What is the translation of " NEURAL STEM CELLS " in Slovenian?

['njʊərəl stem selz]
['njʊərəl stem selz]
nevralne matične celice
neural stem cells
nevronske matične celice
neural stem cells

Examples of using Neural stem cells in English and their translations into Slovenian

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Neural stem cells- differentiate into neurons, oligodendrocytes, and astrocytes.
Nevralne matične celice- razlikovati v nevrone, oligodendrocite in astrocite.
Researchers explain how neural stem cells create new and varied neurons.
Raziskovalci pojasnjujejo, kako nevronske matične celice ustvarjanje novih in drugačnih nevrone.
They also hope to examine other cell types infected by Zikavirus,such as neural stem cells.
Upajo tudi na druge vrste celic, okužene z virusom Zika,kot so nevronske matične celice.
UO study explains how neural stem cells can create new and varied neurons.
Raziskovalci pojasnjujejo, kako nevronske matične celice ustvarjanje novih in drugačnih nevrone.
Doe lab have found a novel role of thishormone in regulating temporal gene transitions within neural stem cells.
Doe so odkrile novo vlogo tegahormona pri uravnavanju časovnih prehodov gena znotraj nevralnih matičnih celic.
With PAR3 out of the picture, neural stem cells and progenitors are free to differentiate into new neurons and glia.
Z PAR3 izven slike se lahko nevronske matične celice in predniki prosto razlikujejo v novih nevronih in gliji.
Studies have shown that it stimulates neurogenesis of human hippocampus-derived neural stem cells in vivo and vitro.
Študije so pokazale, da stimulira nevrogenezo nevralnih matičnih celic, ki izvirajo iz hipokampusa, in vivo in vitro.
Neural stem cells are uniquely poised to treat tumors because the cells are attracted to areas of abnormality.”.
Nevronske matične celice so edinstveno pripravljene na zdravljenje tumorjev, ker se celice privlačijo na področja nenormalnosti.".
And a Norwegian group has proved that even in adults, neural stem cells have the power to become functioning neurons.
Norveška skupina je dokazala, da imajo celo pri odraslih živčne matične celice moč, da postanejo delujoči nevroni.
The group considered using embryonic stem cells, but realized they might lead to tumors and dyskinesia,so they tried neural stem cells.
Skupina je razmišljala o uporabi embrionalnih matičnih celic, vendar so ugotovili, da lahko povzročijo tumorje in diskinezijo,zato so poskusili nevralne matične celice.
Another group of scientistshas used the remarkable ability of human neural stem cells to home in on harmful brain tumors.
Druga skupina znanstvenikovje uporabila izjemno sposobnost človeških nevronskih matičnih celic, da bi se domovale v škodljivih možganskih tumorjih.
The team also used grafts of human neural stem cells in injured rats with similar results, demonstrating the potential of the success of this method across species.
Ekipa je prav tako uporabila človeške nevronske matične celice, kar je prineslo podobne razultate, ki dokazujejo potencial za uspeh te metode pri vseh vrstah.
Boutin was interested in building working 3-Dcell cultures to study how adult neural stem cells develop.
Boutin je bil zainteresiran za gradnjo delovnih 3-Dceličnih kultur, da bi preučil, kako se razvijajo nevralne matične celice odraslih.
Iver Langmoen, MD, and his colleagues harvested the adult neural stem cells from the ventricular zone of patients undergoing brain surgery.
Iver Langmoen, MD, in njegovi kolegi so zbrali odrasle nevralne matične celice iz ventrikularnega območja pri bolnikih, ki so imeli operacijo na možganih.
The three main types ofmultipotent stem cells are hematopoietic stem cells, neural stem cells, and mesenchymal stem cells..
Tri glavne vrste multipotentnih matičnihcelic so hematopoetske matične celice, nevralne matične celice in mezenhimske matične celice..
By studying the embryo neural stem cells of mice in a petri dish, Lu and his colleagues discovered that a protein called SMEK1 promotes the differentiation of neural stem and progenitor cells..
Z raziskavo zgodnjih mišjih zarodnih nevronskih matičnih celic v petrijevki sta Lu in njegovi kolegi odkrili, da protein, imenovan SMEK1, spodbuja razlikovanje živčnih in stegnih celic..
Evan Snyder, MD, PhD, of the Burnham Institute in San Diego,and his colleagues at Yonsei University in South Korea implanted neural stem cells to adult mice and watched as they attacked the brain tumors.
