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15篇 您的检索式:作者名="Tulsulkar"
    题名 作者 年代 出处 被引量
1Ginkgo biloba prevents transient global ischemia-induced delayed hippocampal neuronal death through antioxidant and anti-inflammatory mechanism显示文摘Jatin Tulsulkar Zahoor A. Shah 2012Neurochemistry International2012,,:2
2Ginkgo biloba prevents transient global ischemia-induced delayed hippocampal neuronal death through antioxidant and anti -inflammatory mechanism显示文摘Tulsulkar J Shah ZA 2013Neurochem Int2013,62,2:1
3Polymorphisms in GSTM1 and XPD genes predict clinical outcome in advanced oral cancer patients treated with postoperative radiotherapy显示文摘Manoj B. Mahimkar Tanuja A. Samant Sadhana Kannan Jatin Tulsulkar Prathamesh S. Pai Devasena Anantharaman 2011Mol. Carcinog2011,,1:1
4Obesity and hyperglycemia lead to impaired post-ischemic recovery after permanent ischemia in mice 显示文摘Tulsulkar J Nada SE Slotterbeck BD 2016Obesity (Silver Spring)2016,24,2:1
5Ginkgo biloba prevents transient global ischemia-induced delayed hippocampa| neuronaldeath through antioxidant and anti -inflammatory mechanism显示文摘Tulsulkar J Shah ZA 2013Neurochem Int2013,62,2:1
6Ginkgo Biloba ( EGb 761 ) augments the repair and regeneration process by enhancing neurogenesis after experimental stroke in mice显示文摘Nada S Tulsulkar J Shah Z 2014J Altem Complement Med2014,20,:1
7Ginkgo biloba prevents transient global is- chemia-induced delayed hippocampal neuronal death through antiox- idant and anti-inflammatory mechanism显示文摘Tulsulkar J Shah ZA 2013Neurochem Int2013,62,:1
8Heme oxygenase 1-medi- ated neurogenesis is enhanced by Ginkgo biloba ( EGb 761 ) after permanent ischemic stroke in mice显示文摘Nada S E Tulsulkar J Shah Z A 2014Mol Neurobiol2014,49,2:1
9Ginkgo biloba prevents transient global ischemia-induced delayed hippocampal neuronal death through antioxidant and anti-inflammatory mechanism 显示文摘Tulsulkar J Shah ZA 2013Neurochem Int2013,62,2:1
10Heme oxygenase 1-media- ted neurogenesis is enhanced by Ginkgo biloba( EGb 761 ) after permanent isehemic stroke in mice显示文摘Nada SE Tulsulkar J Shah ZA 2014Mol Neurobi- ol2014,49,2:1
11Ginkgo biloba prevents transient global ischemia-induced delayed hippocampal neuronal death through antioxidant and anti-inflammatory mechanism显示文摘Tulsulkar J Shah ZA 2013NeurochemI nt2013,62,:1
12A derivative of the CRMP2 binding compound lanthioniue ketimine provides neuropro- tection in a mouse model of cerebral ischemia显示文摘Nada SE Tulsulkar J Raghavan A 2012Neurochem Int2012,61,:1
13Ginkgo biloba prevents transient global ischemia- induced delayed hippocampal neuronal death through antioxidant and anti- inflammatory mechanism显示文摘Tulsulkar J Shah ZA 2013Neurochem Int2013,62,2:1
14Ginkgo hiloba prevents transient global ischemia induced delayed hippocampal neuronal death through antioxidam and anti-inflammatory mechanism 显示文摘Tulsulkar J Shah ZA Neurochem Int0,62,:1
15Uncanny valley for interactive social agents:an experimental study显示文摘Background The uncanny valley hypothesis states that users may experience discomfort when inter-acting with almost human-like artificial characters.Advancements in artificial intelligence,robotics,and computer graphics have led to the development of life-like virtual humans and humanoid robots.Revisiting this hypothesis is necessary to check whether they positively or negatively affect the current population,who are highly accustomed to the latest technologies.Methods In this study,we present a unique evaluation of the uncanny valley hypothesis by allowing participants to interact live with four humanoid robots that have varying levels of human-likeness.Each participant completed a survey questionnaire to evaluate the affinity of each robot.Additionally,we used deep learning methods to quantify the participants’emotional states using multimodal cues,including visual,audio,and text cues,by recording the participant-robot interactions.Results Multi-modal analysis and surveys provided interesting results and insights into the uncanny valley hypothesis.Nidhi MISHRA Manoj RAMANATHAN Gauri TULSULKAR Nadia Magneat THALMANN 2022Virtual Reality & Intelligent Hardware2022,4,5:0
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