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Drosophila view on glia in peripheral sensory neuropathy
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作者 Steffen Kautzmann Christian Klämbt 《Neural Regeneration Research》 2026年第6期2353-2354,共2页
Peripheral sensory neurons perceive external signals and convey signals to the central nervous system(CNS).Information transmission occurs via often extremely long axons and timely reactions of the animal require a fa... Peripheral sensory neurons perceive external signals and convey signals to the central nervous system(CNS).Information transmission occurs via often extremely long axons and timely reactions of the animal require a fast conductance velocity.This not only depends on axonal diameter and insulation by glial processes,but it requires the structural integrity of the axon. 展开更多
关键词 peripheral sensory neurons central nervous system cns information DROSOPHILA peripheral sensory neuropathy glial processesbut conductance velocitythis structural integrity GLIA
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The dorsal root ganglion T-junction:a critical node in somatosensory processing and pain pathogenesis 被引量:1
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作者 ZHANG Zhi-He FU Yun-Jie WANG Yun 《生理学报》 北大核心 2026年第1期5-15,共11页
Pseudounipolar neurons in the dorsal root ganglia(DRG),as the central nodes of primary sensory afferents,possess a distinctive T-junction that is not merely a morphological peculiarity but also performs complex roles ... Pseudounipolar neurons in the dorsal root ganglia(DRG),as the central nodes of primary sensory afferents,possess a distinctive T-junction that is not merely a morphological peculiarity but also performs complex roles in rapid,multiplexed shunting and regulation of sensory signals.This specialized geometry enables separation,filtering,and feedback regulation of neuronal signals,thereby coordinating peripheral and central responses at multiple levels.Recent advances,including spatial transcriptomics,single-cell sequencing,super-resolution microscopy,organoid models,and novel electrophysiological methods,have permitted more precise dissection of the T-junction's molecular composition,ion-channel distribution,and electrophysiological properties.Here,we review current knowledge of the T-junction's developmental regulation and multilayered molecular networks,and we detail its functional alterations in both physiological signaling and pathological pain states,with particular emphasis on ion-channel modulation,signal attenuation,and selective transmission mechanisms.Finally,we discuss contemporary pain-intervention approaches and prospects for precision-targeted therapies,aiming to provide a theoretical foundation for future studies in pain physiology and clinical translation. 展开更多
关键词 dorsal root ganglia pseudounipolar neuron T-JUNCTION sensory signaling PAIN
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Tracing motor neurons and primary sensory afferents of the monkey spinal cord with cholera toxin subunit B
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作者 Ziyu He Zhixian Liu +4 位作者 Wenjie Xu Ruoying Zhang Shu Fan Wei Wang Xiaolong Zheng 《Neural Regeneration Research》 2026年第5期2040-2049,共10页
Nonhuman primates are increasingly being used as animal models in neuroscience research.However,efficient neuronal tracing techniques for labeling motor neurons and primary sensory afferents in the monkey spinal cord ... Nonhuman primates are increasingly being used as animal models in neuroscience research.However,efficient neuronal tracing techniques for labeling motor neurons and primary sensory afferents in the monkey spinal cord are lacking.Here,by injecting the cholera toxin B subunit into the sciatic nerve of a rhesus monkey,we successfully labeled the motor neurons and primary sensory afferents in the lumbar and sacralspinal cord.Labeled alpha motor neurons were located in lamina IX of the L6–S1 segments,which innervate both flexors and extensors.The labeled primary sensory afferents were mainly myelinated Aβfibers that terminated mostly in laminae I and II of the L4–L7 segments.Together with the labeled proprioceptive afferents,the primary sensory afferents formed excitatory synapses with multiple types of spinal neurons.In summary,our methods successfully traced neuronal connections in the monkey spinal cord and can be used in spinal cord studies when nonhuman primates are used. 展开更多
关键词 cholera toxin subunit B INTERNEURON Macaca Mulatta MONKEY motor neuron neuron tracing primary sensory afferents rhesus macaque sciatic nerve spinal cord
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Research on the Rehabilitation Treatment Effect of Sensory Integration Training Combined with Cognitive Training in Children with Mental Retardation
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作者 Chunhui Song Ying Tian 《Journal of Clinical and Nursing Research》 2026年第1期123-130,共8页
