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Constitutive modeling of compression behavior of TC4 tube based on modified Arrhenius and artificial neural network models 被引量:5
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作者 Zhi-Jun Tao He Yang +2 位作者 Heng Li Jun Ma Peng-Fei Gao 《Rare Metals》 SCIE EI CAS CSCD 2016年第2期162-171,共10页
Warm rotary draw bending provides a feasible method to form the large-diameter thin-walled(LDTW)TC4 bent tubes, which are widely used in the pneumatic system of aircrafts. An accurate prediction of flow behavior of ... Warm rotary draw bending provides a feasible method to form the large-diameter thin-walled(LDTW)TC4 bent tubes, which are widely used in the pneumatic system of aircrafts. An accurate prediction of flow behavior of TC4 tubes considering the couple effects of temperature,strain rate and strain is critical for understanding the deformation behavior of metals and optimizing the processing parameters in warm rotary draw bending of TC4 tubes. In this study, isothermal compression tests of TC4 tube alloy were performed from 573 to 873 K with an interval of 100 K and strain rates of 0.001, 0.010 and0.100 s^(-1). The prediction of flow behavior was done using two constitutive models, namely modified Arrhenius model and artificial neural network(ANN) model. The predictions of these constitutive models were compared using statistical measures like correlation coefficient(R), average absolute relative error(AARE) and its variation with the deformation parameters(temperature, strain rate and strain). Analysis of statistical measures reveals that the two models show high predicted accuracy in terms of R and AARE. Comparatively speaking, the ANN model presents higher predicted accuracy than the modified Arrhenius model. In addition, the predicted accuracy of ANN model presents high stability at the whole deformation parameter ranges, whereas the predictability of the modified Arrhenius model has some fluctuation at different deformation conditions. It presents higher predicted accuracy at temperatures of 573-773 K, strain rates of 0.010-0.100 s^(-1)and strain of 0.04-0.32, while low accuracy at temperature of 873 K, strain rates of 0.001 s^(-1)and strain of 0.36-0.48.Thus, the application of modified Arrhenius model is limited by its relatively low predicted accuracy at some deformation conditions, while the ANN model presents very high predicted accuracy at all deformation conditions,which can be used to study the compression behavior of TC4 tube at the temperature range of 573-873 K and the strain rate of 0.001-0.100 s^(-1). It can provide guideline for the design of processing parameters in warm rotary draw bending of LDTW TC4 tubes. 展开更多
关键词 TC4 tube Compression behavior Constitutive model Modified Arrhenius model neural network model
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A Shared Neural Node for Multiple Innate Behaviors in Drosophila 被引量:1
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作者 Margaret S.Ho 《Neuroscience Bulletin》 SCIE CAS CSCD 2018年第6期1103-1104,共2页
The nervous system orchestrates diverse behaviors such as reproduction, sleep, feeding, and aggression, and selects a single behavior for execution at any given time. This requires neural mechanisms for behavioral sel... The nervous system orchestrates diverse behaviors such as reproduction, sleep, feeding, and aggression, and selects a single behavior for execution at any given time. This requires neural mechanisms for behavioral selection sensitive to both internal physiological states and external environmental conditions. For example, hungry animals 展开更多
