Search

Your search keyword '"Luís, Ana Lúcia"' showing total 42 results

Search Constraints

Start Over You searched for: Author "Luís, Ana Lúcia" Remove constraint Author: "Luís, Ana Lúcia"
42 results on '"Luís, Ana Lúcia"'

Search Results

1. Portuguese Households Savings in Times of Pandemic: A Way to Better Resist the Escalating Inflation?

2. Strengthening Young Citizen Participation Through Participatory Budgeting: The Case of Cascais

5. Electrochemotherapy in dogs and cats–A review.

6. Ultrasound Landmarks in the Approach to the Common Peroneal Nerve in a Sheep Model—Application in Peripheral Nerve Regeneration

7. Developing Theoretical and Methodological Provisions for Improving the Mechanism of Labour Efficiency.

8. Long term performance evaluation of small-diameter vascular grafts based on polyvinyl alcohol hydrogel and dextran and MSCs-based therapies using the ovine pre-clinical animal model

11. Effects of Olfactory Mucosa Stem/Stromal Cell and Olfactory Ensheating Cells Secretome on Peripheral Nerve Regeneration

12. Peripheral Nerve Injury Treatments and Advances: One Health Perspective

16. Dextran-based tube-guides for the regeneration of the rat sciatic nerve after neurotmesis injury

18. Evaluation of PVA biodegradable electric conductive membranes for nerve regeneration in axonotmesis injuries: the rat sciatic nerve animal model

19. Neuromuscular Regeneration: Perspective on the Application of Mesenchymal Stem Cells and Their Secretion Products

20. Rússia : economia emergente ou reemergente?

21. Long term performance evaluation of small-diameter vascular grafts based on polyvinyl alcohol hydrogel and dextran and MSCs-based therapies using the ovine pre-clinical animal model

22. Evaluation of PVA biodegradable electric conductive membranes for nerve regeneration in axonotmesis injuries: the rat sciatic nerve animal model

23. O desenvolvimento de competências sociais em contexto pré-escolar

24. Dextran-based tube-guides for the regeneration of the rat sciatic nerve after neurotmesis injuryElectronic supplementary information (ESI) available: Table with data from the motor performance assessment (motor deficit determined from the extensor postural thrust – EPT) over the 20 weeks recovery period (T1–T20) (Table S1); table with data from nociceptive function assessment (withdrawal reflex time – WRL) over the 20 weeks recovery period (T1–T20) (Table S2); table with data from functional recovery through the static sciatic index (SSI) over the 20 weeks recovery period (T1–T20) (Table S3). See DOI: 10.1039/c9bm00901a

25. SHOULD THERE BE A MINIMUM WAGE DETERMINED BY THE UE28 GOVERNMENTS?

26. In vitro and in vivo evaluation of blood coagulation activation of polyvinyl alcohol hydrogel plus dextran-based vascular grafts

27. Biocompatibility and hemocompatibility of polyvinyl alcohol hydrogel used for vascular grafting- In vitro and in vivo studies

28. Use of hybrid chitosan membranes and human mesenchymal stem cells from the Wharton jelly of umbilical cord for promoting nerve regeneration in an axonotmesis rat model

29. Neuro-muscular Regeneration Using Scaffolds with Mesenchymal Stem Cells (MSCs) Isolated from Human Umbilical Cord Wharton's Jelly: Functional and Morphological Analysis Using Rat Sciatic Nerve Neurotmesis Injury Model

33. Biocompatibility and hemocompatibility of polyvinyl alcohol hydrogel used for vascular grafting-In vitroandin vivostudies

34. Cell Therapy with Human MSCs Isolated from the Umbilical Cord Wharton Jelly Associated to a PVA Membrane in the Treatment of Chronic Skin Wounds

36. Biomaterials and Stem Cell Therapies for Injuries Associated to Skeletal Muscular Tissues

38. In vitro and in vivo evaluation of blood coagulation activation of polyvinyl alcohol hydrogel plus dextran-based vascular grafts.

39. Studies on the biocompatibility of bacterial cellulose.

40. Evaluation of biodegradable electric conductive tube-guides and mesenchymal stem cells.

41. Biocompatibility and hemocompatibility of polyvinyl alcohol hydrogel used for vascular grafting--In vitro and in vivo studies.

42. Perspectives of employing mesenchymal stem cells from the Wharton's jelly of the umbilical cord for peripheral nerve repair.

Catalog

Books, media, physical & digital resources