Pediatric microsurgery procedures possess various difficulties when compared with adults. However, both free tissue transfers and replantation of the amputated parts show remarkable success rates in children. The concerns of survival of the flaps and the amputated parts have shifted to the function of these in the adulthood. Several key points and hints allow successfull rates for both survival and function. We present a series of microsurgical procedures both free tissue transfers (12 patients) and digital replantations (13 patients). Free tissue transfers included toe-to-hand transfers in 5, latissimus dorsi flaps in 4, fibular flaps in 4, and anterolateral thigh flaps in 2 patients. Thirteen patients involved 17 digital replantations. The survival rate was less in the replantation group (58.75%) than in the free tissue transfer group (93%). Both the functional and the cosmetic results were promising. The follow-up period was between 1 and 6 years (mean 37 months) for the free tissue transfer group and 1-5 years (mean 20 months) for the replantation group. The major technical difficulties include the age group of 0-2 years. Aside from these the high capacity of regeneration and the improved learning capacity increase the feasibility of the microsurgical procedures proceeded among children.
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http://dx.doi.org/10.1002/micr.20458 | DOI Listing |
Ann Biomed Eng
January 2025
Department of Biomedical Engineering, Yildiz Technical University, Esenler, 34220, Istanbul, Türkiye.
Titanium (Ti)-based materials are favored for hard tissue applications, yet their bioinertness limits their success. This study hypothesizes that functionalizing Ti materials with chitosan nano/microspheres and calcitriol (VD) will enhance their bioactivity by improving cellular activities and mineralization. To test this, chitosan particles were applied uniformly onto Ti surfaces using electrophoretic deposition (EPD) at 20 V for 3 minutes.
View Article and Find Full Text PDFNat Commun
January 2025
Department of Computational Biology and Medical Science, Graduate School of Frontier Sciences, the University of Tokyo, Tokyo, Japan.
Spatial transcriptomics is an essential application for investigating cellular structures and interactions and requires multimodal information to precisely study spatial domains. Here, we propose STAIG, a deep-learning model that integrates gene expression, spatial coordinates, and histological images using graph-contrastive learning coupled with high-performance feature extraction. STAIG can integrate tissue slices without prealignment and remove batch effects.
View Article and Find Full Text PDFMicrosurgery
January 2025
Plastic, Reconstructive, and Aesthetic Surgery Unit, Nantes University Hospital, Nantes, France.
Introduction: Reconstructing large bone defects for lower limb salvage in the pediatric population remains challenging due to complex oncological or septic issues, limited surgical options, and lengthy procedures prone to complications. The vascularized double-barreled fibula free flap is pivotal for reconstructing large bones. In this article, we report our experience with this technique in the surgical management of pediatric tibial bone defects.
View Article and Find Full Text PDFHPB (Oxford)
December 2024
Institute for Clinical Research (IKF), Semmelweis University, Campus Hamburg, Germany; Division of HPB Surgery, Department of Surgery, Asklepios Hospital Barmbek, Hamburg, Germany. Electronic address:
Background: The two-stage surgical technique of associated liver partition and portal vein ligation for staged hepatectomy (ALPPS) enables extensive liver resection and promotes future liver remnant regeneration (FLR), in part by inhibiting the Hippo signalling pathway. Its main effector, Yes-associated protein (YAP), has low intrinsic transcriptional activity and requires the transcription enhanced associated domain factor (TEAD) family members as cofactors for target gene transcription. We evaluated the intracellular localization and expression of TEAD1-4, hypothesized to regulate the activity of YAP and, consequently, liver regeneration.
View Article and Find Full Text PDFJ Immunother Cancer
January 2025
Department of Oncology, Taipei Veterans General Hospital, Taipei, Taiwan
Background: Cholangiocarcinoma is a challenging malignancy with limited responses to conventional therapies, particularly immune checkpoint inhibitor therapy. Tumor-infiltrating lymphocytes (TILs) and tertiary lymphoid structures (TLSs) are key components of the tumor microenvironment (TME) and have been implicated in the immune response to cancer. However, the role and difference of TLSs and TILs in patients with cholangiocarcinoma remains unclear.
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