关键词 In A Shared neural Node for Multiple Innate behaviors in Drosophila
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Combined acupuncture and HuangDiSan treatment affects behavior and synaptophysin levels in the hippocampus of senescence-accelerated mouse prone 8 after neural stem cell transplantation 被引量:8
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作者 Chun-lei Zhou Lan Zhao +6 位作者 Hui-yan Shi Jian-wei Liu liang-wei Shi Bo-hong Kan Zhen Li lian-chun Yu Jing-xian Han 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第3期541-548,共8页
Sanjiao acupuncture and HuangDiSan can promote the proliferation, migration and differentiation of exogenous neural stem cells in senescence-accelerated mouse prone 8 (SAMP8) mice and can improve learning and memory... Sanjiao acupuncture and HuangDiSan can promote the proliferation, migration and differentiation of exogenous neural stem cells in senescence-accelerated mouse prone 8 (SAMP8) mice and can improve learning and memory impairment and behavioral function in dementia-model mice. Thus, we sought to determine whether Sanjiao acupuncture and HuangDiSan can elevate the effect of neural stem cell transplantation in Alzheimer’s disease model mice. Sanjiao acupuncture was used to stimulate Danzhong (CV17), Zhongwan (CV12),Qihai (CV6), bilateral Xuehai (SP10) and bilateral Zusanli (ST36) 15 days before and after implantation of neural stem cells (5 × 10^5) into the hippocampal dentate gyrus of SAMP8 mice. Simultaneously, 0.2 mL HuangDiSan, containing Rehmannia Root and Chinese Angelica,was intragastrically administered. Our results demonstrated that compared with mice undergoing neural stem cell transplantation alone,learning ability was significantly improved and synaptophysin mRNA and protein levels were greatly increased in the hippocampus of mice undergoing both Sanjiao acupuncture and intragastric administration of HuangDiSan. We conclude that the combination of Sanjiao acupuncture and HuangDiSan can effectively improve dementia symptoms in mice, and the mechanism of this action might be related to the regulation of synaptophysin expression. 展开更多
关键词 nerve regeneration neurons NEURODEGENERATION Alzheimer's disease MICROENVIRONMENT Chinese medicine behavior neural stem cell transplantation SYNAPTOPHYSIN neural regeneration
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Individual Differences in Aging: Behavioral and Neural Analyses
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作者 DAVID S.OLTON ALICJA MARKOWSKA +3 位作者 STEVEN J.BRECKLER GARY L.WENK KEVIN C.PANG VASSILISKOLIATSOS 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 1991年第1期166-172,共7页
Aged populations have remarkable variability in recent memory and cognitive mapping. Although some individuals may have substantial age-related impairments, others perform almost as well as young individuals. This pap... Aged populations have remarkable variability in recent memory and cognitive mapping. Although some individuals may have substantial age-related impairments, others perform almost as well as young individuals. This paper reviews the relevant data on aged rats and indicates two challenges for biomarkers of aging. The first is to provide an appropriate quantitative description of these individual differences. The second is to use them effectively as markers for age-related changes in psychological functions and their neural substrates. 展开更多
关键词 behavioral and neural Analyses
