Research Education Library 2, no 1 (2014) : 1. http://dx.doi.org/10.1044/cred-cred-ssd-r101-002.

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Rassafiani, Mehdi, et Robab Sahaf. « Single case experimental design : an overview ». International Journal of Therapy and Rehabilitation 17, no 6 (juin 2010) : 285–89. http://dx.doi.org/10.12968/ijtr.2010.17.6.48151.

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Newell, Robert. « Single case experimental design : controlling the study ». Nurse Researcher 5, no 4 (juillet 1998) : 25–39. http://dx.doi.org/10.7748/nr.5.4.25.s4.

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Newell, Robert. « Single case experimental design : controlling the study ». Nurse Researcher 5, no 4 (juillet 1998) : 25–39. http://dx.doi.org/10.7748/nr1998.07.5.4.25.c6071.

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Reason, Rea, et Eleni Morfidi. « Literacy Difficulties and Single-Case Experimental Design ». Educational Psychology in Practice 17, no 3 (septembre 2001) : 227–44. http://dx.doi.org/10.1080/02667360120072756.

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Riddoch, Jane, et Sheila Lennon. « Single Subject Experimental Design : One Way Forward ? » Physiotherapy 80, no 4 (avril 1994) : 215–18. http://dx.doi.org/10.1016/s0031-9406(10)61299-0.

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Baran-Gale, Jeanette, Tamir Chandra et Kristina Kirschner. « Experimental design for single-cell RNA sequencing ». Briefings in Functional Genomics 17, no 4 (8 novembre 2017) : 233–39. http://dx.doi.org/10.1093/bfgp/elx035.

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Cvetković, Aleksandar, Danijela Cvetković, Danko Milašinović, Nemanja Jovičić, Nikola Miailović, Dalibor Nikolić, Slobodanka Mitrović et Nenad Filipović. « EXPERIMENTAL ELECTROCHEMOTHERAPY USING NOVEL DESIGN SINGLE NEEDLE DEVICE ». Journal of the Serbian Society for Computational Mechanics 15, no 2 (30 décembre 2021) : 56–62. http://dx.doi.org/10.24874/jsscm.2021.15.02.06.

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This is a feasibility study for the application of a novel concept of single-needle device for localized chemotherapy. Systemic chemotherapy has numerous and severe side effects. To conduct localized (electro)chemotherapy, we designed a novel device that does not currently exist on the market. Electrochemotherapy is based on the cell membranes temporary or permanent permeabilization using an electric current of defined characteristics. Electroporation can be reversible, when after a period of opened pores and membrane permeability increasing, membranes and cells return to their original state without damage. Electroporation can be an irreversible process when the pores on the membrane remain permanently open, electrolyte imbalance occurs resulting in cell death. Electrochemotherapy involves a combination of cytostatics and reversible electroporation, when pores on the cell membrane are temporarily opened and, during that short period, a large amount of cytostatic is entered into the cell, which is a macromolecule that would not normally penetrate the cell. After closing the pores, the cytostatic remains trapped in the cell in large quantities, multiplying its effect. In this paper, we present a feasibility study of electroporation application in irreversible mode without the use of cytostatics. Fresh porcine liver tissue was used to show that the constructed equipment was effective, thus opening the way for further investigations using reversible electroporation with the application of cytostatics, which would represent localized electrochemotherapy. We penetrated the virtual tumor area (liver metastases) with a specially designed needle with electrodes that generate an electric field and apply electroporation in the target tissue. We have shown that the constructed novel design single needle equipment for electroporation is effective on the experimental model of isolated porcine liver. Further steps in our study will be the testing of electrochemotherapy in an experimental animal model in vivo.
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Kannan, Mr, Saravanan P et Srinivasaperumal K P. « Design And Experimental Investigation Of Single Plate Clutch ». International Journal of Mechanical Engineering 7, no 3 (25 mars 2020) : 30–34. http://dx.doi.org/10.14445/23488360/ijme-v7i3p104.