Objective:To analyze the clinical effect of sensory integration training combined with cognitive training in the rehabilitation treatment of children with mental retardation.Methods:A total of 120 children with mental... Objective:To analyze the clinical effect of sensory integration training combined with cognitive training in the rehabilitation treatment of children with mental retardation.Methods:A total of 120 children with mental retardation who received rehabilitation intervention in our hospital from January 2022 to December 2025 were selected and divided into a control group and an experimental group,with 60 children in each group.The control group adopted a conventional rehabilitation training program;the experimental group adopted a combined sensory integration training and cognitive training program.The sensory integration ability,cognitive function,and daily living skills of children in the two groups were compared.Results:The sensory integration ability score of the experimental group(85.3±6.2)was significantly higher than that of the control group(72.1±7.5)(p<0.05);the cognitive function score(88.7±5.8)was significantly improved compared with that of the control group(76.4±6.9)(p<0.05);the daily living skills score(90.2±4.7)was significantly higher than that of the control group(80.5±5.3)(p<0.05).The social interaction ability of the experimental group reached 92.5%,which was significantly higher than that of the control group(81.3%)(p<0.05).Conclusion:Sensory integration training combined with cognitive training demonstrates favorable outcomes in the rehabilitation treatment of children with mental retardation,exhibiting a notable neurofunctional remodeling effect.It can optimize the multidimensional rehabilitation process,effectively enhance the comprehensive developmental potential of children,and hold significant clinical application value. 展开更多
关键词 sensory integration training Cognitive training Mental retardation
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Advanced approaches to decoupled sensory signal monitoring in human interface systems
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作者 Se Gi Lee Ki Jun Yu +1 位作者 Sang Min Won Jae-Young Yoo 《International Journal of Extreme Manufacturing》 2025年第4期56-76,共21页
Real-time sensory signal monitoring systems are crucial for continuous health tracking and enhancing human-interface technologies in virtual reality/augmented reality applications.Recent advancements in micro/nanofabr... Real-time sensory signal monitoring systems are crucial for continuous health tracking and enhancing human-interface technologies in virtual reality/augmented reality applications.Recent advancements in micro/nanofabrication technologies have enabled wearable and implantable sensors to achieve sufficient sensitivity for measuring subtle sensory signals,while integration with wireless communication technologies allows for real-time monitoring and closed-loop user feedback.However,highly sensitive sensing materials face challenges,as their detection results can easily be altered by external factors such as bending,temperature,and humidity.This review discusses methods for decoupling various stimuli and their applications in human interfaces.We cover the latest advancements in decoupled systems,including the design of sensing materials using micro/nanostructured materials,3-dimensional(3D)sensory system architectures,and Artificial intelligence(AI)-based signal decoupling processing techniques.Additionally,we highlight key applications in robotics,wearable,and implantable health monitoring made possible by these decoupled systems.Finally,we suggest future research directions to address the remaining challenges of developing decoupled artificial sensory systems that are resilient to external stimuli. 展开更多
关键词 decoupled sensory systems micro/nanostructured material 3D sensory system architectures AI-based signal decoupling
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Polyethylene glycol fusion repair of severed rat sciatic nerves reestablishes axonal continuity and reorganizes sensory terminal fields in the spinal cord 被引量:1
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作者 Emily A.Hibbard Liwen Zhou +5 位作者 Cathy Z.Yang Karthik Venkudusamy Yessenia Montoya Alexa Olivarez George D.Bittner Dale R.Sengelaub 《Neural Regeneration Research》 SCIE CAS 2025年第7期2095-2107,共13页
Peripheral nerve injuries result in the rapid degeneration of distal nerve segments and immediate loss of motor and sensory functions;behavioral recovery is typically poor.We used a plasmalemmal fusogen,polyethylene g... Peripheral nerve injuries result in the rapid degeneration of distal nerve segments and immediate loss of motor and sensory functions;behavioral recovery is typically poor.We used a plasmalemmal fusogen,polyethylene glycol(PEG),to immediately fuse closely apposed open ends of severed proximal and distal axons in rat sciatic nerves.We have previously reported that sciatic nerve axons repaired by PEG-fusion do not undergo Wallerian degeneration,and PEG-fused animals exhibit rapid(within 2–6 weeks)and extensive locomotor recovery.Furthermore,our previous report showed that PEG-fusion of severed sciatic motor axons was non-specific,i.e.,spinal motoneurons in PEG-fused animals were found to project to appropriate as well as inappropriate target muscles.In this study,we examined the consequences of PEG-fusion for sensory axons of the sciatic nerve.Young adult male and female rats(Sprague–Dawley)received either a unilateral single cut or ablation injury to the sciatic nerve and subsequent repair with or without(Negative Control)the application of PEG.Compound action potentials recorded immediately after PEG-fusion repair confirmed conduction across the injury site.The success of PEG-fusion was confirmed through Sciatic Functional Index testing with PEG-fused animals showing improvement in locomotor function beginning at 35 days postoperatively.At 2–42 days postoperatively,we anterogradely labeled sensory afferents from the dorsal aspect of the hindpaw following bilateral intradermal injection of wheat germ agglutinin conjugated horseradish peroxidase.PEG-fusion repair reestablished axonal continuity.Compared to unoperated animals,labeled sensory afferents ipsilateral to the injury in PEG-fused animals were found in the appropriate area of the dorsal horn,as well as inappropriate mediolateral and rostrocaudal areas.Unexpectedly,despite having intact peripheral nerves,similar reorganizations of labeled sensory afferents were also observed contralateral to the injury and repair.This central reorganization may contribute to the improved behavioral recovery seen after PEG-fusion repair,supporting the use of this novel repair methodology over currently available treatments. 展开更多