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Deep Neural Network Based Behavioral Model of Nonlinear Circuits
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作者 Zhe Jin Sekouba Kaba 《Journal of Applied Mathematics and Physics》 2021年第3期403-412,共10页
With the rapid growth of complexity and functionality of modern electronic systems, creating precise behavioral models of nonlinear circuits has become an attractive topic. Deep neural networks (DNNs) have been recogn... With the rapid growth of complexity and functionality of modern electronic systems, creating precise behavioral models of nonlinear circuits has become an attractive topic. Deep neural networks (DNNs) have been recognized as a powerful tool for nonlinear system modeling. To characterize the behavior of nonlinear circuits, a DNN based modeling approach is proposed in this paper. The procedure is illustrated by modeling a power amplifier (PA), which is a typical nonlinear circuit in electronic systems. The PA model is constructed based on a feedforward neural network with three hidden layers, and then Multisim circuit simulator is applied to generating the raw training data. Training and validation are carried out in Tensorflow deep learning framework. Compared with the commonly used polynomial model, the proposed DNN model exhibits a faster convergence rate and improves the mean squared error by 13 dB. The results demonstrate that the proposed DNN model can accurately depict the input-output characteristics of nonlinear circuits in both training and validation data sets. 展开更多
关键词 Nonlinear Circuits Deep neural Networks behavioral Model Power Amplifier
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Analog-Circuit Model of FGH96 Superalloy Hot Deformation Behaviors Based on Artificial Neural Network
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作者 刘玉红 李付国 +1 位作者 李超 吴诗 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2005年第1期90-96,共7页
At the present time, numerical models (such as, numerical simulation based on FEM) adopted broadly in technological design and process control in forging field can not implement the realtime control of material form... At the present time, numerical models (such as, numerical simulation based on FEM) adopted broadly in technological design and process control in forging field can not implement the realtime control of material forming process. It is thus necessary to establish a dynamic model fitting for the real-time control of material deformation processing in order to increase production efficiency, improve forging qualities and increase yields. In this paper, hot deformation behaviors of FGH96 superalloy are characterized by using hot compressive simulation experiments. The artificial neural network (ANN) model of FGH96 superalloy during hot deformation is established by using back propagation (BP) network. Then according to electrical analogy theory, its analog-circuit (AC) model is obtained through mapping the ANN model into analog circuit. Testing results show that the ANN model and the AC model of FGH96 superalloy hot deformation behaviors possess high predictive precisions and can well describe the superalloy's dynamic flow behaviors. The ideas proposed in this paper can be applied in the real-time control of material deformation processing. 展开更多
关键词 FGH96 superalloy flow behavior artificial neural network(ANN) analog-circuit
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LONG-TIME BEHAVIOR OF TRANSIENT SOLUTIONS FOR CELLULAR NEURAL NETWORK SYSTEMS
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作者 蒋耀林 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2000年第3期321-326,共6页
