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| 1 | Immune responses in goats to recombinant hemagglutinin-neuraminidase glycoprotein of Peste des petits ruminants virus: identification of a T cell determinant显示文摘 | G. Sinnathamby G.J. Renukaradhya M. Rajasekhar R. Nayak M.S. Shaila | 2001 | Vaccine2001,,32: | 5 |
| 2 | Introduction of new techniques and technologies in surgery: Where is transanal total mesorectal excision today?显示文摘The introduction of new surgical techniques and technologies has traditionally been unregulated.In many settings surgeons frequently adopt novel procedures without following a structured program of implementation or supervision.The appearance of innovative technology played a pivotal role in the advancement of new surgical techniques during the industrial revolution.Innovation has been an essential component of surgical development,which led to contemporary surgical techniques such as minimally invasive surgery.Different initiatives have been developed to guide the safe introduction of new surgical techniques and other procedures.Those include comprehensive concepts such as the Idea,Development,Exploration,Assessment,Long-term study framework,which could be particularly relevant when reflecting on the novel transanal total mesorectal excision(taTME),introduced a decade ago.This relatively novel and complex procedure promised to overcome some of the major limitations of traditional surgical approaches for rectal cancer.According to the Idea,Development,Exploration,Assessment,Long-term study framework,taTME is in the phase of exploration,where there is an existing and increasing number of reports being published as the experience grows.The current management of rectal cancer is in a state of radical evolution,with multiple options that were not previously available.Ta TME is only one technique amongst many which could be part of a rectal cancer surgeon’s armamentarium;however,it requires further rigorous study and evaluation. | Antonio Caycedo-Marulanda Sunil Patel Shaila Merchant Carl Brown | 2020 | World Journal of Gastrointestinal Surgery2020,12,5: | 2 |
| 3 | Expression of hemagglutinin protein of Rinderpest virus in transgenic pigeon pea [Cajanus cajan (L.) Millsp.] plants显示文摘 | V. Satyavathi V. Prasad Abha khandelwal M. Shaila Lakshmi G. Sita | 2003 | Plant Cell Reports2003,,7: | 2 |
| 4 | The hemagglutinin–neuraminidase protein of peste des petits ruminants virus is biologically active when transiently expressed in mammalian cells显示文摘 | Shaguna Seth M.S. Shaila | 2001 | Virus Research2001,,2: | 2 |
| 5 | Peste des petits ruminants of sheep in India显示文摘 | Shaila M S Purushothaman V Bhavasar D | 1989 | Vet Rec1989,125,24: | 1 |
| 6 | Oral immunization of cattie with hemngglutinin protein of rinderpest virus expressed in transgenic peanut induces specific immune responses显示文摘 | Khandelwal A Lakshmi S G Shaila M S | 2003 | Vaccine2003,21,: | 1 |
| 7 | Peste des Petits Ruminants in Tamilnadu Goats显示文摘 | SHAILA M S PETER A B VARALAKSHMI P | 1996 | Indian Vet J1996,73,5: | 1 |
| 8 | Geographic Distribution and Epidemiology of Peste des Petits Ruminants Viruses显示文摘 | SHAILA M S SHAMAKI D FORSYTH M A | 1996 | Virus Res1996,43,2: | 1 |
| 9 | The hemagglutinin-neuraminidase protein of peste des petits ruminants virus is biologi- cally active when transiently expressed in mammalian eells显示文摘 | Seth S Shaila M S | 2001 | Virus Res2001,75,2: | 1 |
| 10 | The fusion protein of Peste des petits ruminants virus mediates biological fusion in the absence of hemagglutinin-neuraminidase protein 显示文摘 | Seth S Shaila M S | 2001 | Virology2001,289,1: | 1 |
| 11 | Effective multicultural teacher education programs:methodological and conceptual issues显示文摘 | Shaila Rao | 2005 | Multicultural Education2005,,2: | 1 |
| 12 | Geographic distribution and epidemiology of peste des petits ruminants virus显示文摘 | Shaila M S | 1996 | Virus Res1996,43,2: | 1 |