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The Clutch Disk or plate is a part of the manual transmission system for your vehicle that delivers power from the engine to the transmission. It is mounted b/w the pressure plate & the flywheel. For high performance automobiles it is constructed from highly durable steel or sometimes other material. Performance of Vehicle Clutch plates on pad-to-disk interface touch conditions. The purpose of this study is to evaluate the impact on the friction & wear of Clutch Plate material from different material composition. If we use the composite material the cost instead of the traditional material, weight can be reduced and the life of the brake material can be extended at low cost. In our research, material strength is experimentally investigated to predict compression, tensile & impact testing in both materials (E-glass & Jute fiber) to choose the better material of single plate clutch
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Byiers, Breanne J., Joe Reichle et Frank J. Symons. « Single-Subject Experimental Design for Evidence-Based Practice ». American Journal of Speech-Language Pathology 21, no 4 (novembre 2012) : 397–414. http://dx.doi.org/10.1044/1058-0360(2012/11-0036).

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Bithell, Christine. « Single Subject Experimental Design : A case for concern ? » Physiotherapy 80, no 2 (février 1994) : 85–87. http://dx.doi.org/10.1016/s0031-9406(10)61015-2.

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Kearns, Kevin P. « Flexibility of Single-Subject Experimental Designs. Part II ». Journal of Speech and Hearing Disorders 51, no 3 (août 1986) : 204–14. http://dx.doi.org/10.1044/jshd.5103.204.

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The purpose of this paper is to present a taxonomy of single-subject experimental designs and discuss relevant examples that underscore the versatility and flexibility of this approach to clinical research. The proposed taxonomy serves as a heuristic model that may facilitate an understanding of single-subject experimental designs. Four general evaluation strategies employed in applied research—treatment-no treatment comparison, component assessment, treatment-treatment comparison, and successive level analysis—are discussed within this schema. Each of these evaluation strategies is related to commonly posed clinical research questions, and published examples of design options that address these questions are presented. Throughout the discussion basic considerations relating to appropriate design selection are reviewed.
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Tongnan, Huang. « Experimental Design of SRAM Type FPGA Single Particle Effect ». Journal of Physics : Conference Series 2016, no 1 (1 septembre 2021) : 012005. http://dx.doi.org/10.1088/1742-6596/2016/1/012005.

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S., Santhosh, et Periyasamy S. « Experimental Design For Single Degree Of Freedom Vibration System ». International Journal of Research in Advent Technology 7, no 4 (10 avril 2019) : 401–5. http://dx.doi.org/10.32622/ijrat.742019168.

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Skolasky, Richard L. « Considerations in Writing About Single-Case Experimental Design Studies ». Cognitive And Behavioral Neurology 29, no 4 (décembre 2016) : 169–73. http://dx.doi.org/10.1097/wnn.0000000000000112.

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Yamagishi, Naoki, Shun Fujimaki, Takeharu Igaki et Kenichi Ohkubo. « Single case design : A classic yet new experimental method ». Proceedings of the Annual Convention of the Japanese Psychological Association 83 (11 septembre 2019) : SS—050—SS—050. http://dx.doi.org/10.4992/pacjpa.83.0_ss-050.

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Xie, Xi Feng, et Li Ling Zheng. « Design of Single-Phase Active Power Filter ». Applied Mechanics and Materials 329 (juin 2013) : 421–25. http://dx.doi.org/10.4028/www.scientific.net/amm.329.421.

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Aiming at the features of complexity, poor real-time and Low-accuracy of single-phase Active Power Filter (APF), and the problem of impossible parallel computation in the traditional DSP software realization, new design method of APF Based on FPGA is proposed, This paper focuses on the study of the harmonic current detecting method and improves control method of compensate current, it builds an experimental platform with FPGA EP1C12Q240C8 as the controller, the experimental results all support the effectiveness and correctness of the control methods and design methods of APF.
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Kennamer, Noble, Steven Walton et Alexander Ihler. « Design Amortization for Bayesian Optimal Experimental Design ». Proceedings of the AAAI Conference on Artificial Intelligence 37, no 7 (26 juin 2023) : 8220–27. http://dx.doi.org/10.1609/aaai.v37i7.25992.