By establishing concept an transient solutions of general nonlinear systems converging to its equilibrium set, long-time behavior of solutions for cellular neural network systems is studied. A stability condition in g... By establishing concept an transient solutions of general nonlinear systems converging to its equilibrium set, long-time behavior of solutions for cellular neural network systems is studied. A stability condition in generalized sense is obtained. This result reported has an important guide to concrete neural network designs. 展开更多
关键词 dynamic stability cellular neural network systems long-time behavior of transient solutions
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基于人工神经网络预测锂离子软包电池充放电行为研究
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作者 刘宁 孙海波 《微纳电子技术》 2026年第1期94-103,共10页
基于人工神经网络(ANN)技术对钴酸锂/镍钴酸锂软包电池不同循环次数下的充放电曲线进行了预测,研究了隐含层数量、隐含层神经元个数、传递函数类型及优化算法对充放电曲线预测精度的调控作用。结果表明,采用单隐含层的ANN模型可实现充... 基于人工神经网络(ANN)技术对钴酸锂/镍钴酸锂软包电池不同循环次数下的充放电曲线进行了预测,研究了隐含层数量、隐含层神经元个数、传递函数类型及优化算法对充放电曲线预测精度的调控作用。结果表明,采用单隐含层的ANN模型可实现充放电曲线的高精度预测。预测充电行为时,最优的网络结构为2-47-1,隐含层和输出层传递函数分别为logsig和purelin,优化算法选用trainbr,预测值与实验值的均方误差(MSE)最低为2.43×10^(-7);预测放电行为时,最优的网络结构为2-69-1,隐含层与输出层传递函数分别为tansig和purelin,优化算法仍为trainbr,MSE最低为1.41×10^(-6)。基于电池1数据优化的模型可有效预测电池2的充放电行为,MSE稳定在10^(-5)数量级;当循环次数增至7000次时,MSE升至10^(-2)~10^(-3)数量级,这是由于模型未能充分表征电池老化过程中的电化学特征。此外,该ANN模型在训练、验证和测试数据集上的回归系数(R2)均超过0.99,展现出优异的预测精度与泛化能力。 展开更多
关键词 锂离子电池 软包电池 充放电曲线 人工神经网络(ANN) 电化学行为预测
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基于机器学习算法的大学生异常行为分析及预警研究
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作者 肖青茂 杨铭 +3 位作者 周晓晶 刘浩 程俊涛 郎迪 《黑龙江科学》 2026年第3期75-79,共5页
研究在校大学生上网及图书馆借阅等行为的关联,构建异常行为预警模型以及时识别并干预学生出现的潜在学业问题,保障学业进展。建立大学生行为多级指标体系,利用SPSS 27.0软件进行相关性及线性回归分析,识别上网时长和流量等为上网行为... 研究在校大学生上网及图书馆借阅等行为的关联,构建异常行为预警模型以及时识别并干预学生出现的潜在学业问题,保障学业进展。建立大学生行为多级指标体系,利用SPSS 27.0软件进行相关性及线性回归分析,识别上网时长和流量等为上网行为关键影响因素,分析图书借还及欠费赔偿情况。基于上网行为数据,运用四分位距法(IQR)确定正常范围阈值,监测学生在图书馆行为中出现的异常特征,采用长短时记忆网络(LSTM)和BP神经网络算法分别构建异常行为预警模型,基于ROC曲线、准确率等多种评价指标对模型性能进行评价,得出BP神经网络预警模型性能最优的结论。 展开更多
关键词 机器学习算法 长短时记忆网络 BP神经网络 大学生 异常行为 预警
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智能云运维系统混合蜜罐入侵自动检测方法
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作者 张一平 徐雯 +1 位作者 杨小艺 饶煜 《自动化技术与应用》 2026年第1期106-109,113,共5页
为了降低系统入侵虚警率,本文提出利用混合蜜罐入侵的自动检测方法。利用操作系统、网络服务和应用程序等作为蜜罐设备,并通过计算系统各节点的破坏因子进行优化蜜罐部署,结合入侵行为特征的约束条件函数,求取入侵特征惯性权值,进而优... 为了降低系统入侵虚警率,本文提出利用混合蜜罐入侵的自动检测方法。利用操作系统、网络服务和应用程序等作为蜜罐设备,并通过计算系统各节点的破坏因子进行优化蜜罐部署,结合入侵行为特征的约束条件函数,求取入侵特征惯性权值,进而优化入侵行为特征,基于此,采用神经网络构造入侵检测模型,并将当前入侵行为与特征库中的非正常行为进行比对,根据匹配阈值,判断待测数据是否为入侵数据。实验结果表明,该方法的虚警率始终保持在0.3%以下,能够有效降低系统的入侵检测虚警率。 展开更多
关键词 智能云运维系统 混合蜜罐 神经网络 入侵行为 特征聚类
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基于递归小波神经网络的电力用户窃电行为特征识别
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作者 麦晓庆 李明 李静 《电力安全技术》 2026年第1期32-36,共5页
由于电力用户数据中包含大量的噪声和无关信息,在判断电力用户窃电行为时数据处理速度较慢,导致识别效率不高。因此,提出了基于递归小波神经网络的电力用户窃电行为特征识别方法。通过A/D采集电路采集电力用户的用电数据,并对用电数据... 由于电力用户数据中包含大量的噪声和无关信息,在判断电力用户窃电行为时数据处理速度较慢,导致识别效率不高。因此,提出了基于递归小波神经网络的电力用户窃电行为特征识别方法。通过A/D采集电路采集电力用户的用电数据,并对用电数据进行预处理,提取电力用户窃电行为的特征,采用递归小波神经网络构建窃电行为特征识别模型,使用高斯小波函数进行特征捕捉,并通过优化训练集大小和训练时长来提高模型性能,实现对电力用户窃电行为的快速识别与定位。试验结果表明,所设计的方法能够准确反映电网运行状态,有效识别窃电行为,且识别效率高于传统方法,具有较高的应用价值。 展开更多
关键词 用电数据 递归小波神经网络 窃电行为 特征识别
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细粒度分心驾驶行为识别方法
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作者 李桃迎 白文杰 刘文卓 《计算机与现代化》 2026年第1期40-46,67,共8页