Evan Snyder,dr. Med., Inštituta Burnham v San Diegu innjegovi sodelavci na Univerzi Yonsei v Južni Koreji so odraslim mišim vsadili nevralne matične celice in opazovali, kako napadajo možganske tumorje.
By studying early mouse embryo neural stem cells in a petri dish, Lu and his colleagues discovered that a protein called SMEK1 promotes the differentiation of neural stem and progenitor cells..
Z raziskavo zgodnjih mišjih zarodnih nevronskih matičnih celic v petrijevki sta Lu in njegovi kolegi odkrili, da protein, imenovan SMEK1, spodbuja razlikovanje živčnih in stegnih celic..
A University of Plymouth study published in the journal Cell Reports in June backs these claims,as it found that neural stem cells could be used to"wake up" and produce new nerve cells in the brain.
Študija Univerze v Plymouthu, objavljena v junijski reviji Cell Reports, podpira te trditve, saj je ugotovila,da bi lahko nevronske matične celice uporabili za"prebujanje" in proizvodnjo novih živčnih celic v možganih.
The researchers hope to explore the possibility of autotransplantation, in which neural stem cells gathered from the brain of a patient could be multiplied in the lab and then returned to that person's brain.
Raziskovalci upajo, da bodo raziskali možnost avtotransplantacije, v kateri bi se nevralne matične celice, zbrane iz možganov pacienta, lahko pomnožile v laboratoriju in nato vrnile v možgane te osebe.
Embryonic stem cells, umbilical cord stem cells, and induced pluripotent stem cells are thetypes of pluripotent stem cells while hematopoietic stem cells, neural stem cells, and mesenchymal stem cells are multipotent stem cells..
Embrionalne matične celice, izvorne celice iz popkovine in inducirane pluripotentne matične celice sovrste pluripotentnih matičnih celic, medtem ko so hematopoetske matične celice, nevralne matične celice in mezenhimske matične celice multipotentne matične celice..
A University of Plymouth study published in the journal Cell Reports in June found that neural stem cells could be used to"wake up" and produce new neurons(nerve cells⁣ ) and surrounding glial cells in the brain.
Študija Univerze v Plymouthu, objavljena v junijski reviji Cell Reports, podpira te trditve, saj je ugotovila, da bi lahko nevronske matične celice uporabili za“prebujanje” in proizvodnjo novih živčnih celic v možganih.
Researchers apply brainpower to understanding neural stem cell differentiation.
Raziskovalci uporabljajo možgansko silo za razumevanje diferenciacije nevronskih matičnih celic.
The underlying link between thesefeatures could be the group of embryonic stem cells called the neural crest, suggest the authors.
Temeljna povezava med temi funkcijami bi lahko bila skupina izvornih celic zarodkov, imenovane nevronski greben, predlagajo avtorji.
The stem cells, called neural progenitor cells, were taken from rat embryos and directed to develop as spinal cord tissue.
Matične celice, imenovane nevronske matične celice, so bile odvzete iz podganjih zarodkov in usmerjene v razvoj tkiva hrbtenjače.
Neural stem and progenitor cells offer tremendous promise as a future treatment for neurodegenerative disorders, and understanding their differentiation is the first step towards harnessing this therapeutic potential.
Neuronske steblo in progenitorne celice ponujajo izjemno obljubo kot prihodnje zdravljenje nevrodegenerativnih motenj, razumevanje njihove diferenciacije pa je prvi korak k izkoriščanju tega terapevtskega potenciala.
Neural stem and progenitor cells offer tremendous promise as a future treatment for neurodegenerative disorders, and understanding their differentiation is the first step towards co-opting the therapeutic potential of these cells..
Neuronske steblo in progenitorne celice ponujajo izjemno obljubo kot prihodnje zdravljenje nevrodegenerativnih motenj, razumevanje njihove diferenciacije pa je prvi korak k izkoriščanju tega terapevtskega potenciala.
The researchers donned their thinking caps to explain how neural stem and progenitor cells differentiate into neurons and related cells called glia.
Raziskovalci so podali svoje razmišljanje, da bi razložili, kako se nevronska stebla in progenska celica razlikujejo v nevronih in sorodnih celicah, imenovanih glia.
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