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Bayesian optimal experimental design is a sub-field of statistics focused on developing methods to make efficient use of experimental resources. Any potential design is evaluated in terms of a utility function, such as the (theoretically well-justified) expected information gain (EIG); unfortunately however, under most circumstances the EIG is intractable to evaluate. In this work we build off of successful variational approaches, which optimize a parameterized variational model with respect to bounds on the EIG. Past work focused on learning a new variational model from scratch for each new design considered. Here we present a novel neural architecture that allows experimenters to optimize a single variational model that can estimate the EIG for potentially infinitely many designs. To further improve computational efficiency, we also propose to train the variational model on a significantly cheaper-to-evaluate lower bound, and show empirically that the resulting model provides an excellent guide for more accurate, but expensive to evaluate bounds on the EIG. We demonstrate the effectiveness of our technique on generalized linear models, a class of statistical models that is widely used in the analysis of controlled experiments. Experiments show that our method is able to greatly improve accuracy over existing approximation strategies, and achieve these results with far better sample efficiency.
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Hu, LP. « Statistical inference and experimental design of univariate qualitative data of single-group design ». Journal of Chinese Integrative Medicine 8, no 11 (15 novembre 2010) : 1085–89. http://dx.doi.org/10.3736/jcim20101114.

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Borgese, Michele, Filippo Costa, Simone Genovesi et Agostino Monorchio. « An Iterative Design Procedure for Multiband Single-Layer Reflectarrays : Design and Experimental Validation ». IEEE Transactions on Antennas and Propagation 65, no 9 (septembre 2017) : 4595–606. http://dx.doi.org/10.1109/tap.2017.2725378.

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Wang, Chunyong, et Min Zhong. « Design and experimental measurements of single/dual mode tunable metasurfaces ». Optical Materials 133 (novembre 2022) : 112932. http://dx.doi.org/10.1016/j.optmat.2022.112932.

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Houghton, Simon. « Methods focus – Single case experimental design in forensic mental health ». Mental Health Practice 11, no 4 (décembre 2007) : 24. http://dx.doi.org/10.7748/mhp.11.4.24.s25.

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Taylor, Sara, Akane Sano, Craig Ferguson, Akshay Mohan et Rosalind Picard. « QuantifyMe : An Open-Source Automated Single-Case Experimental Design Platform ». Sensors 18, no 4 (5 avril 2018) : 1097. http://dx.doi.org/10.3390/s18041097.

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25

Talaga, David S. « Information Theoretical Approach to Single-Molecule Experimental Design and Interpretation ». Journal of Physical Chemistry A 110, no 31 (août 2006) : 9743–57. http://dx.doi.org/10.1021/jp062192b.

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Van den Noortgate, Wim, et Patrick Onghena. « A multilevel meta-analysis of single-subject experimental design studies ». Evidence-Based Communication Assessment and Intervention 2, no 3 (septembre 2008) : 142–51. http://dx.doi.org/10.1080/17489530802505362.

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Ganz, Jennifer B., et Kevin M. Ayres. « Methodological standards in single-case experimental design : Raising the bar ». Research in Developmental Disabilities 79 (août 2018) : 3–9. http://dx.doi.org/10.1016/j.ridd.2018.03.003.

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Vaz, Daniela Virgínia, Renata de Carvalho Schettino, Teresa Regina Rolla de Castro, Valéria Reis Teixeira, Sheyla Rossana Cavalcanti Furtado et Elyonara de Mello Figueiredo. « Treadmill training for ataxic patients : a single-subject experimental design ». Clinical Rehabilitation 22, no 3 (5 décembre 2007) : 234–41. http://dx.doi.org/10.1177/0269215507081578.