分心驾驶行为是引发交通事故的主要原因之一,识别分心驾驶行为对提升道路安全至关重要。然而,现有基于图卷积的行为识别方法在捕捉驾驶场景中细微复杂动作特征方面存在明显局限性。为此,本文提出基于图卷积的细粒度分心驾驶行为识别网络... 分心驾驶行为是引发交通事故的主要原因之一,识别分心驾驶行为对提升道路安全至关重要。然而,现有基于图卷积的行为识别方法在捕捉驾驶场景中细微复杂动作特征方面存在明显局限性。为此,本文提出基于图卷积的细粒度分心驾驶行为识别网络(FG-DDGCN),以层次分解图卷积网络(HD-GCN)为基础,设计短时显式运动建模(ST-EM)、多尺度通道可变时空注意力机制(MSCVSTA)和鲁棒解耦损失函数(RDL)等3大模块,精准捕捉驾驶员的微小动作并显著提升识别精度。本文在Drive&Act数据集上对提出模型进行评估,并通过消融实验验证了各模块的有效性。在细粒度活动任务中,提出模型在验证集和测试集上均取得了最佳表现(73.27%和64.90%)。在原子动作单元任务中,提出模型在动作、对象和位置维度上显著优于现有方法。实验结果表明,FG-DDGCN在细粒度动态行为特征的捕捉上展现了一定的优势,相较现有方法取得了良好的表现。这为分心驾驶行为识别提供了一种可行的解决方案,同时为相关领域的研究探索提供了有益的参考。 展开更多
关键词 分心驾驶行为识别 图神经网络 细粒度分类 注意力机制
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腰椎间盘突出症模型小鼠下丘脑室旁核脑区参与慢性痛共焦虑的机制
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作者 史高龙 葛彩军 +4 位作者 陈建澎 王元斌 范泽林 严军 王前亮 《中国组织工程研究》 北大核心 2026年第22期5707-5715,共9页
背景:腰椎间盘突出症患者因慢性疼痛及功能受限易并发焦虑情绪,严重影响生活质量,但疼痛-焦虑共病机制仍不明确。目的:探究腰椎间盘突出症模型小鼠下丘脑室旁核脑区在慢性痛-焦虑共病中的神经调控机制。方法:采用简单随机分组法将100只C... 背景:腰椎间盘突出症患者因慢性疼痛及功能受限易并发焦虑情绪,严重影响生活质量,但疼痛-焦虑共病机制仍不明确。目的:探究腰椎间盘突出症模型小鼠下丘脑室旁核脑区在慢性痛-焦虑共病中的神经调控机制。方法:采用简单随机分组法将100只C57BL/6小鼠分为正常组24只和造模组76只。造模组小鼠采用针刺法建立腰椎间盘突出症模型,造模成功的72只小鼠随机分为模型组、催产素组和催产素+Vasotocin组,每组24只。催产素组小鼠下丘脑室旁核脑区注射200 nL催产素(0.5μg/μL);催产素+Vasotocin组小鼠下丘脑室旁核脑区注射200 nL催产素,腹腔注射20μL Vasotocin(催产素拮抗剂,0.15μg/μL)。各组小鼠在造模后20 d进行高架十字迷宫和旷场实验检测焦虑样行为变化;在造模前和造模后21 d进行机械性缩足反射阈值实验、热刺激缩足反射潜伏期实验;造模后21 d采用免疫荧光染色观察大脑下丘脑室旁核c-FOS表达,qPCR检测背根神经节组织中炎症因子前列腺素E2、肿瘤坏死因子α和白细胞介素1βmRNA表达,Western blot检测下丘脑室旁核脑区组织中催产素受体和p-ERK1/2蛋白表达。结果与结论:①与正常组相比,模型组小鼠机械痛阈值和热痛阈值显著降低(P<0.05),高架十字迷宫开放臂停留时间和停留次数显著减少(P<0.05),旷场实验开放区域停留时间和次数显著减少(P<0.05),背根神经节组织中前列腺素E2、肿瘤坏死因子α和白细胞介素1βmRNA表达显著升高(P<0.05),大脑下丘脑室旁核脑区中c-FOS表达显著升高(P<0.05),大脑下丘脑室旁核脑区中催产素受体蛋白表达显著下降,p-ERK1/2蛋白表达显著升高(P<0.05)。②与模型组相比,催产素组小鼠机械痛阈值和热痛阈值显著上升(P<0.05),高架十字迷宫开放臂停留时间和停留次数显著增加(P<0.05),旷场实验开放区域停留时间和次数显著增加(P<0.05),背根神经节组织中前列腺素E2、肿瘤坏死因子α和白细胞介素1βmRNA表达显著下降(P<0.05),大脑下丘脑室旁核脑区c-FOS表达显著下降(P<0.05),大脑室旁核脑区催产素受体蛋白表达显著上升,p-ERK1/2蛋白表达显著下降(P<0.05)。③与催产素组相比,Vasotocin的使用逆转了催产素对小鼠疼痛和焦虑的改善作用,炎症因子表达升高,催产素受体蛋白表达显著下降,p-ERK1/2蛋白表达显著升高。④结果表明,催产素可显著改善腰椎间盘突出症小鼠的慢性疼痛和焦虑行为,抑制背根神经节炎症,作用机制可能与激活下丘脑室旁核中ERK信号通路及下调炎症因子表达有关。 展开更多
关键词 腰椎间盘突出症 下丘脑室旁核 焦虑情绪 催产素受体 慢性痛 神经调控机制 分子通路 炎症因子
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Dissecting the hypothalamic pathways that underlie innate behaviors 被引量:9
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作者 Xi Zha Xiaohong Xu 《Neuroscience Bulletin》 SCIE CAS CSCD 2015年第6期629-648,共20页
Many complex behaviors that do not require learning are displayed and are termed innate. Although traditionally the subject matter of ethology, innate behaviors offer a unique entry point for neuroscientists to dissec... Many complex behaviors that do not require learning are displayed and are termed innate. Although traditionally the subject matter of ethology, innate behaviors offer a unique entry point for neuroscientists to dissect the physiological mechanisms governing complex behaviors. Since the last century, converging evidence has implicated the hypothalamus as the central brain area that controls innate behaviors. Recent studies using cutting-edge tools have revealed that genetically-defined populations of neurons residing in distinct hypothalamic nuclei and their associated neural pathways regulate the initiation and maintenance of diverse behaviors including feeding, sleep, aggression, and parental care. Here, we review the newly-defined hypothalamic pathways that regulate each innate behavior. In addition, emerging general principles of the neural control of complex behaviors are discussed. 展开更多
关键词 HYPOTHALAMUS innate behaviors neural circuit OPTOGENETICS neural network
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MouseVenue3D:A Markerless Three-Dimension Behavioral Tracking System for Matching Two-Photon Brain Imaging in Free-Moving Mice 被引量:3
