Karl H Schneider
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Explore the profile of Karl H Schneider including associated specialties, affiliations and a list of published articles.
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15
Citations
141
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Recent Articles
1.
Fritz J, Moser A, Otahal A, Redl H, Teuschl-Woller A, Schneider K, et al.
Macromol Biosci
. 2025 Mar;
:e2400515.
PMID: 40047248
The human meniscus transmits high axial loads through the knee joint. This function is compromised upon meniscus injury or treatment by meniscectomy. 3D printing of meniscus implants has emerged as...
2.
Specht S, Rohringer S, Hager P, Grasl C, Schmitt A, Pach V, et al.
J Biomed Mater Res A
. 2024 Nov;
113(1):e37830.
PMID: 39610352
In vitro assessment of small-diameter synthetic vascular grafts usually uses standard cell culture conditions with early-passage cells. However, these conduits are mainly implanted in elderly patients and are subject to...
3.
Yuan J, Wang S, Yang J, Schneider K, Xie M, Chen Y, et al.
Int J Biol Macromol
. 2024 Mar;
266(Pt 1):130989.
PMID: 38508560
Wound dressings (WDs) are an essential component of wound management and serve as an artificial barrier to isolate the injured site from the external environment, thereby helping to prevent exogenous...
4.
Kral-Pointner J, Haider P, Szabo P, Salzmann M, Brekalo M, Schneider K, et al.
Arterioscler Thromb Vasc Biol
. 2024 Feb;
44(4):954-968.
PMID: 38385292
Background: Venous thromboembolism is a major health problem. After thrombus formation, its resolution is essential to re-establish blood flow, which is crucially mediated by infiltrating neutrophils and monocytes in concert...
5.
Schneider K, Oberoi G, Unger E, Janjic K, Rohringer S, Heber S, et al.
3D Print Med
. 2023 Sep;
9(1):27.
PMID: 37768399
Due to its high printing resolution and ability to print multiple materials simultaneously, inkjet technology has found wide application in medicine. However, the biological safety of 3D-printed objects is not...
6.
Yang J, Wang H, Zhou Y, Duan L, Schneider K, Zheng Z, et al.
Macromol Biosci
. 2023 May;
23(10):e2300105.
PMID: 37247409
The present study describes a silk microfiber reinforced meniscus scaffold (SMRMS) with hierarchical fibrous and porous structure made from silk fibroin (SF) and wool keratin (WK) using electrospinning and freeze-drying...
7.
Rohringer S, Grasl C, Ehrmann K, Hager P, Hahn C, Specht S, et al.
Adv Healthc Mater
. 2023 May;
12(23):e2300520.
PMID: 37173073
Clinically available small-diameter synthetic vascular grafts (SDVGs) have unsatisfactory patency rates due to impaired graft healing. Therefore, autologous implants are still the gold standard for small vessel replacement. Bioresorbable SDVGs...
8.
Liang M, Li F, Wang Y, Chen H, Tian J, Zhao Z, et al.
Bioengineering (Basel)
. 2023 Apr;
10(4).
PMID: 37106586
In-stent restenosis caused by tumor ingrowth increases the risk of secondary surgery for patients with abdominal aortic aneurysms (AAA) because conventional vascular stent grafts suffer from mechanical fatigue, thrombosis, and...
9.
Falkner F, Mayer S, Heuer M, Brune J, Helt H, Bigdeli A, et al.
Plast Reconstr Surg
. 2023 Apr;
153(1):130-141.
PMID: 37014963
Background: Free flap-based soft-tissue reconstruction comes at the price of donor-site morbidity. The arteriovenous loop (AVL) technique can overcome this issue by allowing for the de novo generation of axially...
10.
Rohringer S, Schneider K, Eder G, Hager P, Enayati M, Kapeller B, et al.
Mater Today Bio
. 2022 May;
14:100262.
PMID: 35509865
The endothelium plays an important regulatory role for cardiovascular homeostasis. Rapid endothelialization of small diameter vascular grafts (SDVGs) is crucial to ensure long-term patency. Here, we assessed a human placental...