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| 1 | An Overview on SARS‑CoV‑2(COVID‑19)and Other Human Coronaviruses and Their Detection Capability via Amplification Assay,Chemical Sensing,Biosensing,Immunosensing,and Clinical Assays显示文摘A novel coronavirus of zoonotic origin(SARSCoV-2)has recently been recognized in patients with acute respiratory disease.COVID-19 causative agent is structurally and genetically similar to SARS and bat SARS-like coronaviruses.The drastic increase in the number of coronavirus and its genome sequence have given us an unprecedented opportunity to perform bioinformatics and genomics analysis on this class of viruses.Clinical tests like PCR and ELISA for rapid detection of this virus are urgently needed for early identification of infected patients.However,these techniques are expensive and not readily available for point-of-care(POC)applications.Currently,lack of any rapid,available,and reliable POC detection method gives rise to the progression of COVID-19 as a horrible global problem.To solve the negative features of clinical investigation,we provide a brief introduction of the general features of coronaviruses and describe various amplification assays,sensing,biosensing,immunosensing,and aptasensing for the determination of various groups of coronaviruses applied as a template for the detection of SARS-CoV-2.All sensing and biosensing techniques developed for the determination of various classes of coronaviruses are useful to recognize the newly immerged coronavirus,i.e.,SARS-CoV-2.Also,the introduction of sensing and biosensing methods sheds light on the way of designing a proper screening system to detect the virus at the early stage of infection to tranquilize the speed and vastity of spreading.Among other approaches investigated among molecular approaches and PCR or recognition of viral diseases,LAMP-based methods and LFAs are of great importance for their numerous benefits,which can be helpful to design a universal platform for detection of future emerging pathogenic viruses. | Yasin Orooji Hessamaddin Sohrabi Nima Hemmat Fatemeh Oroojalian Behzad Baradaran Ahad Mokhtarzadeh Mohamad Mohaghegh Hassan Karimi‑Maleh | 2021 | Nano-Micro Letters2021,13,1: | 4 |
| 2 | An Introduction to Stem Cell Biology 显示文摘 | Hemmat S Lieberman DM Most SP | 2010 | Facial Plastic Surgery2010,26,5: | 1 |
| 3 | Molecular marker linkage map for apple显示文摘 | Hemmat M Weeden N F Manganaris A G | 1994 | J Heredily1994,85,: | 1 |
| 4 | An introduction to stem cell biology 显示文摘 | Hemmat S Lieberman DM Most SP | 2010 | Facial Plast Surg2010,26,5: | 1 |
| 5 | Conservation tillage practices for winter wheat-fallow farming on a clay loam soil (Calcisols) under temperate continental climate of northwestern Iran显示文摘 | Hemmat A Eskandari I | 2004 | Field Crops Research2004,89,1: | 1 |
| 6 | Conservation tillage practices for winter wheat-fallow farming in the temperate continental climate of northwestern Iran 显示文摘 | Hemmat A Eskandari I | 2004 | Field Crops Res2004,89,: | 1 |
| 7 | Simulating stress-sinkage under a plate sinkage test using a viscoelastic 2D axisymmetric finite element soil model 显示文摘 | HEMMAT A NANKALI N AGHILINATEGH N | 2012 | Soil & Tillage Research2012,118,: | 1 |
| 8 | An introduction to stem cell biology 显示文摘 | Hemmat S Lieberman DM Most SP | 2010 | Facial Plast Surg2010,26,5: | 1 |
| 9 | Soil compactibility as affected by soil moisture content and farmyard manure in central Iran 显示文摘 | Mosaddeghi M R Hajabbasi M A Hemmat A | 2000 | Soil Tillage Res2000,55,: | 1 |
| 10 | Tillage system effects upon productivity of a dryland winter wheat-chickpea rotation in the northwest region of Iran显示文摘 | Hemmat A Eskandari I | 2004 | Soil and Tillage Research2004,78,1: | 1 |
| 11 | Molecular marker link- age map for apple显示文摘 | Hemmat M Weeden N F Manganaris A G | 1994 | The Journal of Heredity1994,85,1: | 1 |
| 12 | Dryland winter wheat response to conservation tillage in a continuous cropping system in northwestern Iran显示文摘 | Hemmat A Eskandari I | 2006 | Soil and Tillage Research2006,86,1: | 1 |
| 13 | Dryland winter wheat response to conservation tillage in a continuous cropping system in northwestern Iran显示文摘 | Hemmat A Eskandari I | 2006 | Soil and Tillage Research2006,86,1: | 1 |
| 14 | Dry land winter wheat response to conservation tillage in a continuous cropping system in northwestern Iran显示文摘 | Abbas Hemmat Iraj Eskandari | 2006 | Soil & Tillage Research2006,86,: | 1 |
| 15 | Conservation tillage practices for winter wheat fallow farming on a clay loam soil (Calcisols)under temperate continental climate of northwestern Iran显示文摘 | Hemmat A Eskandari I | | 0,,01: | 1 |
| 16 | Terminal velocity of chopped corn silage and its separate fractions as af- fected by moisture content显示文摘 | Hemmat A Emamy M Razavi S J | 2007 | Journal of Agricultural Science Technology2007,9,1: | 1 |
| 17 | Molecular marker linkage map for apple显示文摘 | Hemmat M Weeden N F Manganaris AO | 1994 | J Hered1994,85,1: | 1 |
| 18 | A DNA marker for columnar growth habit in apple contains a simple sequence repeat显示文摘 | Hemmat M Weeden N F Conner P J Brown S K | 1997 | J Amer Soc Hort Sci1997,122,3: | 1 |
| 19 | Molecular marker linkage map for apple显示文摘 | HEMMAT M WEEDON N F MANGANARIS A G LAWSON D M | 1994 | The Journal of Heredity1994,,: | 1 |
| 20 | Development and application of marker linkage map in woody fruit crops显示文摘 | Weeden N F Hemmat M Lawon D W | 1994 | Eduphytica1994,77,: | 1 |