关键词 AXOTOMY dorsal horn peripheral nerve injury PLASTICITY polyethylene glycol(PEG) sciatic nerve sensory terminals wheat germ agglutinin horseradish peroxidase
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Therapeutic components of acupuncture stimulation based on characteristics of sensory nerve and nervous signaling pathway 被引量:1
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作者 Hyo-Sun Wie Seung-Nam Kim 《Journal of Integrative Medicine》 2025年第2期106-112,共7页
Acupuncture,a therapeutic practice rooted in traditional Chinese medicine and integrated with modern neuroscience,achieves its effects by stimulating sensory nerves at specific anatomical points known as acupoints.Thi... Acupuncture,a therapeutic practice rooted in traditional Chinese medicine and integrated with modern neuroscience,achieves its effects by stimulating sensory nerves at specific anatomical points known as acupoints.This review systematically explores the therapeutic components of acupuncture,emphasizing the interplay between sensory nerve characteristics and neural signaling pathways.Key factors such as acupoint location,needling depth,stimulation intensity,retention time,and the induction of sensations(e.g.,Deqi)are analyzed for their roles in neural activation and clinical outcomes.The review highlights how variations in spinal segment targeting,tissue-specific receptor activation,and stimulation modalities(e.g.,manual acupuncture,electroacupuncture,moxibustion)influence therapeutic effects.Emerging evidence underscores the significance of ion channels,dermatomes,myotomes,and genespecific pathways in mediating systemic effects.Additionally,the differential roles of mechanical,thermal and nociceptive stimuli and the temporal dynamics of sensory and immune responses are addressed.While insights from animal models have advanced our understanding,their translation to clinical practice requires further investigation.This comprehensive review identifies critical parameters for optimizing acupuncture therapy,advocating for individualized treatment strategies informed by neuroanatomical and neurophysiological principles,ultimately enhancing its precision and efficacy in modern medicine. 展开更多
关键词 sensory nerve ACUPUNCTURE Nervous system Therapeutic component Acupuncture point MERIDIANS
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Recent Advances in Artificial Sensory Neurons:Biological Fundamentals,Devices,Applications,and Challenges
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作者 Shuai Zhong Lirou Su +4 位作者 Mingkun Xu Desmond Loke Bin Yu Yishu Zhang Rong Zhao 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期168-216,共49页
Spike-based neural networks,which use spikes or action potentialsto represent information,have gained a lot of attention because of their high energyefficiency and low power consumption.To fully leverage its advantage... Spike-based neural networks,which use spikes or action potentialsto represent information,have gained a lot of attention because of their high energyefficiency and low power consumption.To fully leverage its advantages,convertingthe external analog signals to spikes is an essential prerequisite.Conventionalapproaches including analog-to-digital converters or ring oscillators,and sensorssuffer from high power and area costs.Recent efforts are devoted to constructingartificial sensory neurons based on emerging devices inspired by the biologicalsensory system.They can simultaneously perform sensing and spike conversion,overcoming the deficiencies of traditional sensory systems.This review summarizesand benchmarks the recent progress of artificial sensory neurons.It starts with thepresentation of various mechanisms of biological signal transduction,followed bythe systematic introduction of the emerging devices employed for artificial sensoryneurons.Furthermore,the implementations with different perceptual capabilitiesare briefly outlined and the key metrics and potential applications are also provided.Finally,we highlight the challenges and perspectives for the future development of artificial sensory neurons. 展开更多
关键词 Artificial intelligence Emerging devices Artificial sensory neurons Spiking neural networks Neuromorphic sensing
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Polyethylene glycol fusion repair of severed sciatic nerves accelerates recovery of nociceptive sensory perceptions in male and female rats of different strains
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作者 Liwen Zhou Karthik Venkudusamy +9 位作者 Emily A.Hibbard Yessenia Montoya Alexa Olivarez Cathy Z.Yang Adelaide Leung Varun Gokhale Guhan Periyasamy Zeal Pathak Dale R.Sengelaub George D.Bittner 《Neural Regeneration Research》 SCIE CAS 2025年第9期2667-2681,共15页