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Xiaodong, Bao, Wang Yongzhi et Jin Liang. « Design of Three-Section Current Protection Experimental Device for Single ». MATEC Web of Conferences 173 (2018) : 01020. http://dx.doi.org/10.1051/matecconf/201817301020.

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Based on the design idea of microcomputer protection, a set of three-section current protection, experimental device was designed by using MCU. Using MCU as the core control of experimental device, the circuits were designed, including the passive filter, current acquisition and signal output; real-ti me, current data were collected. When the current exceeded the setting value, the three-section protection had the single hop or linkage, thereby sending out a tripping signalto the simulated circuit breaker. By testing, the device could store data such as real-time acquisition of the current, alarm, tripping and closing in local database and cloud database, and realize remote monitoring and analysis of devices through cloud service., The device basically reached the goal of laboratory experiment teaching.
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Catalina Nassar, Andrea, Fernando Yaacov Peña et Christian Stephan-Otto. « Brain volumetric changes after sensory isolation : single case experimental design ». Journal of Neurology & ; Stroke 12, no 4 (11 août 2022) : 114–17. http://dx.doi.org/10.15406/jnsk.2022.12.00512.

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This study aimed to investigate the cerebral volumetric changes measurable by brain magnetic resonance imaging, as well as the different physiological variables documented through neurobiofeedback equipment, before and after 30 serial sessions of guided meditations in a sensory isolation tank. A pilot test was carried out, with a single subject, and it was concluded that serial sessions of meditations in flotation tanks changed the brain structure, triggered the relaxation response, generating greater physical, psychological and mental well-being for the research participant.
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Astaneh-Asl, Abolhassan, Steven M. Call et Kurt M. McMullin. « Design of Single Plate Shear Connections ». Engineering Journal 26, no 1 (31 mars 1989) : 21–32. http://dx.doi.org/10.62913/engj.v26i1.513.

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Single plate shear connections, often referred to as shear tabs, have gained considerable popularity in recent years due to their efficiency and ease of fabrication. Shear tab connections are primarily used to transfer beam end reactions to the supporting elements. The connection consists of a plate welded to a support at one edge and bolted to a beam web. Figure 1 shows typical applications of single plate shear connections. This paper presents the summary of a research project on the behavior and design of single plate shear connections. Based on experimental and analytical studies, a new design procedure is developed and presented.
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Tanious, René, et Patrick Onghena. « Randomized Single-Case Experimental Designs in Healthcare Research : What, Why, and How ? » Healthcare 7, no 4 (13 novembre 2019) : 143. http://dx.doi.org/10.3390/healthcare7040143.

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Health problems are often idiosyncratic in nature and therefore require individualized diagnosis and treatment. In this paper, we show how single-case experimental designs (SCEDs) can meet the requirement to find and evaluate individually tailored treatments. We give a basic introduction to the methodology of SCEDs and provide an overview of the available design options. For each design, we show how an element of randomization can be incorporated to increase the internal and statistical conclusion validity and how the obtained data can be analyzed using visual tools, effect size measures, and randomization inference. We illustrate each design and data analysis technique using applied data sets from the healthcare literature.
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Du, Shao Bo, Sheng Bo Sang, Wen Dong Zhang, Jie Hu, Peng Wei Li, Gang Li et Hui Feng. « Microfluidics Design for Single Cell Detection ». Key Engineering Materials 562-565 (juillet 2013) : 589–93. http://dx.doi.org/10.4028/www.scientific.net/kem.562-565.589.

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Here we demonstrate a microfluidic-based analysis system based on single cell capture array, which can physically trap individual cell using micrometer-sized structures. A stable and in vivo-like microenvironment was built with the novel structure at the single-cell detection level. The microfluidic-based design can decouple single cells from fluid flow with the help of micropillars. The size and geometry of the cell jails are designed in order to discriminate between mother and daughter cells. It provides an experimental platform to efficiently monitor individual cell state for a long period of time. Furthermore, the parallel microfluidic array can ensure accuracy. In addition, finite element method (FEM) was employed to predict fluid transport properties for the most optimal fluid microenvironment.
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Huang, Min, You Long Wang, Shi Feng Xiong et Yao Kang. « Structural Optimization of Double Swirler Based on Experimental Design ». Applied Mechanics and Materials 411-414 (septembre 2013) : 2997–3005. http://dx.doi.org/10.4028/www.scientific.net/amm.411-414.2997.

