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Cytogenetics

Cytogenetics

Shanthala Mallikarjunaiah; Jyoti Karunyaa R

Lap Lambert Academic Publishing
2025
pokkari
Acute myeloid leukemia (AML) is a category of diseases with a common aggressive clinical presentation but with a poor prognosis and management that is dependent upon the underlying genetic characteristics of the neoplasm. Genetic analysis of AML is essential, and conventional karyotyping is the key factor in diagnosis and management of AML. In this study, 65952 cases were studied from the data, 251 males (63.87%) and 142 females (36.13%). The range of age in this study was 2 months to 87 years. The maximum chromosomal abnormality was observed in males compared to females, median age of 31 years. Individual karyotypes showed that total 23 types of rare cytogenetic abnormalities were recorded. The analysis of AML data showed that incidence of ph+ve chromosome, complex karyotypes, tetraploid/near tetraploid (T/NT), t(1;2)(p35;p22), t(1;3)(p36.2;p26.2) t(10;12)(p15.2;q24.11), high hyperploidy, >=49 chromosomes; tetraploidy (4n = 92 chromosomes) are marker karyotype, which were of significance. del Y or X, 9,7; Abn19q13; Trisomy22, Core binding factor (CBF) (+ve AML). The highest % incidence of individual rare abnormalities in AML patients is t(1;2)(p35;p22), t(1;3)(p36.2;p26.2) t(10;12).
1D Semiconducting Nanostructures for Flexible and Large-Area Electronics

1D Semiconducting Nanostructures for Flexible and Large-Area Electronics

Dhayalan Shakthivel; Muhammad Ahmad; Mohammad R. Alenezi; Ravinder Dahiya; S. Ravi P. Silva

Cambridge University Press
2019
pokkari
Semiconducting nanostructures such as nanowires (NWs) have been used as building blocks for various types of sensors, energy storage and generation devices, electronic devices and for new manufacturing methods involving printed NWs. The response of these sensing/energy/electronic components and the new fabrication methods depends very much on the quality of NWs and for this reason it is important to understand the growth mechanism of 1D semiconducting nanostructures. This is also important to understand the compatibility of NW growth steps and tools used in the process with these unconventional substrates such as plastic that are used in flexible and large area electronics. Therefore, this Element presents at length discussion about the growth mechanisms, growth conditions and the tools used for the synthesis of NWs. Although NWs from Si, ZnO and carbon nanotubes (CNTs) are included, the discussion is generic and relevant to several other types of NWs as well as heterostructures.
Exploring New Horizons in Obstetrics & Gynecology

Exploring New Horizons in Obstetrics & Gynecology

Aswath Kumar R; Nilesh Balkawade; S Shantha Kumari; Tushar Kar; Parag Biniwale

Jaypee Brothers Medical Publishers
2018
nidottu
This compendium is an attempt to provide a precise and detailed outline of the many options available to young gynecologists (MD). It provides the latest information to today’s trainees, including fellowship courses, short diplomas, international traveling courses, and superspecialty training and among others.
Distribuzione dello stress nel complesso naso-mascellare

Distribuzione dello stress nel complesso naso-mascellare

Pradeep Subbaiah; Anitha S R Pradeep; Ravi Shanthraj

Edizioni Sapienza
2025
pokkari
Il FEM uno strumento di ricerca super potente che stato usato per studiare come si distribuisce lo stress nelle strutture craniofacciali naturali e ricostruite, che sono influenzate da campi di stress tridimensionali, difficili da valutare in altro modo. Il FEM tridimensionale usato in questo studio permette di simulare i sistemi di forza ortodontica applicati clinicamente e di analizzare come lo scheletro craniofacciale risponde ai carichi ortodontici in uno spazio tridimensionale. L'analisi FE ha i seguenti vantaggi: una tecnica non invasiva; la quantit effettiva di stress subita in un dato punto pu essere misurata teoricamente; il dente, l'osso alveolare, il legamento parodontale e le ossa craniofacciali possono essere simulati e le propriet dei materiali di queste strutture possono essere assegnate a quelle pi vicine che possono simulare la situazione clinica; lo spostamento del dente pu essere visualizzato graficamente; il punto di applicazione, l'intensit e la direzione di una forza possono essere facilmente variati per simulare la situazione clinica; la riproducibilit non influisce sulle propriet fisiche del materiale coinvolto e lo studio pu essere ripetuto tutte le volte che si vuole.
Rozklad naprezen w kompleksie nosowo-szczekowym