Successful polyethylene glycol fusion(PEG-fusion)of severed axons following peripheral nerve injuries for PEG-fused axons has been reported to:(1)rapidly restore electrophysiological continuity;(2)prevent distal Walle... Successful polyethylene glycol fusion(PEG-fusion)of severed axons following peripheral nerve injuries for PEG-fused axons has been reported to:(1)rapidly restore electrophysiological continuity;(2)prevent distal Wallerian Degeneration and maintain their myelin sheaths;(3)promote primarily motor,voluntary behavioral recoveries as assessed by the Sciatic Functional Index;and,(4)rapidly produce correct and incorrect connections in many possible combinations that produce rapid and extensive recovery of functional peripheral nervous system/central nervous system connections and reflex(e.g.,toe twitch)or voluntary behaviors.The preceding companion paper describes sensory terminal field reo rganization following PEG-fusion repair of sciatic nerve transections or ablations;howeve r,sensory behavioral recovery has not been explicitly explored following PEG-fusion repair.In the current study,we confirmed the success of PEG-fusion surgeries according to criteria(1-3)above and more extensively investigated whether PEG-fusion enhanced mechanical nociceptive recovery following sciatic transection in male and female outbred Sprague-Dawley and inbred Lewis rats.Mechanical nociceptive responses were assessed by measuring withdrawal thresholds using von Frey filaments on the dorsal and midplantar regions of the hindpaws.Dorsal von Frey filament tests were a more reliable method than plantar von Frey filament tests to assess mechanical nociceptive sensitivity following sciatic nerve transections.Baseline withdrawal thresholds of the sciatic-mediated lateral dorsal region differed significantly across strain but not sex.Withdrawal thresholds did not change significantly from baseline in chronic Unoperated and Sham-operated rats.Following sciatic transection,all rats exhibited severe hyposensitivity to stimuli at the lateral dorsal region of the hindpaw ipsilateral to the injury.However,PEG-fused rats exhibited significantly earlier return to baseline withdrawal thresholds than Negative Control rats.Furthermore,PEG-fused rats with significantly improved Sciatic Functional Index scores at or after 4 weeks postoperatively exhibited yet-earlier von Frey filament recove ry compared with those without Sciatic Functional Index recovery,suggesting a correlation between successful PEG-fusion and both motor-dominant and sensory-dominant behavioral recoveries.This correlation was independent of the sex or strain of the rat.Furthermore,our data showed that the acceleration of von Frey filament sensory recovery to baseline was solely due to the PEG-fused sciatic nerve and not saphenous nerve collateral outgrowths.No chronic hypersensitivity developed in any rat up to 12 weeks.All these data suggest that PEG-fusion repair of transection peripheral nerve injuries co uld have important clinical benefits. 展开更多
关键词 autophagia AXOTOMY collateral sprouting neuropathic pain peripheral nerve repair polyethylene glycol fusion(PEG-fusion) saphenous nerve sensory neurons sex and strain Wallerian degeneration
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Hydrogel fabrication techniques for advanced artificial sensory systems
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作者 Wonhee Gong Jeongyeon Kim +4 位作者 Chaeyoon Kim Hyewon Chang Yejin Ahn David V Schaffer Jieung Baek 《International Journal of Extreme Manufacturing》 2025年第6期28-61,共34页
Artificial sensory systems,designed to emulate human senses like sight,touch,and hearing,have garnered significant attention for their potential to enhance human capabilities,improve human-machine interactions,and ena... Artificial sensory systems,designed to emulate human senses like sight,touch,and hearing,have garnered significant attention for their potential to enhance human capabilities,improve human-machine interactions,and enable autonomous systems to better perceive their surroundings.Hydrogels,with their biocompatibility,flexibility,and water-rich polymer structure,are increasingly recognized as crucial materials in the development of these systems,especially in applications such as wearable sensors,artificial skin,and neural interfaces.This review explores various hydrogel fabrication techniques,including 3D bioprinting,electro spinning,and photopolymerization,which allow for the precise control of hydrogel properties like mechanical strength,flexibility,and conductivity.By tailoring these properties to mimic natural tissues,hydrogels offer transformative benefits in the creation of advanced,biocompatible,and durable sensory systems.We emphasize the importance of selecting appropriate fabrication methods to meet the specific functional requirements of artificial sensory applications,such as sensitivity to stimuli,durability,and ease of integration.This review further highlights the pivotal role of hydrogels in advancing future artificial sensory technologies and their broad potential in fields ranging from robotics to biomedical devices. 展开更多
关键词 HYDROGEL artificial sensory systems PHOTO-CROSSLINKING 3D bioprinting ELECTROSPINNING smart hydrogels
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Sensory Characterizations and Optimization of Cashew Apple Jam Formulations Using Baobab Powder as a Source of Pectin
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作者 Marie Bianoun Louise Dégni Doudjo Soro +3 位作者 Essan Bla Zita N’Goran-Aw Djedjro Clément Akmel Nogbou Emmanuel Assidjo Kouassi Benjamin Yao 《Food and Nutrition Sciences》 2025年第1期120-136,共17页
