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Cell and Tissue Kinetics
|
January 1, 1989
A mathematical model of erythropoiesis in mice and rats. Part 2: Stimulated erythropoiesis
H E Wichmann, M Loeffler, K Pantel, et al.
Annals of the Royal College of Surgeons of England
|
May 3, 2017
Second generation cephalosporin antibiotic prophylaxis and Clostridium difficile infection in hip and knee arthroplasty
K Al-Tawil, A Babu, M Loeffler, et al.
Cell Proliferation
|
September 24, 1998
A dynamic model of proliferation and differentiation in the intestinal crypt based on a hypothetical intraepithelial growth factor
T G Gerike, U Paulus, C S Potten, et al.
Infection
|
January 15, 2002
Nocardial brain abscess: observation of treatment strategies and outcome in Switzerland from 1992 to 1999
J M Loeffler, T Bodmer, W Zimmerli, et al.
Cell Proliferation
|
July 26, 2002
A continuum model to analyse spatial cell fluxes from positional labelling data applied to cell migration in oral mucosa
D Barthel, F A Meineke, C S Potten, et al.
Experimental Hematology
|
October 1, 1989
Hemopoiesis during thiamphenicol treatment. I. Stimulation of stem cells during eradication of intermediate cell stages
H Goris, M Loeffler, B Bungart, et al.
Experimental Hematology
|
October 1, 1989
Hemopoiesis during thiamphenicol treatment. II. A theoretical analysis shows consistency of new data with a previously hypothesized model of stem cell regulation
M Loeffler, B Bungart, H Goris, et al.
Cell and Tissue Kinetics
|
July 1, 1986
Analysis of the changes in the proportion of clustered labelled cells in epidermis
M Loeffler, C S Potten, A Ditchfield, et al.
Annals of Oncology : Official Journal of the European Society for Medical Oncology
|
December 1, 2007
Prognostic factors for hematotoxicity of chemotherapy in aggressive non-Hodgkin's lymphoma
M Ziepert, R Schmits, L Trümper, et al.
Experimental Hematology
|
April 1, 1993
Optimal erythroid cell production during erythropoietin treatment of mice occurs by exploiting the splenic microenvironment
W Nijhof, H Goris, B Dontje, et al.
Page
of 24
Search research articles
Search
Showing results (71-80 of 238) with videos related to
Sort By:
Page
of 24
Cell and Tissue Kinetics
|
January 1, 1989
A mathematical model of erythropoiesis in mice and rats. Part 2: Stimulated erythropoiesis
H E Wichmann, M Loeffler, K Pantel, et al.
Annals of the Royal College of Surgeons of England
|
May 3, 2017
Second generation cephalosporin antibiotic prophylaxis and Clostridium difficile infection in hip and knee arthroplasty
K Al-Tawil, A Babu, M Loeffler, et al.
Cell Proliferation
|
September 24, 1998
A dynamic model of proliferation and differentiation in the intestinal crypt based on a hypothetical intraepithelial growth factor
T G Gerike, U Paulus, C S Potten, et al.
Infection
|
January 15, 2002
Nocardial brain abscess: observation of treatment strategies and outcome in Switzerland from 1992 to 1999
J M Loeffler, T Bodmer, W Zimmerli, et al.
Cell Proliferation
|
July 26, 2002
A continuum model to analyse spatial cell fluxes from positional labelling data applied to cell migration in oral mucosa
D Barthel, F A Meineke, C S Potten, et al.
Experimental Hematology
|
October 1, 1989
Hemopoiesis during thiamphenicol treatment. I. Stimulation of stem cells during eradication of intermediate cell stages
H Goris, M Loeffler, B Bungart, et al.
Experimental Hematology
|
October 1, 1989
Hemopoiesis during thiamphenicol treatment. II. A theoretical analysis shows consistency of new data with a previously hypothesized model of stem cell regulation
M Loeffler, B Bungart, H Goris, et al.
Cell and Tissue Kinetics
|
July 1, 1986
Analysis of the changes in the proportion of clustered labelled cells in epidermis
M Loeffler, C S Potten, A Ditchfield, et al.
Annals of Oncology : Official Journal of the European Society for Medical Oncology
|
December 1, 2007
Prognostic factors for hematotoxicity of chemotherapy in aggressive non-Hodgkin's lymphoma
M Ziepert, R Schmits, L Trümper, et al.
Experimental Hematology
|
April 1, 1993
Optimal erythroid cell production during erythropoietin treatment of mice occurs by exploiting the splenic microenvironment
W Nijhof, H Goris, B Dontje, et al.
Page
of 24