robotic devices
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Author(s):  
Yuan Liu ◽  
Zhuang Wang ◽  
Shuaifei Huang ◽  
Wenjie Wang ◽  
Dong Ming

Abstract Objective. Supernumerary Robotic Limbs (SRL) are body augmentation robotic devices by adding extra limbs or fingers to the human body different from the traditional wearable robotic devices such as prosthesis and exoskeleton. We proposed a novel MI (Motor imagery)-based BCI paradigm based on the sixth-finger which imagines controlling the extra finger movements. The goal of this work is to investigate the EEG characteristics and the application potential of MI-based BCI systems based on the new imagination paradigm (the sixth finger MI). Approach. 14 subjects participated in the experiment involving the sixth finger MI tasks and rest state. Event-related spectral perturbation (ERSP) was adopted to analyse EEG spatial features and key-channel time-frequency features. Common spatial patterns (CSP) were used for feature extraction and classification was implemented by support vector machine (SVM). A genetic algorithm (GA) was used to select combinations of EEG channels that maximized classification accuracy and verified EEG patterns based on the sixth finger MI. And we conducted a longitudinal 4-week EEG control experiment based on the new paradigm. Main results. ERD (event-related desynchronization) was found in the supplementary motor area (SMA) and primary motor area (M1) with a faint contralateral dominance. Unlike traditional MI based on the human hand, ERD was also found in frontal lobe. GA results showed that the distribution of the optimal 8-channel is similar to EEG topographical distributions, nearing parietal and frontal lobe. And the classification accuracy based on the optimal 8-channel (the highest accuracy of 80% and mean accuracy of 70%) was significantly better than that based on the random 8-channel (p<0.01). Significance. This work provided a new paradigm for MI-based MI system and verified its feasibility, widened the control bandwidth of the BCI system.


2022 ◽  
Vol 11 (1) ◽  
pp. 414-422
Author(s):  
Nan Yang ◽  
Yong Deng ◽  
Jinlun Huang ◽  
Xiaodong Niu

Abstract Materials with desired thermal deformation are very important for various engineering applications. Here, a material with the combination of chiral structure and TiNi shape memory alloy (SMA) sheets that performs a twist during heating is proposed. The thermo-mechanical properties of these materials are experimentally investigated. Inspired by this, a car-like material performing translational and rotational motion is designed, which illustrates the potential applications for the next-generation soft robotic devices. Based on this method, one can design remotely manipulated artificial muscles, nanorobots, revolute pairs, and thermal sensors or actuators in a noncontact fashion.


Author(s):  
Vanesa Abuín-Porras ◽  
Clara Martinez-Perez ◽  
Carlos Romero-Morales ◽  
Roberto Cano-de-la-Cuerda ◽  
Patricia Martín-Casas ◽  
...  

New technologies in neurorehabilitation is a wide concept that intends to find solutions for individual and collective needs through technical systems. Analysis through citation networks is used to search scientific literature related to a specific topic. On the one hand, the main countries, institutions, and authors researching this topic have been identified, as well as their evolution over time. On the other hand, the links between the authors, the countries, and the topics under research have been analyzed. The publications analysis was performed through the Web of Science database using the search terms “new technolog*,” “neurorehabilitation,” “physical therapy*,” and “occupational therapy*.” The selected interval of publication was from 1992 to December 2020. The results were analyzed using CitNetExplorer software. After a Web of Science search, a total of 454 publications and 135 citation networks were found, 1992 being the first year of publication. An exponential increase was detected from the year 2009. The largest number was detected in 2020. The main areas are rehabilitation and neurosciences and neurology. The most cited article was from Perry et al. in 2007, with a citation index of 460. The analysis of the top 20 most cited articles shows that most approach the use of robotic devices and brain–computer interface systems. In conclusion, the main theme was found to be the use of robotic devices to address neuromuscular rehabilitation goals and brain–computer interfaces and their applications in neurorehabilitation.


2021 ◽  
Vol 11 (24) ◽  
pp. 12061
Author(s):  
Nicola Valè ◽  
Marialuisa Gandolfi ◽  
Laura Vignoli ◽  
Anita Botticelli ◽  
Federico Posteraro ◽  
...  