Cashew processing in Côte d’Ivoire focuses only on the cashew nut, to the detriment of the apple. Only a very small proportion of the apple is processed into juice. The aim of this work is to enhance the value o... Cashew processing in Côte d’Ivoire focuses only on the cashew nut, to the detriment of the apple. Only a very small proportion of the apple is processed into juice. The aim of this work is to enhance the value of cashew apples by transforming them into jam. Specifically, the aim was first to characterize the sensory properties of cashew apple jam formulations using baobab powder as a source of pectin and then to optimise the formulations. A Box-Behken design with pH, Sugar, and Baobab as factors was used to model and characterize the jam sensory descriptors, and a multivariate analysis with SensomineR was used to characterize the jam formulations. The desirability function was used to optimise the formulations. The results show globally significant regressions at the 0.05 threshold for the sensory descriptors Gelling, Brilliance, Smell, Sweetness, and (-)Astringency, with the exception of (-)Salinity. The R2 coefficients are greater than 80%. The factors studied could have effects on the sensory descriptors of cashew jam formulations. The Baobab had the main effect on the gelling, smell, and astringency of the jams. Brilliance depended on the added sugar. A product effect (p < 0.001) was observed for the descriptors Smell, Gelling, Brilliance, and Sweetness, as these allowed the panelists to find differences between the formulations. Optimum jam formulation can be achieved with 51.56% sugar and 2.12% Baobab at a pH of 3.15. Cashew apple jam using Baobab offers opportunities to add value to apples that have long been abandoned in the field. It would be important to find conditions for prolonged storage of this jam. 展开更多
关键词 Cashew Apple sensory Characterization Jam Formulation Area Design Product Effect Overall Desirability
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Assessment, Quality and Sensory Evaluation of Crude Oil of Polygala multiflora Poiret in Burkina Faso
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作者 Rachelle Noumpao Hortense Bougoussaré Marius Kounbesioune Somda +2 位作者 Rasmata Dabo Donatien Kabore Mamoudou Hama Dicko 《Food and Nutrition Sciences》 2025年第2期163-186,共24页
Polygala multiflora Poiret is an oleaginous plant in Burkina Faso, but most of its quality characteristics remain unexplored. This work aimed to evaluate the chemical and sensory quality of Polygala multiflora Poiret ... Polygala multiflora Poiret is an oleaginous plant in Burkina Faso, but most of its quality characteristics remain unexplored. This work aimed to evaluate the chemical and sensory quality of Polygala multiflora Poiret crude oil. Chemical parameters were determined using AOAC standards. The sensory analysis of the samples was carried out using three tests (descriptive and hedonic classification). Principal component analysis (PCA) was used to establish the relationship between the panelists’ evaluation of the attributes and the type of oil extracted. The results showed that P. multiflora seed oil is mainly produced by women using a mechanical extraction process. The chemical analysis of the extracted oil showed a refractive index (1.45 ± 0.02), free fatty acids (1.97% ± 0.2% ac. oleic), acidity index (6.93 ± 0.14 mg KOH/g), saponification index (186.3 ± 9.31 mg KOH/g), iodine index (40.37 ± 0.5 gI2/100 g) and peroxide index (1.58 ± 0.05 Meq O2/kg). The descriptive sensory attributes showed that the crushed seed oil had the highest appreciation percentage value. The hedonic test showed that the highest percentage value of the attribute “like it” was associated with whole seed oil. The results of the Principal Component Analysis (PCA) showed the variability of the sensory quality depending on the type of oil extracted. 展开更多
关键词 P. Multiflora Seeds Oil Chemical Properties sensory Profile Burkina Faso
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Recent progress of neuromorphic sensory and optoelectronic systems
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作者 San Nam Donghyun Kang +3 位作者 Jeong-Wan Jo Dong-Won Kang Sung Kyu Park Yong-Hoon Kim 《International Journal of Extreme Manufacturing》 2025年第4期146-176,共31页
With the rise of artificial intelligence(AI),neuromorphic sensory systems that emulate the five basic human sensations including tactility,audition,olfaction,gustation,and vision have attracted significant attention.I... With the rise of artificial intelligence(AI),neuromorphic sensory systems that emulate the five basic human sensations including tactility,audition,olfaction,gustation,and vision have attracted significant attention.In particular,research on integrating sensors with artificial synapses is being carried out extensively.These studies offer valuable opportunities for making another breakthrough in AI technology,including autonomous systems,real-time monitoring systems,and human-machine interactions.In this review,we introduce promising reports of neuromorphic sensory systems.Specifically,the core sensing material,device architecture,fabrication process,and applications of the proposed systems are presented in detail.Finally,the unsolved challenges and the prospects of neuromorphic sensory systems are discussed. 展开更多
关键词 artificial intelligence neuromorphic sensory system human sensation SENSOR
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Artificial sensory neurons and their applications
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作者 Jiale Shao Hongwei Ying +6 位作者 Peihong Cheng Lingxiang Hu Xianhua Wei Zongxiao Li Huanming Lu Zhizhen Ye Fei Zhuge 《Journal of Semiconductors》 2025年第1期108-128,共21页