| 13 | Spatiotemporal variation and mechanisms of temperature inversion in the Bay of Bengal and the eastern equatorial Indian Ocean显示文摘In the northern Bay of Bengal,the existence of intense temperature inversion during winter is a widely accepted phenomenon.However,occurrences of temperature inversion during other seasons and the spatial distribution within and adjacent to the Bay of Bengal are not well understood.In this study,a higher resolution spatiotemporal variation of temperature inversion and its mechanisms are examined with mixed layer heat and salt budget analysis utilizing long-term Argo(2004 to 2020)and RAMA(2007 to 2020)profiles data in the Bay of Bengal and eastern equatorial Indian Ocean(EEIO).Temperature inversion exists(17.5%of the total 39293 Argo and 51.6%of the 28894 RAMA profiles)throughout the year in the entire study area.It shows strong seasonal variation,with the highest occurrences in winter and the lowest in spring.Besides winter inversion in the northern Bay of Bengal,two other regions with frequent temperature inversion are identified in this study for the first time:the northeastern part of the Bay of Bengal and the eastern part of the EEIO during summer and autumn.Driving processes of temperature inversion for different subregions are revealed in the current study.Penetration of heat(mean~25 W/m;)below the haline-stratified shallow mixed layer leads to a relatively warmer subsurface layer along with the simultaneous cooling tendency in mixed layer,which controls more occurrence of temperature inversion in the northern Bay of Bengal throughout the year.Comparatively lower cooling tendency due to net surface heat loss and higher mixed layer salinity leaves the southern part of the bay less supportive to the formation of temperature inversion than the northern bay.In the EEIO,slightly cooling tendency in the mixed layer along with the subduction of warm-salty Arabian Sea water beneath the cold-fresher Bay of Bengal water,and downwelling of thermocline creates a favorable environment for forming temperature inversion mainly during summer and autumn.Deeper isothermal layer depth,and thicker barrier layer thickness intensify the temperature inversion both in the Bay of Bengal and EEIO. | K M Azam Chowdhury Wensheng Jiang Guimei Liu Md Kawser Ahmed Shaila Akhter | 2022 | Acta Oceanologica Sinica2022,41,4: | 1 |
| 14 | The fusion protein of peste des petits ruminants virus mediates biological fusion in the absence of hemagglutin-neuraminidase protein显示文摘 | Shaguna S Shaila M S | 2001 | Virology2001,289,3: | 1 |
| 15 | Geographicaldistribution and epidemiology of PPR virus显示文摘 | SHAILA M S DAVID S FORYTH M A | 1996 | Virus Res1996,43,2: | 1 |
| 16 | Racial and ethnic disparities in gastric cancer outcomes: More important than surgical technique?显示文摘Racial and ethnic disparities in cancer care are major public health concerns and their identification is necessary to develop interventions to eliminate these disparities. We and others have previously observed marked disparities in gastric cancer outcomes between Eastern and Western patients. These disparities have long been attributed to surgical technique and extent of lymphadenectomy. However, more recent evidence suggests that other factors such as tumor biology, environmental factors such as Helicobacter pylori infection and stage migration may also significantly contribute to these observed disparities. We review the literature surrounding disparities in gastric cancer and provide data pertaining to potential contributing factors. | Shaila J Merchant Lily Li Joseph Kim | 2014 | World Journal of Gastroenterology2014,20,33: | 1 |
| 17 | The hemagglutinin neuraminidase protein of peste des petits ruminants virus is biologically active when transi- ently expressed in mammalian cells 显示文摘 | Seth S Shaila M S | 2001 | Virus Research2001,75,11: | 1 |
| 18 | The hemagglutinin-neuraminidase protein of pestedes petits ruminants virus is biologically active when transiently ex- pressed in mammalian ceils 显示文摘 | Seth S Shaila M S | 2001 | Virus Research2001,75,2: | 1 |
| 19 | Proliferation of the human periodontal ligament fibroblast by laser biostimulation: an in vitro study显示文摘 | Ahuja Shelly Kothiwale Shaila Bhat Kishore | 2006 | Proc SPIE2006,6140,: | 1 |
| 20 | RNA triphosphatase and guanylyl transferase actitvties are associated with the RNA polymerase protien L of rinderpest virus 显示文摘 | Gopinath M Shaila M S | 2009 | J G Virol2009,90,: | 1 |