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作者 Yaning Han Kang Huang +8 位作者 Ke Chen Hongli Pan Furong Ju Yueyue Long Gao Gao Runlong Wu Aimin Wang Liping Wang Pengfei Wei 《Neuroscience Bulletin》 SCIE CAS CSCD 2022年第3期303-317,共15页
Understanding the connection between brain and behavior in animals requires precise monitoring of their behaviors in three-dimensional(3-D)space.However,there is no available three-dimensional behavior capture system ... Understanding the connection between brain and behavior in animals requires precise monitoring of their behaviors in three-dimensional(3-D)space.However,there is no available three-dimensional behavior capture system that focuses on rodents.Here,we present MouseVenue3D,an automated and low-cost system for the efficient capture of 3-D skeleton trajectories in markerless rodents.We improved the most time-consuming step in 3-D behavior capturing by developing an automatic calibration module.Then,we validated this process in behavior recognition tasks,and showed that 3-D behavioral data achieved higher accuracy than 2-D data.Subsequently,MouseVenue3D was combined with fast high-resolution miniature two-photon microscopy for synchronous neural recording and behavioral tracking in the freely-moving mouse.Finally,we successfully decoded spontaneous neuronal activity from the 3-D behavior of mice.Our findings reveal that subtle,spontaneous behavior modules are strongly correlated with spontaneous neuronal activity patterns. 展开更多
关键词 Computational neuroethology behavioral and neural recording 3-D pose estimation Multi-view cameras Automatic calibration
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基于EDNN模型的高等教育个性化学习路径优化研究
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作者 王振 《黑河学院学报》 2026年第1期91-95,共5页
在高等教育领域,推荐个性化学习路径时,构建一种基于增强型深度神经网络(Enhanced Deep Neural Network,EDNN)的优化模型。该模型的目标是通过结合学习者的行为数据和认知风格,来实现学习路径的动态调整和优化,并且使用了演员—评论家(A... 在高等教育领域,推荐个性化学习路径时,构建一种基于增强型深度神经网络(Enhanced Deep Neural Network,EDNN)的优化模型。该模型的目标是通过结合学习者的行为数据和认知风格,来实现学习路径的动态调整和优化,并且使用了演员—评论家(Actor-Critic)框架。其中,Actor部分通过多层感知器(Multilayer Perceptron,MLP)技术,将学习时间、学习频率、成绩等行为特征与视觉型、听觉型等认知风格进行加权整合;Critic部分引入长短期记忆网络(Long Short-Term Memory,LSTM)处理时间序列数据,并分别以策略梯度和时差分算法更新Actor与Critic参数。实验结果表明,与深度Q学习(Q-learning)和深度Q网络(Deep Q-Network,DQN)相比,所提模型在40次迭代后损失值迅速降至0.1以下,实现更快收敛;在500次重复测试中,平均反馈响应时间最低为1.123秒,平均路径调整计算时间最低为2.010秒;个性化路径推荐准确率最高达0.93。表明该优化模型能够高效整合多源学习数据,实时优化学习路径,为高等教育个性化教学提供了可行且高效的技术方案。 展开更多
关键词 个性化学习路径 增强型深度神经网络 演员—评论家框架 行为数据与认知风格 长短期记忆
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Acute histopathological responses and long-term behavioral outcomes in mice with graded controlled cortical impact injury 被引量:2
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作者 Si-Yi Xu Min Liu +7 位作者 Yang Gao Yang Cao Jin-Gang Bao Ying-Ying Lin Yong Wang Qi-Zhong Luo Ji-Yao Jiang Chun-Long Zhong 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第6期997-1003,共7页
While animal models of controlled cortical impact often display short-term motor dysfunction after injury, histological examinations do not show severe cortical damage. Thus, this model requires further improvement. M... While animal models of controlled cortical impact often display short-term motor dysfunction after injury, histological examinations do not show severe cortical damage. Thus, this model requires further improvement. Mice were subjected to injury at three severities using a Pin-Point^(TM)-controlled cortical impact device to establish secondary brain injury mouse models. Twenty-four