With the rapid development of artificial intelligence(AI)technology,the demand for high-performance and energyefficient computing is increasingly growing.The limitations of the traditional von Neumann computing archit... With the rapid development of artificial intelligence(AI)technology,the demand for high-performance and energyefficient computing is increasingly growing.The limitations of the traditional von Neumann computing architecture have prompted researchers to explore neuromorphic computing as a solution.Neuromorphic computing mimics the working principles of the human brain,characterized by high efficiency,low energy consumption,and strong fault tolerance,providing a hardware foundation for the development of new generation AI technology.Artificial neurons and synapses are the two core components of neuromorphic computing systems.Artificial perception is a crucial aspect of neuromorphic computing,where artificial sensory neurons play an irreplaceable role thus becoming a frontier and hot topic of research.This work reviews recent advances in artificial sensory neurons and their applications.First,biological sensory neurons are briefly described.Then,different types of artificial neurons,such as transistor neurons and memristive neurons,are discussed in detail,focusing on their device structures and working mechanisms.Next,the research progress of artificial sensory neurons and their applications in artificial perception systems is systematically elaborated,covering various sensory types,including vision,touch,hearing,taste,and smell.Finally,challenges faced by artificial sensory neurons at both device and system levels are summarized. 展开更多
关键词 artificial sensory neurons artificial perception systems neuromorphic computing artificial intelligence
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Prevalence,risk factors and clinical features of sensory A-V pattern exotropia
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作者 Bin-Bin Zhu Shi-Yu Tang +2 位作者 Xiang-Jun Wang Li-Cheng Fu Jian-Hua Yan 《International Journal of Ophthalmology(English edition)》 2025年第2期323-329,共7页
AIM:To investigate the potential mechanisms of A-V pattern and evaluate the surgical outcomes used in the treatment of sensory exotropia.METHODS:The medical records of patients with sensory A-V pattern exotropia who u... AIM:To investigate the potential mechanisms of A-V pattern and evaluate the surgical outcomes used in the treatment of sensory exotropia.METHODS:The medical records of patients with sensory A-V pattern exotropia who underwent strabismus surgery between May 2014 to June 2019 was retrospectively reviewed.The control group included sensory exotropia patients without A-V pattern and concomitant A-V pattern exotropia patients with normal vision who undergone strabismus surgery over this same time period.Ocular alignment,best corrected visual acuity,oblique muscle function,and stereopsis records were collected.RESULTS:Among the 843 eligible patients,91(10.79%;39 males and 52 females)had A-pattern(54,6.4%)or V-pattern(37,4.4%).Age at onset of vision impairment was 4±5y and at the time of surgery was 25±9y.Statistically significant negative correlations were present between impaired visual acuity and the pre-operative exodeviation(r=-0.198,P=0.016)and patterns(r=-0.207,P=0.015).Age at surgery and exodeviation in patients with concomitant A-V pattern exotropia was significantly earlier as compared with that of sensory A-V pattern exotropia and sensory exotropia(both P<0.0001).There were no significant differences in these clinical variables between sensory exotropia with or without A-V pattern.Deviation and pattern were significantly reduced in patients receiving horizontal rectus surgery with or without oblique muscle surgery(both P<0.0001).CONCLUSION:The prevalence of sensory A-V pattern exotropia in our study is 10.79%.Visual acuity represents an important factor contributing to the occurrence and development of A-V pattern.Isolated horizontal rectus surgery can provide a good option for the correction of sensory A-V pattern exotropia. 展开更多
关键词 sensory exotropia A-V pattern oblique muscle dysfunction horizontal rectus surgery
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Sensory outcome of exotropia surgery in Thailand:a retrospective multicenter study
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作者 Narisa Rattanalert Supaporn Tengtrisorn +36 位作者 Supawan Surukrattanaskul Phanthipha Wongwai Nutsuchar Wangtiraumnuay Wadakarn Wuthisiri Suntaree Thitiwichienlert Warassabhorn Ployprasith Rattiya Pornchaisuree Piangporn Saksiriwutto Penny Singha Warakorn Thiamthat Parnchat Pukrushpan Sirinya Suwannaraj Yutthaphong Imsuwan Arpha Pornseth Atchareeya Wiwatwongwana Oracha Teerakapong Juthathip Hiriotappa Apatsa Lekskul Variya Nganthavee Poonyawee Nunthanid Worawalun Honglertnapakul Worapot Srimanan Prangkhwan Jiaranaisilawong Prapatsorn Patikulsila Phantaraporn Tangtammaruk Dussadee Tatritorn Thunyaluck Jiwanarom Jipada Pruksacholavit Puncharut Preechaharn La-ongsri Atchaneeyasakul Phawasutthi Keokajee Thammanoon Surachatkumtonekul Pittaya Phamonvaechavan Sorot Wutthiphan Orapan Aryasit Parichat Damthongsuk Alan Frederick Geater 《International Journal of Ophthalmology(English edition)》 2025年第2期330-339,共10页
