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    题名 作者 年代 出处 被引量
1Novel bacteriophage therapy for controlling metallo-beta-lactamase producing Pseudomonas aeruginosa infection in Catfish 显示文摘Khairnar K Raut M P Chandekar R H 2013BMC Veterinary Research2013,9,:1
2Peptide surface modification of P(HEMA-co-MMA)-b-PIB-b-P(HEMA-co-MMA)block copolymers显示文摘Ojha U Feng D S Chandekar A 2009Langmuir2009,25,11:1
3显示文摘Chandekar A Alabran M Sengupta S K 2008Microelectron Eng2008,85,1:1
4Cytological diagnosis of Langerhans cell histiocytosis with cutaneous involvement显示文摘Chandekar SA Shah VB Kavishwar V 0,,01:1
5查看详情显示文摘Feng D.S Chandekar A Whitten J.E Faust R 0,,:1
6Influence of Withania somnifera on obsessive compulsive disorder in mice显示文摘Objective:To study the influence of methanolic and aqueous extract of Withania somnifera (W.somnifera) root on the marble-burying behavior of mice a well-accepted model of obsessive compulsive behavior.Methods:Mice were divided in different groups(n=6).Fluoxetine(5,10,15 mg/kg), (10,25,50,100 mg/kg) and melhanolic extract W.somnifera(MEWS)(10,25,50,100 mg/kg) were administered i.p.30 min.prior to the assessment of marble burying behavior and locomotor activity.The control group received vehicle of the extract.Results:Administration of aqueous extracts W.somnifera(AEWS) and MEWS(50 mg/kg) successively decreaesed the marble burying behavior activity without affecting motor activity.This effect of AEWS and MEWS was comparable to standard fluoxetine,ritanserin and parachlorophenylalanine.Conclusions:W.somnifera extract is effective in treating obsessive compulsive disorder.Bhanu PS Kaurav Manish M Wanjari Amol Chandekar Nagendra Singh Chauhan Neeraj Upmanyu 2012Asian Pacific Journal of Tropical Medicine2012,5,5:0
7Molecular imaging as a tool for evaluation of COVID-19 sequelae-A review of literature显示文摘Coronavirus disease 2019(COVID-19)is caused by the novel viral pathogen,severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).COVID-19 primarily involves the lungs.Nucleic acid testing based on reverse-transcription polymerase chain reaction of respiratory samples is the current gold standard for the diagnosis of SARS-CoV-2 infection.Imaging modalities have an established role in triaging,diagnosis,evaluation of disease severity,monitoring disease progression,extra-pulmonary involvement,and complications.As our understanding of the disease improves,there has been substantial evidence to highlight its potential for multi-systemic involvement and development of longterm sequelae.Molecular imaging techniques are highly sensitive,allowing noninvasive visualization of physiological or pathological processes at a cellular or molecular level with potential for detection of functional changes earlier than conventional radiological imaging.The purpose of this review article is to highlight the evolving role of molecular imaging in evaluation of COVID-19 sequelae.Though not ideal for diagnosis,the various modalities of molecular imaging play an important role in assessing pulmonary and extra-pulmonary sequelae of COVID-19.Perfusion imaging using single photon emission computed tomography fused with computed tomography(CT)can be utilized as a first-line imaging modality for COVID-19 related pulmonary embolism.^(18)F-fluorodeoxyglucose positron emission tomography(PET)/CT is a sensitive tool to detect multi-systemic inflammation,including myocardial and vascular inflammation.PET in conjunction with magnetic resonance imaging helps in better characterization of neurological sequelae of COVID-19.Despite the fact that the majority of published literature is retrospective in nature with limited sample sizes,it is clear that molecular imaging provides additional valuable information(complimentary to anatomical imaging)with semi-quantitative or quantitative parameters to define inflammatory burden and can be used to guide therapeutic strategies and assess response.However,widespread clinical applicability remains a challenge owing to longer image acquisition times and the need for adoption of infection control protocols.Kunal R Chandekar Swayamjeet Satapathy Harmandeep Singh Anish Bhattacharya 2022World Journal of Radiology2022,14,7:0
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