hours after injury, hematoxylin-eosin staining, Fluoro-Jade B histofluorescence, and immunohistochemistry were performed for brain slices. Compared to the uninjured side, we observed differences of histopathological findings, neuronal degeneration, and glial cell number in the CA2 and CA3 regions of the hippocampus on the injured side. The Morris water maze task and beam-walking test verified long-term(14–28 days) spatial learning/memory and motor balance. To conclude, the histopathological responses were positively correlated with the degree of damage,as were the long-term behavioral manifestations after controlled cortical impact. All animal procedures were approved by the Institutional Animal Care and Use Committee at Shanghai Jiao Tong University School of Medicine. 展开更多
关键词 nerve REGENERATION TRAUMATIC brain INJURY controlled cortical impact HISTOPATHOLOGY behavioral MANIFESTATIONS neural REGENERATION
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Neural mechanism of proposer's decision-making in the ultimatum and dictator games 被引量:2
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作者 Hongming Zheng Liqi Zhu 《Neural Regeneration Research》 SCIE CAS CSCD 2013年第4期357-362,共6页
Previous studies have demonstrated that reactions to unfair offers in the ultimatum game are correlated with negative emotion. However, little is known about the difference in neural activity between a proposer's dec... Previous studies have demonstrated that reactions to unfair offers in the ultimatum game are correlated with negative emotion. However, little is known about the difference in neural activity between a proposer's decision-making in the ultimatum game compared with the dictator game. The present functional magnetic resonance imaging study revealed that proposing fair offers in the dictator game elicited greater activation in the right supramarginal gyrus, right medial frontal gyrus and left anterior cingulate cortex compared with proposing fair offers in the ultimatum game in 23 Chinese undergraduate and graduate students from Beijing Normal University in China. However, greater activation was found in the right superior temporal gyrus and left cingulate gyrus for the reverse contrast. "The results indicate that proposing fair offers in the dictator game is more strongly associated with cognitive control and conflicting information processing compared with proposing fair offers in the ultimatum game. 展开更多
关键词 neural regeneration neuroimaging functional magnetic resonance imaging DECISION-MAKING fair behavior neural mechanism brain brain activation cognition emotion grants-supported paper photographs-containing paper NEUROREGENERATION
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Human neural stem cells promote proliferation of endogenous neural stem cells and enhance angiogenesis in ischemic rat brain 被引量:25
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作者 Sun Ryu Seung-Hoon Lee +1 位作者 Seung U.Kim Byung-Woo Yoon 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第2期298-304,共7页