AIM:To evaluate the characteristics of exotropia(XT)and motor-sensory outcomes after surgical correction and to determine the factors associated with sensory outcomes of XT surgery.METHODS:The medical records of all p... AIM:To evaluate the characteristics of exotropia(XT)and motor-sensory outcomes after surgical correction and to determine the factors associated with sensory outcomes of XT surgery.METHODS:The medical records of all patients that were diagnosed with XT and underwent strabismus surgery in 13 major government hospitals in Thailand;from January 2012 to December 2019,were retrospectively reviewed.Univariable and multivariable logistic regression were performed to identify factors related to binocular vision.RESULTS:Data of five hundred and thirty-seven patients were analyzed.Two hundred and twenty-six patients were men(42.1%).The median age of onset was 3 years old[Interquartile range(IQR):1,8].The median age at diagnosis was 9.21 years old(IQR;4.64,21.06).intermittent exotropia[X(T)]was the most common type(52.1%);19.5%of the patients had amblyopia.For refractive error,spherical equivalent refraction on right eye(RE)and left eye(LE)were-0.53±2.45 diopters(D)(range-14.88 to+10 D)and-0.48±2.37 D(range-19.50 to+7.75 D),respectively.The mean angle of deviation at distance and near before surgery were 42.06±14.91 prism diopters(PD)and 40.81±16.09 PD,respectively.Follow-up time after first operation was 2.48±2.27y.Four hundred sixtytwo patients(86%)needed only one operation and 299(55.6%)patients had bilateral lateral rectus recession.At final visit,the mean angles of deviation at distance and near decreased to 5.76±8.96 PD and 5.01±8.73 PD,respectively.After surgery,two hundred seventy-three patients(50.8%)were evaluated for binocular function,but the others did not have result.From multivariable logistic regression in 273 patients,the factors related to better binocular function were type of XT which was X(T)[adjusted odds ratio(aOR)10.35;95%CI:4.73,22.66]compared to constant XT,without amblyopia(aOR 3.97;95%CI:1.84,8.53),underwent only single operation compared with more than 1 operation(aOR 3.80,95%CI:1.58,9.16),the angle of deviation at near in last visit less than 10 PD better than 10–30 PD with aOR 0.42(95%CI:0.18,0.96)and type of refraction revealed isometropia better than anisometropia with aOR 4.13(95%CI:1.19,14.32).CONCLUSION:The surgical outcomes of XT within one operation in Thailand is 86%.The factors related to achieve binocular function includes type of XT as X(T),without amblyopia,angle of deviation at final visit less than 10 PD,isometropia type of refraction and underwent only one surgical correction. 展开更多
关键词 EXOTROPIA intermittent exotropia sensory outcome
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Research progress in transient receptor potential vanilloid 1 of sensory nervous system 被引量:8
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作者 刘大路 王文挺 +1 位作者 邢俊玲 胡三觉 《Neuroscience Bulletin》 SCIE CAS CSCD 2009年第4期221-227,共7页
The transient receptor potential vanilloid subfamily member 1 (TRPV 1) is a protein mainly expressed in sensory neurons and fibers, such as in trigeminal ganglion and dorsal root ganglion, and has been indicated to ... The transient receptor potential vanilloid subfamily member 1 (TRPV 1) is a protein mainly expressed in sensory neurons and fibers, such as in trigeminal ganglion and dorsal root ganglion, and has been indicated to be involved in several physiological and pathological processes. Studies on thermal activation have revealed that phosphorylation is involved in TRPV1 activation and 2 putative phosphorylation sites, Ser residues 502 (Ser-502) and Set residues 800 (Ser-800), have been recently confirmed to possess the capability of resensitizing TRPV 1. In addition to acidification, alkalization has also been proved to be a highly effective stimulator for TRPVI. TRPV1 could be regulated by various physical and chemical modulators, as well as the chronic pain. TRPV 1 plays a crucial role in the transmission of pain signals, especially under inflammation and the neoplasm conditions, and it can also modulate nociceptive afferents by reinforcing morphine tolerance. The present review mainly focused on the structural and functional complexities of TRPV1, together with its activation and modulation by a wide variety of physical and chemical stimuli. Its pharmacological manipulation (sensitization/desensitization) and therapeutical targets were also discussed. 展开更多
关键词 TRPV1 sensory nervous system PAIN THERMAL PHOSPHORYLATION ALKALIZATION
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Modulation of the assay system for the sensory integration of 2 sensory stimuli that inhibit each other in nematode Caenorhabditis elegans 被引量:1
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作者 李隐侠 汪洋 +2 位作者 胡亚欧 仲纪祥 王大勇 《Neuroscience Bulletin》 SCIE CAS CSCD 2011年第2期69-82,共14页
Objective To perform the modulation of an assay system for the sensory integration of 2 sensory stimuli that inhibit each other.Methods The assay system for assessing the integrative response to 2 reciprocally-inhibit... Objective To perform the modulation of an assay system for the sensory integration of 2 sensory stimuli that inhibit each other.Methods The assay system for assessing the integrative response to 2 reciprocally-inhibitory sensory stimuli was modulated by changing the metal ion barrier.Moreover,the hen-1,ttx-3 and casy-1 mutants having known defects in integrative response were used to evaluate the modulated assay systems.Based on the examined assay systems,new genes possibly involved in the sensory integration control were identified.Results In the presence of different metal ion barriers and diacetyl,locomotion behaviors,basic movements,pan-neuronal,cholinergic and GABAergic neuronal GFP expressions,neuronal development,structures of sensory neurons and interneurons,and stress response of nematodes in different regions of examined assay systems were normal,and chemotaxis toward different concentrations of diacetyl and avoidance of different concentrations