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18篇 您的检索式:作者名="Kharche"
    题名 作者 年代 出处 被引量
1A comparative study on parthenogenetic activation and embryo production from in vitro matured caprine oocytes显示文摘Pathak J Kharche S D Goel A K 2013Small Ruminant Research2013,113,:1
2Steering and visualization: Enabling technologies for computational sci- ence 显示文摘Wright H Crompton R H Kharche S 2010Future Generation Computer Systems2010,26,3:1
3Repo- larisation and vulnerability to re-entry in the human heart with short QT syndrome arising from KCNQ1 muta- tion-A simulation study 显示文摘ZHANG H KHARCHE S HOLDEN A V 2008Progress in Biophysics & Molecular Biology2008,96,13:1
4Effects of elevated homocysteine hormone onelectrical activity in the human atrium:A simulation study 显示文摘Law P Kharche S 2009Conf Proc IEEE Eng Med Biol Soc2009,2009,:1
5computational model of the ionic currents,Ca2+ dynamics and action potentials underlying contraction of isolated uterine smooth muscle显示文摘Tong WC Choi CY Kharche SA 0,,04:1
6Effects of streptozotocin- induced diabetes on connexin43 mRNA and protein expression in ventricular muscle 显示文摘Howarth FC Chandler NJ Kharche S 2008Mol Cell Biochem2008,319,12:1
7Performance Comparisons ofⅢ-Ⅴand Strained-Si in Planar FETs and Nonplanar FinFETs at Ultrashort Gate Length(12 nm)显示文摘PARK S H LIU Y KHARCHE N 2012IEEE Transactions on Electron Devices2012,59,8:1
8Computational model of the ionic currents, Ca^2+ dynamics and action potentials underlying contraction of isolated uterine smooth muscle显示文摘TONG WC CHOI CY KHARCHE SA 2011PLoS One2011,6,18:1
9Towards under- standing the myometrial physiome : approaches for the con- struction of a virtual physiological uterus 显示文摘Taggart M J Blanks A Kharche S 2007BMC Preg Childbirth2007,7,1:1
10Atri- al proarrhythmia due to increased inward rectifier current (I (K1)) arising from KCNJ2 mutation-a simulation study显示文摘KHARCHE S GARRATT C J BOYETT M R 2008Prog Biophys Mol Biol2008,98,23:1
11A computational model of the ionic currents,Ca2+ dynamics and action potentials un- derlying contraction of isolated Uterine smooth muscle显示文摘Tong W C Choi C Y Kharche S 2011PLoS One2011,6,18:1
12A comparative study on parthenogenetic activation and embryo production from in vitro ma- tured caprlne oocytes 显示文摘Pathak J Kharche S D Goel A K 2013Small Ruminant Research2013,113,86:1
13Performance analysis of a Ge/Si core/shell nSanowire field-effect transistor 显示文摘LIANG G XIANG J KHARCHE N 2007Nano Lett2007,7,:1
14Atrial proarrhythmia due to increased inward rectifi- er current (IKI) arising from KCNJ2 mutation - A simulation study显示文摘Sanjay Kharche 2008Biophysics and Molecular Biology2008,,98:1
15Quasiparticle band gap engineering of graphene and graphone on hexagonal boron nitride substrate 显示文摘Kharche N Nayak S K 2011NanoLett2011,11,12:1
16Effects of strep- tozotocin-induced diabetes on connexin43 mRNA and pro- tein expression in ventricular musele显示文摘Howarth FC Chandler NJ Kharche S 2008Molecular and cel- lular biochemistry2008,319,12:1
17Mechanisms underlying adaptation of action potential duration by pacing rate in rat myocytes显示文摘Salle L Kharche S Zhang H 0,,1:1
18Natural Biopolymers for Bone Tissue Engineering:A Brief Review显示文摘Tissue engineering is a well-proven technique for the creation of functional alternatives for regenerative medicine and plays a critical role in patient treatment.Several natural-origin biopolymers such as chitosan,hyaluronic acid,gelatin,collagen,etc.are extensively explored for various biomedical applications.Among,these polymers are exclusively investigated in tissue engineering applications due to their highly favorable properties,such as high biocompatibility,slow degradation,mechanical tenability,structural similarity with native tissues,bioactivity,etc.The present review summarizes the recent advances of biopolymers in bone tissue engineering It also covers the topic of natural polymer modification to achieve superior characteristics primarily mechanical properties towards bone regeneration and discussed the best methods for dealing with them.Therefore,the review can drive the development of biomimetic materials for futuristic applications.Sheersha Pramanik Shubham Kharche Namdev More Deepak Ranglani Gajendra Singh Govinda Kapusetti 2023Engineered Regeneration2023,4,2:0
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