26 results on '"Scholz, Tasja"'
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2. An autosomal-dominant childhood-onset disorder associated with pathogenic variants in VCP
3. Exomsequenzierung bei Kindern und Jugendlichen mit seltenen Erkrankungen: Aktueller Stand, Herausforderungen, Perspektiven
4. Expanding the clinical spectrum of COL2A1 related disorders by a mass like phenotype
5. De novo loss-of-function variants in X-linked MED12 are associated with Hardikar syndrome in females
6. TMCO3, a Putative K+:Proton Antiporter at the Golgi Apparatus, Is Important for Longitudinal Growth in Mice and Humans
7. Pro-inflammatory cytokine ratios determine the clinical course of febrile neutropenia in children receiving chemotherapy
8. Structural deficits in key domains of Shank2 lead to alterations in postsynaptic nanoclusters and to a neurodevelopmental disorder in humans
9. TMCO3, a Putative K+:Proton Antiporter at the Golgi Apparatus, Is Important for Longitudinal Growth in Mice and Humans.
10. Innate immune responses to Stenotrophomonas maltophilia in immunocompromised pediatric patients and the effect of taurolidine
11. Exomsequenzierung bei Kindern und Jugendlichen mit seltenen Erkrankungen
12. Griscelli Syndrome Type 1: When the Hair Becomes Gray in Children
13. De novo FZR1 loss-of-function variants cause developmental and epileptic encephalopathies
14. Prevalence and clinical prediction of mitochondrial disorders in a large neuropediatric cohort
15. The modulatory effect of lipids and glucose on the neonatal immune response induced by Staphylococcus epidermidis
16. De novo FZR1 loss-of-function variants cause developmental and epileptic encephalopathies including Myoclonic Atonic Epilepsy
17. Additional file 1 of Pro-inflammatory cytokine ratios determine the clinical course of febrile neutropenia in children receiving chemotherapy
18. Additional file 2 of Pro-inflammatory cytokine ratios determine the clinical course of febrile neutropenia in children receiving chemotherapy
19. Whole-Exome Sequencing in Critically Ill Neonates and Infants: Diagnostic Yield and Predictability of Monogenic Diagnosis
20. De novo FZR1 loss-of-function variants cause developmental and epileptic encephalopathies.
21. Prevalence and clinical prediction of mitochondrial disorders in a large neuropediatric cohort.
22. De novo loss-of-function variants in X-linked MED12are associated with Hardikar syndrome in females
23. The modulatory effect of lipids and glucose on the neonatal immune response induced by Staphylococcus epidermidis
24. Innate immune responses to Stenotrophomonas maltophiliain immunocompromised pediatric patients and the effect of taurolidine
25. TMCO3, a Putative K + :Proton Antiporter at the Golgi Apparatus, Is Important for Longitudinal Growth in Mice and Humans.
26. De novo FZR1 loss-of-function variants cause developmental and epileptic encephalopathies.
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