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Based on several structure optimization parameters for the description of the geometric features of a double oblique radial swirler, simplified structure design parameters and value interval were determined. And, the CFD analysis model of the swirler is established. Based on the approaches of multi-wheel space filling experimental designs, 17 design schemes were gained, then CFD numberical experiments on the cold single-phase flow field was developed to all design schemes. Finally, the optimal design scheme were found by numberical space filling experimental design method in a several turn.
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De, Tumal Kumar, et Victoria J. Madden. « Classical Conditioning for Pain : The Development of a Customized Single-Case Experimental Design ». Journal of Trial and Error 2, no 1 (3 mars 2022) : 58–70. http://dx.doi.org/10.36850/e8.

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Single-case experiments are increasingly popular in the behavioral sciences. Due to their flexibility, single- case designs can be customized to test a variety of experimental hypotheses. We were interested in using a single-case experimental approach to test whether pain thresholds can be influenced by Pavlovian classical conditioning. Following the example of earlier studies into this topic, we planned to measure whether participants would more frequently report specific electrocutaneous stimuli as painful when they were presented with specific vibrotactile stimuli that had previously been associated with painful electrocutaneous stimuli. First, we decided on a mean difference effect size measure derived from the Sensation and Pain Rating Scale ratings for the electrocutaneous stimuli provided by the participants. Next, we discussed several possible single-case designs and evaluated their benefits and shortcomings. Then, we ran pilot tests with a few participants based on the possible single-case designs. We also conducted a simulation study to estimate the power of a randomization test to test our hypothesis using different values for effect size, number of participants, and number of measurements. Finally, we decided on a sequentially replicated AB phase design with 30 participants based on the results from the pilot tests and the power study. We plan to implement this single-case design in a future experiment to test our hypothesis
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Jamshidi, Laleh. « Improving the Methodological Quality of Single-Case Experimental Design Meta-Analysis ». JOURNAL OF MENTAL HEALTH AND CLINICAL PSYCHOLOGY 2, no 4 (1 juillet 2018) : 1–9. http://dx.doi.org/10.29245/2578-2959/2018/4.1140.

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Newell, Robert. « The single case experimental design : a quantitative method for everyday use ». Nursing Standard 7, no 7 (10 novembre 1992) : 24–28. http://dx.doi.org/10.7748/ns.7.7.24.s70.

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Lane, Justin D., Jennifer R. Ledford et David L. Gast. « Single-Case Experimental Design : Current Standards and Applications in Occupational Therapy ». American Journal of Occupational Therapy 71, no 2 (25 janvier 2017) : 7102300010p1. http://dx.doi.org/10.5014/ajot.2017.022210.

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Li, Jian. « Design and Development of Single Chip Microcomputer (SCM) General Experimental Platform ». Applied Mechanics and Materials 195-196 (août 2012) : 885–88. http://dx.doi.org/10.4028/www.scientific.net/amm.195-196.885.

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Aiming at drawbacks existing in SCM test chambers, people have developed a SCM experimental system featuring simple circuit, low price and practical. Based on necessity and principles of SCM experiment teaching reform, people have designed the overall structure of experimental platform, and elaborated design solutions of system hardware and software. Adopting the pattern of combining listening, watching, doing, thinking and practicing, utilizing hands and brains together as well as letting teachers and students interactive, the development platform has aroused students interest for study, attained obvious teaching results, and also satisfied the actual demand of experimental field for flexible choosing.
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Yesil, Abdullah, Firat Kacar et Koray Gurkan. « Design and Experimental Evaluation of Quadrature Oscillator Employing Single FB–VDBA ». Journal of Electrical Engineering 67, no 2 (1 avril 2016) : 137–42. http://dx.doi.org/10.1515/jee-2016-0019.