of metal ions were inhibited.In the first group,most of the nematodes moved to diacetyl by crossing the barrier of Fe2+,Zn2+,or Mn2+.In the second group,almost half of the nematodes moved to diacetyl by crossing the barrier of Ag+,Cu2+,Cr2+,or Cd2+.In the third group,only a small number of nematodes moved to diacetyl by crossing the barrier of Pb2+ or Hg2+.Moreover,when nematodes encountered different metal ion barriers during migration toward diacetyl,the percentage of nematodes moving back and then turning and that of nematodes moving straight to diacetyl were very different.With the aid of examined assay systems,it was found that mutations of fsn-1 that encodes a F-box protein,and its target scd-2 that encodes a receptor tyrosine kinase,caused severe defects in integrative response,and the sensory integration defects of fsn-1 mutants were obviously inhibited by scd-2 mutation.Conclusion Based on the nematode behaviors in examined assay systems,3 groups of assay systems were obtained.The first group may be helpful in evaluating or identifying the very subtle deficits in sensory integration,and the third group may be useful for the final confirmation of sensory integration defects of mutants identified in the first or the second group of assay systems.Furthermore,the important association of sensory integration regulation with stabilization or destabilization of synaptic differentiation may exist in C.elegans. 展开更多
关键词 sensory integration paired stimuli assay system metal ion barrier C.elegans
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Evaluation of Chinese Cabbage Sensory Quality and Its Relationship with Contents of Main Nutrient Components 被引量:1
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作者 龚振平 于拴仓 +5 位作者 张凤兰 余阳俊 赵岫云 张德双 汪维红 苏同兵 《Agricultural Science & Technology》 CAS 2016年第7期1592-1596,共5页
In order to establish a comprehensive evaluation system for quality of Chinese cabbage, 28 Chinese cabbage cultivars or inbreeds were selected as ex- perimental materials to identify the raw and cooked taste and deter... In order to establish a comprehensive evaluation system for quality of Chinese cabbage, 28 Chinese cabbage cultivars or inbreeds were selected as ex- perimental materials to identify the raw and cooked taste and determine the nutrient component contents, and the subjective factors (taste) and objective factors (nutrient component contents) influencing the sensory quality of Chinese cabbage were ana- lyzed by multiple regression and path analysis. The results showed that two regres- sion equations were obtained: yr (raw quality)=0.310 3+0.254 0xl (juiciness)+0.176 2 x2 (sweetness)+0.221 6x3 (crispness)+0.319 9x4 (flavor); Yc (cooked quality)=0.204 4+ 0.250 9 xs (residue)+0.246 9x6 (cooked sweetness)+0.182 5x7 (softness)+0.323 lx8 (cooked flavor). The path analysis results showed that among the sensory indices, the total coefficients of sweetness and juiciness were 0.445 3 and 0.427 6, respec- tively. It indicated they were the main factors affecting the raw quality of Chinese cab- bage, followed by flavor and crispness. Sweetness, with total coefficient of 0.515 2, showed the greatest effect on the cooked quality of Chinese cabbage, followed by residue, cooked flavor and softness. The effects of nutrient component contents on the sensory quality of Chinese cabbage were further analyzed, and the regression equa- tions were obtained: y, =-32.192 0+0.389 3xw (moisture content)+1.169 8x~ (soluble sugar content); Yc = 7.497 1+0.732 6xs - 5.668 8x, (organic acid content)-2.176 3x~ (crude fiber content). The standardized regression coefficients of soluble sugar con- tent were all highest with the value of 0.580 7 in the raw quality regression equa- tion and 0.325 0 in the cooked quality one, indicating that among the six nutrient components, the soluble sugar content was the main factor affecting both raw and cooked quality of Chinese cabbage. This study will provide certain basis for quality evaluation, selection and breeding of high-quality Chinese cabbage. 展开更多
关键词 Chinese cabbage sensory quality Nutritional component Path analysis Regression analysis
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Correlation between Texture and Sensory Evaluation of Labadou 被引量:1
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作者 李清明 蔡霞 +1 位作者 蒋立文 陶湘林 《Agricultural Science & Technology》 CAS 2014年第1期159-161,165,共4页
[Objective] The aim was to measure hardness and chewiness of Labadou with a texture analyzer and explore correlation of hardness and chewiness with quality by sensory evaluation. [Method] Labadou underwent compression... [Objective] The aim was to measure hardness and chewiness of Labadou with a texture analyzer and explore correlation of hardness and chewiness with quality by sensory evaluation. [Method] Labadou underwent compression, puncture, shearing and batch compression with four probes (P/100, P/2, A/LKB-F and A/BE) and sensory evaluation was made on Labadou as per Nine Point Calibration Method. Specifical y, chewiness measured by batch compression was taken as an independent variable and hardness as a dependent variable to get a prediction model of Labadou hardness by model fitting. [Result] The ideal parameters of Labadou included probe at A/BE, test speed at 1.0 mm/s, and strain at 70%. The chewiness was of extremely significant correlation with hardness (r=0.92, P〈0.01). [Conclusions] The detecting method could detect distinct texture of different Labadou accurately and expediently. 展开更多
关键词 Labaclou TEXTURE CORRELATION sensory evaluation
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