DNA, Molecular biology, DNA repair, Genetics and Saccharomyces cerevisiae are his primary areas of study. His DNA research is included under the broader classification of Biochemistry. His Molecular biology research incorporates elements of Nijmegen breakage syndrome, Pyrimidine dimer, Point mutation, Wild type and Chromosome.
As a member of one scientific family, Paul H.M. Lohman mostly works in the field of DNA repair, focusing on DNA damage and, on occasion, Cell culture. His research in Genetics tackles topics such as Cell biology which are related to areas like Double Strand Break Repair, Cell growth, Yeast and Metabolism. Paul H.M. Lohman has researched Saccharomyces cerevisiae in several fields, including Mutant and Methyl methanesulfonate.
His primary scientific interests are in Molecular biology, DNA, DNA repair, Genetics and Mutant. Paul H.M. Lohman combines subjects such as Pyrimidine dimer, Nucleotide excision repair, DNA damage and Mutation, Gene with his study of Molecular biology. DNA is a subfield of Biochemistry that Paul H.M. Lohman investigates.
His DNA repair study combines topics from a wide range of disciplines, such as Cell culture, Nucleic acid sequence, Base pair, Schizosaccharomyces and Alkyltransferase. His biological study spans a wide range of topics, including Exon, Chinese hamster ovary cell, Loss of heterozygosity and Chinese hamster. His Nucleotide research integrates issues from Stereochemistry and Fast protein liquid chromatography.
His scientific interests lie mostly in Molecular biology, Mutant, Genetics, Mutation and Gene. His Molecular biology research incorporates themes from Homologous recombination, Mitotic crossover, Chromosome, Loss of heterozygosity and DNA repair. His research in DNA repair intersects with topics in Potency, Schizosaccharomyces and DNA damage.
The Mutant study combines topics in areas such as DNA-PKcs and Chinese hamster ovary cell. His Mutation research is under the purview of Biochemistry. Paul H.M. Lohman studies Nucleic acid sequence, a branch of DNA.
The scientist’s investigation covers issues in Molecular biology, Homologous recombination, Genetics, DNA damage and DNA repair. His work carried out in the field of Molecular biology brings together such families of science as Mutation, Gene and Nibrin, Chromosome instability. His work in Genome, Mitotic crossover and Mutant is related to Genetics.
His research integrates issues of Genetically modified mouse, DNA, Point mutation and Somatic cell in his study of Genome. A large part of his DNA studies is devoted to Nijmegen breakage syndrome. His research investigates the connection between DNA repair and topics such as Saccharomyces cerevisiae that intersect with problems in Cell cycle and Chromosome breakage.
A. R. Lehmann;S. Kirk-Bell;C. F. Arlett;M. C. Paterson
J. A. Gossen;W. J.F. De Leeuw;C. H.T. Tan;E. C. Zwarthoff
Tonnie Rijkers;Jody Van Den Ouweland;Bruno Morolli;Anton G. Rolink
Fichtinger-Schepman Am;van Oosterom At;Lohman Ph;Berends F
Albert Pastink;Jan C.J. Eeken;Paul H.M. Lohman
Martijn E. T. Dollé;Wendy K. Snyder;Jan A. Gossen;Paul H. M. Lohman
Michael van den Bosch;Paul H M Lohman;Albert Pastink
D. F. R. Muris;K. Vreeken;A. M. Carr;B. C. Broughton
H Vrieling;M L Van Rooijen;N A Groen;M Z Zdzienicka
Anne Marie J. Fichtinger-Schepman;Paul H.M. Lohman;Jan Reedijk
E. Mullaart;P.H.M. Lohman;F. Berends;J. Vijg
Len Roza;Kees J. M. van der Wulp;Sandra J. MacFarlane;Paul H. M.Lohman
Maria Kraakman-van der Zwet;Wilhelmina J.I Overkamp;Anna A Friedl;Binie Klein
Daan F.R. Muris;Olga Bezzubova;Jean-Marie Buerstedde;Kees Vreeken
Plooy Ac;van Dijk M;Berends F;Lohman Ph
Daan F R Muris;Kees Vreeken;Antony M Carr;Johanne M Murray
Petra P. H. Van Sloun;Jacob G. Jansen;Geert Weeda;Leon H. F. Mullenders
Adrie C.M. Plooy;Anne Marie J. Fichtinger-Schepman;Henk H. Schutte;Margriet van Dijk
M. D. Waters;H. F. Stack;A. L. Brady;P. H. M. Lohman
D. F. R. Muris;Kees Vreeken;Henning Schmidt;Kai Ostermann
If you think any of the details on this page are incorrect, let us know.
Pursuing a degree in Molecular Biology opens doors to a wide variety of interdisciplinary career paths. Many students explore fields that blend biology with human services, psychology, or counseling, as these areas often intersect in healthcare, research, and academic settings.
For those interested in understanding behavior alongside biological processes, child psychology masters programs offer in-depth knowledge in developmental psychology. If your career goals include providing mental health support, consider some of the cheapest masters in counseling online—an efficient way to gain credentials in counseling, often required in clinical settings.
Those eyeing a direct clinical route can look into the best online clinical psychology programs, which prepare graduates for roles in research or therapy, often at the intersection of biology and psychology. Additionally, earning a degree from online human services degree programs can accelerate entry into supportive roles within hospitals, research labs, or community organizations.
These flexible, accredited options make it easier to combine your passion for biology with careers in health, counseling, and public service.