Rozklad naprezen w kompleksie nosowo-szczekowym

Pradeep Subbaiah; Anitha S R Pradeep; Ravi Shanthraj

Wydawnictwo Nasza Wiedza
2025
pokkari
FEM jest potężnym wsp lczesnym narzędziem badawczym, kt re zostalo wykorzystane do zbadania rozkladu naprężeń w strukturach czaszkowo-twarzowych, zar wno nieożywionych, jak i naturalnych oraz odbudowanych, na kt re oddzialują tr jwymiarowe pola naprężeń, kt re trudno jest ocenic w inny spos b. Tr jwymiarowa metoda FEM zastosowana w niniejszym badaniu zapewnia swobodę symulacji system w sil ortodontycznych stosowanych klinicznie i umożliwia analizę reakcji szkieletu czaszkowo-twarzowego na obciążenia ortodontyczne w przestrzeni tr jwymiarowej. Analiza FE ma następujące zalety: jest to technika nieinwazyjna; rzeczywista wielkośc naprężeń występujących w dowolnym punkcie może byc teoretycznie zmierzona; można symulowac zęby, kośc wyrostka zębodolowego, więzadlo ozębne i kości czaszkowo-twarzowe, a wlaściwości materialowe tych struktur można przypisac do najbliższego materialu, kt ry może symulowac sytuację kliniczną; możesz wizualizowac przemieszczenie zęba; punkt przylożenia, wielkośc i kierunek sily można latwo zmieniac, aby symulowac sytuację kliniczną; powtarzalnośc nie wplywa na wlaściwości fizyczne danego materialu, a badanie można powtarzac dowolną liczbę razy.
Distribuição do stress no complexo nasomaxilar

Distribuição do stress no complexo nasomaxilar

Pradeep Subbaiah; Anitha S R Pradeep; Ravi Shanthraj

Edicoes Nosso Conhecimento
2025
pokkari
A FEM uma ferramenta de pesquisa super poderosa que tem sido usada para estudar a distribui o de tens o em estruturas n o vivas, naturais e restauradas da face, afetadas por campos de tens o tridimensionais, que s o dif ceis de avaliar de outra forma. A FEM tridimensional usada neste estudo d a liberdade de simular sistemas de for a ortod ntica aplicados clinicamente e permite analisar a resposta do esqueleto craniofacial s cargas ortod nticas no espa o tridimensional. A an lise FE tem as seguintes vantagens: uma t cnica n o invasiva; a quantidade real de tens o experimentada em qualquer ponto pode ser teoricamente medida; o dente, o osso alveolar, o ligamento periodontal e os ossos craniofaciais podem ser simulados e as propriedades materiais dessas estruturas podem ser atribu das mais pr xima que possa simular a situa o cl nica; o deslocamento do dente pode ser visualizado graficamente; o ponto de aplica o, a magnitude e a dire o de uma for a podem ser facilmente variados para simular a situa o cl nica; a reprodutibilidade n o afeta as propriedades f sicas do material envolvido e o estudo pode ser repetido quantas vezes forem necess rias.
Spannungsverteilung im Nasen-Oberkiefer-Komplex

