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11篇 您的检索式:作者名="Wachowiak A"
    题名 作者 年代 出处 被引量
1Direct observation of internal spin structure of magnetic vortex cores显示文摘WACHOWIAK A WIEBE J BODE M 2002Science2002,298,5593:1
2Direct observation of internal spin structure of masnetic vortex cores 显示文摘WACHOWIAK A WIEBE J BODE M 2002Science2002,298,5593:1
3Direct observa- tion of internal spin structure of magnetic vortex cores 显示文摘Wachowiak A Wiebe J Bode M 2002Science2002,298,5593:1
4Estimation of K distribution parameters using neural networks显示文摘Wachowiak M P Smol kov R Zurada J M Elmaghraby A S 2002IEEE Transactions on Biomedical Engineering2002,49,6:1
5Epstein - Barr virus (EBV) infection in B - cell non - Hodgkin's lymphomas in children: Virus latency and its correlation with CD21 and CD23 molecules显示文摘Kasprzak A Spachacz R Wachowiak J 2007Folia Histochem Cytobiol2007,45,3:1
6Direct observa- tion of internal spin structure of magnetic vortex cores显示文摘Wachowiak A Wiebe J Bode M 2002Science2002,298,5593:1
7Epstein-Barr virus (EBV) infection in B-cell non-Hodgkin's lymphomas in children: virus latency and its correlation with CD21 and CD23 molecules显示文摘Kasprzak A Spachacz R Wachowiak J 2007Folia Histochem Cytobiol2007,45,3:1
8Epstein - Barr virus (EBV) infection in B- cell non- Hodgkin's lymphomas'in children: Virus latency and its correlation with CD21 and CD23 molecules 显示文摘Kasprzak A Spachacz R Wachowiak J 2007Folia Histochem Cytnbio12007,45,3:1
9Cytokines and heart rate variability in patients with chrones heart failure 显示文摘Straburzynska - Migaj E Ochotny R Wachowiak - Bsszynska A 2005Kardiolpol2005,63,5:1
10Epstein-Barr virus (EBV) infection in B-cell non-Hodgkin's lymphomas in children: virus latency and its correlation with CD21 and CD23 molecules显示文摘Kasprzak A Spachacz R Wachowiak J 2007Folia Histochem Cytobio2007,45,3:1
11Molecular and paleo-climatic data uncover the impact of an ancient bottleneck on the demographic history and contemporary genetic structure of endangered Pinus uliginosa显示文摘With the current rate of biodiversity loss,conservation management practices require a comprehensive understanding of eco-evolutionary relationships,history,and genetic structure of species.Assessments of genetic diversity are crucial,especially in rare,endemic,or threatened forest tree species with small and isolated populations,such as peat bog pine(Pinus uliginosa N.).Here,we used a novel approach,combining genetic diversity assessment,ecological niche modeling,and population demography inference to explore the complex history of a few remnant populations of this endangered pine.To asses the relative influence of isolation and fragmentation on genetic diversity in the taxonomic context,the patterns of genetic variation found in P.uliginosa were contrasted with those observed in its close relatives with much bigger distribution ranges and larger populations(Pinus sylvestris,Pinus mugo,and Pinus uncinata).We found a similar level of genetic diversity across the species at nuclear loci but contrasting patterns of variability distribution at chloroplast markers.We detected the signatures of an ancient genetic bottleneck dated at around 26400 years ago,indicating a drastic reduction in the population size of P.uligionosa during the Last Glacial Maximum.In addition,we found substantial differentiation between current populations as a result of enhanced genetic drift during long-lasting isolation.The research suggests potential conservation management strategies for peat bog pine and emphasizes the importance of using complementary approaches for their successful development.Bartosz Łabiszak Julia Zaborowska Błażej Wójkiewicz Witold Wachowiak 2021Journal of Systematics and Evolution2021,59,3:0
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