Results 121 to 130 of about 1,133,300 (294)
Neurogenesis and apoptosis in the developmentally regulated loss of spinal cord regeneration. [PDF]
Unlike the adult mammal, the chick can successfully regenerate its spinal cord until embryonic day (E) 13. Multiple factors may contribute to the subsequent loss of regenerative capacity, although most research has concentrated on axonal re-growth ...
Whalley, K.A., Whalley, Katherine Ann
core
Organoid Brain‐Machine‐Interface Devices for Central Nervous System Repair
We envision organoid brain‐machine‐interface (Organoid‐BMI) devices as new biohybrid bidirectional communication pathways to connect the human CNS and the external world for personalized CNS repair and regeneration. ABSTRACT Central nervous system (CNS) repair and regeneration suffer from tremendous clinical challenges due to current limitations in ...
Yantao Xing +10 more
wiley +1 more source
On the basis of dichotomizing projection of the peripheral processes of the spinal ganglion cells to both the intercostal nerves and viscera(such as stomach and so on) in rats, the evoked potential was recorded from the ipsilateral greater splanchnic ...
赵建平 +4 more
doaj +2 more sources
An origami worm‐inspired robot achieves multimodal locomotion in confined pipelines through mechatronic integration that embeds actuation, control, and communication within each origami module. Large, reversible configuration and dimensional changes enable 25 gaits synthesized by a unified framework across peristaltic, inchworm, and wheel‐rolling modes
Qiwei Zhang +6 more
wiley +1 more source
ROS‐Targeted Nanomotor Therapy in OA: Cartilage Protection and Pain Relief
ROS‐responsive NM@MET nanomotors utilize elevated ROS in osteoarthritic joints to promote deep penetration into cartilage and synovium and enable sustained metformin release. By scavenging ROS, regulating NRF2/KEAP1 signaling, protecting chondrocytes, suppressing synovial inflammation, and attenuating nociceptive signaling, NM@MET alleviates pain and ...
Meng Zheng +19 more
wiley +1 more source
THBS1+ Macrophages Exacerbate Modic Changes via SDC4‐Dependent Activation of NLRP3 Inflammasome
The illustration of THBS1+ macrophages exacerbate MCs via SDC4‐dependent activation of the NLRP3 inflammasome. THBS1+ macrophage subpopulation was identified in MCs through single‐cell RNA sequencing. C. acnes and its metabolites activate THBS1 expression in macrophages via the TLR signaling pathway.
Xiangxi Kong +16 more
wiley +1 more source
Using single‐cell and spatial transcriptomics, we identified key regulators that govern cell differentiation involved in parasite development and egg laying in Schistosoma japonicum. This comprehensive study establishes a foundational resource for understanding schistosome biology, deciphers the regulatory programs underlying cell differentiation and ...
Zhigang Lu +9 more
wiley +1 more source
Autoantigen mRNA‐LNP Vaccination Drives Therapeutic Efficacy in Preclinical Models for Autoimmunity
Systemic and intramuscular delivery of autoantigen mRNA via lipid nanoparticles reprograms antigen‐presenting cells toward a mature, homeostatic state, driving antigen‐specific T cell exhaustion and providing therapeutic efficacy across autoimmune disease models.
Paulien Baeten +30 more
wiley +1 more source
Morphological study of spinal nerve roots
의학과/석사[한글] 성인 사체 30구에서 척수신경근 및 척수신경절의 크기와 각 부위에 따른 신경세근의 수, 수막에 쌓인 척수신경근기시부와 척추와의 관계에 대하여 조사 관찰하였다. 척수막에 싸인 척수신경근들의 형태는 전체적으로 보아 비교적 일정하였으며, 좌,우 길이의 차이는 5mm미만이었고, 전후 신경근은 하나의 수막낭에 싸여 척추강을 통과하였다.
나중환
core
Prostaglandin E2 catabolism in the spinal nerve roots of the cat
Catabolism of prostaglandin (PG) E2 was studied in homogenates of spinal cord and spinal nerve roots of the cat. Spinal roots enzymatically converted PGE2 to a product (metabolite I) with the chromatographic mobility of 15-keto-PGE2.
I. Bishai, F. Coceani
core +1 more source