Transplantation of human neural stem cells into the dentate gyrus or ventricle of rodents has been reportedly to enhance neurogenesis. In this study, we examined endogenous stem cell proliferation and angiogenesis in ... Transplantation of human neural stem cells into the dentate gyrus or ventricle of rodents has been reportedly to enhance neurogenesis. In this study, we examined endogenous stem cell proliferation and angiogenesis in the ischemic rat brain after the transplantation of human neural stem cells. Focal cerebral ischemia in the rat brain was induced by middle cerebral artery occlusion. Human neural stem cells were transplanted into the subventricular zone. The behavioral performance of human neural stem cells-treated ischemic rats was significantly improved and cerebral infarct volumes were reduced compared to those in untreated animals. Numerous transplanted human neural stem cells were alive and preferentially localized to the ipsilateral ischemic hemisphere. Furthermore, 5-bromo-2′-deoxyuridine-labeled endogenous neural stem cells were observed in the subventricular zone and hippocampus, where they differentiated into cells immunoreactive for the neural markers doublecortin, neuronal nuclear antigen Neu N, and astrocyte marker glial fibrillary acidic protein in human neural stem cells-treated rats, but not in the untreated ischemic animals. The number of 5-bromo-2′-deoxyuridine-positive ? anti-von Willebrand factor-positive proliferating endothelial cells was higher in the ischemic boundary zone of human neural stem cells-treated rats than in controls. Finally, transplantation of human neural stem cells in the brains of rats with focal cerebral ischemia promoted the proliferation of endogenous neural stem cells and their differentiation into mature neural-like cells, and enhanced angiogenesis. This study provides valuable insights into the effect of human neural stem cell transplantation on focal cerebral ischemia, which can be applied to the development of an effective therapy for stroke. 展开更多
关键词 nerve regeneration focal cerebral ischemia middle cerebral artery occlusion human neural stem cells TRANSPLANTATION differentiation infarct size behavioral analysis endogenous neurogenesis ANGIOGENESIS rats neural regeneration
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A Short Glance at the Neural Circuitry Mechanism Underlying Depression
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作者 Chanyi Lu Qiqin Li +2 位作者 Yaoyao Li Yun Wang Yun-Feng Zhang 《World Journal of Neuroscience》 2016年第3期184-192,共9页
Depression leads to a large social burden because of its substantial impairment and disability in everyday activities. The prevalence and considerable impact of this disorder call for a better understanding of its pat... Depression leads to a large social burden because of its substantial impairment and disability in everyday activities. The prevalence and considerable impact of this disorder call for a better understanding of its pathophysiology to improve the diagnosis, treatment and prevention. Though productive animal models and pathophysiological theories have been documented, it is still very far to uncover the complex array of symptoms caused by depression. Moreover, the neural circuitry mechanism underlying behavioral changes in some depression-like behavior animals is still limited. Changes in the neural circuitry of amygdala, dorsal raphe nucleus, ventral tegmental area, hippocampus, locus coeruleus and nucleus accumbens are related to depression. However, the interactions between individual neural circuitry of different brain areas, have not yet been fully elucidated. The purpose of the present review is to examine and summarize the current evidence for the pathophysiological mechanism of depression, with a focus on the neural circuitry, and emphasize the necessity and importance of integrating individual neural circuitry in different brain regions to understand depression. 展开更多
关键词 PATHOPHYSIOLOGY Depression-Like behavior neural Circuitry
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