Spannungsverteilung im Nasen-Oberkiefer-Komplex

Pradeep Subbaiah; Anitha S R Pradeep; Ravi Shanthraj

Verlag Unser Wissen
2025
pokkari
Die FEM ist ein echt starkes modernes Forschungswerkzeug, mit dem man die Spannungsverteilung von nicht lebenden sowie nat rlichen und wiederhergestellten kraniofazialen Strukturen untersuchen kann, die von dreidimensionalen Spannungsfeldern beeinflusst werden, die sonst schwer zu beurteilen sind. Die in dieser Studie verwendete dreidimensionale FEM gibt uns die Freiheit, klinisch angewandte kieferorthop dische Kraftsysteme zu simulieren und die Reaktion des kraniofazialen Skeletts auf die kieferorthop dischen Belastungen im dreidimensionalen Raum zu analysieren. Die FE-Analyse hat folgende Vorteile: Es ist eine nicht-invasive Technik; die tats chliche Belastung an jedem beliebigen Punkt kann theoretisch gemessen werden; Zahn, Alveolarknochen, Parodontalligament und kraniofaziale Knochen k nnen simuliert werden, und die Materialeigenschaften dieser Strukturen k nnen denen zugeordnet werden, die der klinischen Situation am ehesten entsprechen; Die Verschiebung des Zahns kann grafisch dargestellt werden. Der Angriffspunkt, die Gr e und die Richtung einer Kraft k nnen leicht variiert werden, um die klinische Situation zu simulieren. Die Reproduzierbarkeit hat keinen Einfluss auf die physikalischen Eigenschaften des verwendeten Materials, und die Untersuchung kann beliebig oft wiederholt werden.
Répartition des contraintes dans le complexe naso-maxillaire

Répartition des contraintes dans le complexe naso-maxillaire

Pradeep Subbaiah; Anitha S R Pradeep; Ravi Shanthraj

Editions Notre Savoir
2025
pokkari
La FEM est un outil de recherche super puissant qui sert tudier la r partition des contraintes sur les structures cr nio-faciales naturelles et restaur es, ainsi que sur les structures non vivantes, qui sont soumises des champs de contraintes tridimensionnels, difficiles valuer autrement. La FEM tridimensionnelle utilis e dans cette tude permet de simuler librement les syst mes de forces orthodontiques appliqu s cliniquement et d'analyser la r ponse du squelette cr nio-facial aux charges orthodontiques dans un espace tridimensionnel. L'analyse par l ments finis pr sente les avantages suivants: c'est une technique non invasive; la quantit r elle de contrainte subie en un point donn peut tre mesur e th oriquement; la dent, l'os alv olaire, le ligament parodontal et les os craniofaciaux peuvent tre simul s et les propri t s mat rielles de ces structures peuvent tre attribu es celles qui se rapprochent le plus de la situation clinique; le d placement de la dent peut tre visualis graphiquement; le point d'application, l'amplitude et la direction d'une force peuvent tre facilement modifi s pour simuler la situation clinique; la reproductibilit n'affecte pas les propri t s physiques du mat riau concern et l' tude peut tre r p t e autant de fois que n cessaire.
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Joyful Creations

Blurb
2025
pokkari
This beautifully designed monogram initial letter notebook is great for writing down your thoughts, to-do lists, ideas, poems, plans, and goals. Lined notebooks can be used for various purposes such as a journal, planner, diary, and organizer. A compact 6"x 9" notebook which is spacious enough for your writing needs yet portable. Features: White paper Glossy monogram initial letter cover Joyful Creations offer a wide range of journals and notebooks that are suitable for back to school, home or office. Our journals make excellent gifts for birthdays, celebrations, Mother's Day, Father's Day, Valentine's Day, anniversaries, weddings, Secret Santa, bridal showers, Christmas and much more.
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Rwg

Rwg Publishing
2019
pokkari
College rule (also known as medium ruled paper) is the most common lined paper in use in the United States. It is generally used in middle school through to college and is also popular with adults. This is a good choice for teen or adult notebooks and composition books (known as exercise books outside the US).
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Prcvir Prints

Independently Published
2019
nidottu
Letter R Initial Monogram Notebook - with letter R on every page This elegant and chic lined writing notebook is ideal for writing your thoughts and inspiration, diary or journaling, creativity and personal notes.It has black cover in gold accent letter monogram. And it's stylish, handy, and fits in your purse.What's unique about this notebook? It has Exquisite Initial Letter on every page It's not just in the cover but you can find it in each page as well.Details: 110 Pages (55 Sheets)Portable size - 6" x 9" (15.24 x 22.86 cm), fits in personal bag or backpack, making it light weight and easy to carry aroundPrinted on white 60lb (90gsm) paperPaperback Glossy CoverBuy one for yourself or an adorable gift for all occasions to your family, loved-ones, friends, co-workers that can be used at home, school, business, or work.