In the last two decades, a growing interest has been focused on gait and balance robot-assisted rehabilitation in children with neurological disabilities. Robotic devices allow the implementation of intensive, task-specific training fostering functional recovery and neuroplasticity phenomena. However, limited attention has been paid to the protocols used in this research framework. This systematic review aims to provide an overview of the existing literature on robotic systems for the rehabilitation of gait and balance in children with neurological disabilities and their rehabilitation applications. The literature search was carried out independently and synchronously by three authors on the following databases: MEDLINE, Cochrane Library, PeDro, Institute of Electrical and Electronics Engineers, ScienceDirect, and Google Scholar. The data collected included three subsections referring to clinical, technical, and regulatory aspects. Thirty-one articles out of 81 found on the primary literature search were included in the systematic review. Most studies involved children with cerebral palsy. Only one-third of the studies were randomized controlled trials. Overall, 17 devices (nine end-effector systems and eight exoskeletons) were investigated, among which only 4 (24%) were bore the CE mark. Studies differ on rehabilitation protocols duration, intensity, and outcome measures. Future research should improve both rehabilitation protocols’ and devices’ descriptions.


2021 ◽  
Vol 15 (4) ◽  
pp. 6-10
Author(s):  
Ya. P. Lobachevskiy ◽  
A. S. Dorokhov

The agricultural industry in the Russian Federation is dynamically developing; the agricultural export amounts to $ 25 billion. In other countries, in turn, this figure is much higher, for example, in China it has exceeded $ 75 billion. The existing potential can be realized if the efficiency of agricultural production is increased by creating and implementing automation, robotization, digital technologies, and artificial intelligence. As a result it may lead to a 2.5-3.5-fold increase in labor productivity; a 2-3-fold increase in the yield of crops; a 3-4-fold cut in energy consumption and material costs, ensuring the ecological safety of agricultural production and the environment. The authors developed the concept of intelligent agriculture and identified the following areas of digital technology applications: integrated production management; digital technologies in crop production, animal husbandry, energy supply, products storage and processing ; digital engineering for rural areas. The authors presented the stages of agricultural production digitalization, including: a system for monitoring the conditions and parameters of agricultural production; information transmission system; artificial intelligence and cloud technologies, setting the foundation for management decision-making; the implementation of management decisions by robotic devices. The authors presented the examples of using digital technologies in soil cultivation, horticulture, animal husbandry, and artificial ecosystems. In animal husbandry, these technologies prove to facilitate the monitoring of the animals movement, their physiological state, parameters of the microclimate on the premises, feed and milk quality control. The Federal Scientific Agroengineering Center VIM is reported to have the necessary educational infrastructure, accredited Master’s and postgraduate studies for training specialists in digital agriculture.


Author(s):  
Despina Laparidou ◽  
Ffion Curtis ◽  
Joseph Akanuwe ◽  
Khaled Goher ◽  
A. Niroshan Siriwardena ◽  
...  

Abstract Background In recent years, robotic rehabilitation devices have often been used for motor training. However, to date, no systematic reviews of qualitative studies exploring the end-user experiences of robotic devices in motor rehabilitation have been published. The aim of this study was to review end-users’ (patients, carers and healthcare professionals) experiences with robotic devices in motor rehabilitation, by conducting a systematic review and thematic meta-synthesis of qualitative studies concerning the users’ experiences with such robotic devices. Methods Qualitative studies and mixed-methods studies with a qualitative element were eligible for inclusion. Nine electronic databases were searched from inception to August 2020, supplemented with internet searches and forward and backward citation tracking from the included studies and review articles. Data were synthesised thematically following the Thomas and Harden approach. The CASP Qualitative Checklist was used to assess the quality of the included studies of this review. Results The search strategy identified a total of 13,556 citations and after removing duplicates and excluding citations based on title and abstract, and full text screening, 30 studies were included. All studies were considered of acceptable quality. We developed six analytical themes: logistic barriers; technological challenges; appeal and engagement; supportive interactions and relationships; benefits for physical, psychological, and social function(ing); and expanding and sustaining therapeutic options. Conclusions Despite experiencing technological and logistic challenges, participants found robotic devices acceptable, useful and beneficial (physically, psychologically, and socially), as well as fun and interesting. Having supportive relationships with significant others and positive therapeutic relationships with healthcare staff were considered the foundation for successful rehabilitation and recovery.


Author(s):  
Deyby Huamanchahua ◽  
Claudia Castaneda-Vasquez ◽  
Alexandra Vasquez-Espinoza ◽  
Alejandro Munoz-Zevallos
Keyword(s):  

2021 ◽  
pp. 2100140
Author(s):  
Min Pan ◽  
Chenggang Yuan ◽  
Xianrong Liang ◽  
Tianyun Dong ◽  
Tao Liu ◽  
...  

Author(s):  
Marialuisa GANDOLFI ◽  
Nicola VALÈ ◽  
Federico POSTERARO ◽  
Giovanni MORONE ◽  
Antonella DELL’ORCO ◽  
...  

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