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Abstract This paper presents an attractive and a new voltage-mode quadrature oscillator using a single Fully Balanced-Voltage Differencing Buffer Amplifier (FB-VDBA) as the active element. The circuit structure is very simple, consisting of merely one FB-VDBA, one resistor and two capacitors. The circuit is implemented using the commonly available OPA860 which results in low output impedance and high current drive capability. The proposed circuit also has a suitable architecture for IC production. Experimental results which are matched well with the theoretical assumptions are given.
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Egan, Sarah J., et Paula Hine. « Cognitive Behavioural Treatment of Perfectionism : A Single Case Experimental Design Series ». Behaviour Change 25, no 4 (1 décembre 2008) : 245–58. http://dx.doi.org/10.1375/bech.25.4.245.

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AbstractPerfectionism can maintain depression, anxiety and eating disorders, yet few studies have evaluated treatments for perfectionism. This study examined the effectiveness of individual cognitive behaviour therapy (CBT) in treating perfectionism in four adults with a diagnosis of either an anxiety disorder or depression. The study used an A-B single case experimental design series with follow-up, and a 3-week pre- and postbaseline phase. Treatment involved 8 sessions and a 2-week follow-up session. Visual inspection of data revealed downward trends in overall perfectionism and clinically significant decreases in perfectionism for two participants. No clinically significant reductions were observed in depressive or anxious symptomatology. CBT for perfectionism warrants further investigation.
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Murie, Carl, Caroline Barette, Laurence Lafanechère et Robert Nadon. « Single assay-wide variance experimental (SAVE) design for high-throughput screening ». Bioinformatics 29, no 23 (20 septembre 2013) : 3067–72. http://dx.doi.org/10.1093/bioinformatics/btt538.

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Di, Li, Edward H. Kerns, Ning Gao, Susan Q. Li, Youping Huang, Jim L. Bourassa et Donna M. Huryn. « Experimental Design on Single-Time-Point High-Throughput Microsomal Stability Assay ». Journal of Pharmaceutical Sciences 93, no 6 (juin 2004) : 1537–44. http://dx.doi.org/10.1002/jps.20076.

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Swan, Daniel M., James E. Pustejovsky et S. Natasha Beretvas. « The impact of response-guided designs on count outcomes in single-case experimental design baselines ». Evidence-Based Communication Assessment and Intervention 14, no 1-2 (26 mars 2020) : 82–107. http://dx.doi.org/10.1080/17489539.2020.1739048.

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Gezan, Salvador A., Timothy L. White et Dudley A. Huber. « Comparison of Experimental Designs for Clonal Forestry Using Simulated Data ». Forest Science 52, no 1 (1 janvier 2006) : 108–16. http://dx.doi.org/10.1093/forestscience/52.1.108.

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Abstract Various alternatives for the design of clonal field trials in forestry were studied using simulated data to identify “optimal𠇍 or “near-optimal𠇍 scenarios for the estimation of genetic parameters. The simulated field site consisted of a rectangular grid on which 256 clones with 8 ramets each were installed. Estimates of genetic parameters were compared for (1) single-tree and four-tree row plots; (2) several experimental designs (completely randomized, randomized complete block, incomplete blocks of various sizes, and row–column); (3) no mortality versus 257% mortality; and (4) different patterns of environmental variability (only patches, only gradients, and both patches and gradients). Use of single-tree plots, on average, increased the correlations between true and predicted clonal values by 57% over four-tree row plots and increased genetic gain from selection. Starting with a parametric broad-sense heritability (H B 2) of 0.25 for a completely randomized design, the experimental designs resulting in the highest H B 2 were row–column designs for single-tree plots and incomplete blocks with 32 blocks per replication when four-tree row plots were used. These designs increased average heritability 107% and 147% over a randomized complete block design, respectively. The only effect of 257% mortality was an increase in the variability of some variance component estimates.
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Hu, Liang-ping. « Statistical inference and experimental design of univariate quantitative data of single-group design (part two) ». Journal of Chinese Integrative Medicine 8, no 10 (15 octobre 2010) : 985–88. http://dx.doi.org/10.3736/jcim20101012.

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Hobbs, Ian M., Joey A. Charboneau et Todd L. Jacobsen. « Improving Experimental Design through Uncertainty Analysis ». Metrology 3, no 3 (28 juin 2023) : 246–53. http://dx.doi.org/10.3390/metrology3030014.

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In this paper, the development of a fission-gas collecting and physical-analysis-enabling instrument was proposed for small-volume determination. Analysis specifications require a design capable of accurately and repeatably determining volumes in the range of 0.07–2.5 mL. This system relies on a series of gas expansions originating from a cylinder with known internal volume. The combined gas law is used to derive the unknown volumes from these expansions. Initial system designs included one of two known volumes, 11.85 ± 0.34 mL and 5.807 ± 0.078 mL, with a manifold volume of 32 mL. Results obtained from modeling this system’s operation showed that 0.07 mL can be determined with a relative expanded uncertainty greater than 300% (k = 2) for a single replicate, which was unacceptable for the proposed experimental design. Initial modeling showed that the volume connecting the known volume and rodlet, i.e., the manifold volume, and the sensitivity of the pressure sensor were key contributors to the expanded uncertainty of the measured rodlet volume. The system’s design limited the available options for pressure sensors, so emphasis was placed on the design of the manifold volume. The final system design reduced the manifold volume to 17 mL. These changes in design, combined with replicate analysis, were able to reduce the relative expanded uncertainty by ±12% (k = 2) for the 0.07 mL volume.
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Ebunilo, Patrick, Henry Egware et Samuel Ukwuaba. « Design and Testing of an Experimental Cassava Tuber Peeling Machine ». International Journal of Engineering Research in Africa 9 (mai 2013) : 35–42. http://dx.doi.org/10.4028/www.scientific.net/jera.9.35.

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A novel cassava peeling machine that operates on the principle of the lathe was designed, fabricated and tested. The unique peeling principle uses a self-loading, self-adjusting single point cutting tool that can follow the contour of the cut cassava tuber sections or sized lots. The single point cutting tool allows the peeler to peel both freshly harvested cassava tubers and cassava tubers that are up to four days old effectively and efficiently. Test results show a peeling efficiency of over 70% for all categories of tubers and a minimal loss of flesh.
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Tincani, Matt, et Jason Travers. « Publishing Single-Case Research Design Studies That Do Not Demonstrate Experimental Control ». Remedial and Special Education 39, no 2 (4 avril 2017) : 118–28. http://dx.doi.org/10.1177/0741932517697447.

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Demonstration of experimental control is considered a hallmark of high-quality single-case research design (SCRD). Studies that fail to demonstrate experimental control may not be published because researchers are unwilling to submit these papers for publication and journals are unlikely to publish negative results (i.e., the file drawer effect). SCRD studies comprise a large proportion of intervention research in special education. Consequently, the existing body of research, comprised mainly of studies that show experimental control, may artificially inflate efficacy of interventions. We discuss how experimental control evolved as the standard for high-quality SCRD; why, in the era of evidence-based practice, rigorous studies that fail to fully demonstrate experimental control are important to include in the body of published intervention research; the role of non-replication studies in discovering intervention boundaries; and considerations for researchers who wish to conduct and appraise studies that fail to yield full experimental control.
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L Tate, Robyn, Skye Mcdonald, Michael Perdices, Leanne Togher, Regina Schultz et Sharon Savage. « Rating the methodological quality of single-subject designs andn-of-1 trials : Introducing the Single-Case Experimental Design (SCED) Scale ». Neuropsychological Rehabilitation 18, no 4 (août 2008) : 385–401. http://dx.doi.org/10.1080/09602010802009201.

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