Showing 21 - 40 results of 213 for search '((pinnata OR (pinned OR pined)) OR (spinal OR (pinn OR pin)))', query time: 0.15s Refine Results
  1. 21

    Wearable bio-adhesive metal detector array (BioMDA) for spinal implants

    Published 2025
    “…Dynamic tracking of spinal instrumentation could facilitate real-time evaluation of hardware integrity and in so doing alert patients/clinicians of potential failure(s). …”
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    Article
  2. 22

    Case Volume Justification of 3D-Navigated Spinal Procedures: A Cost-Benefit Analysis by Suri, Ikaasa, Suri, Mehr, Hu, James, Dedhia, Siddarth K., Yaeger, Kurt

    Published 2023
    “…Abstract 3D image-guidance platforms have transformed spinal surgery by enhancing visualization, increasing precision, and improving patient outcomes. …”
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    Article
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    Part I: Synthesis of sex pheromone of the pine sawfly, Macrodiprion Nemoralis. Part II: Synthetic studies towards the total synthesis of iriomoteolide-1a by Chin, Yen Jin

    Published 2011
    “…In the first part of this thesis, an elegant display of the CuI-Tol-BINAP-catalyzed asymmetric conjugate addition is established in the total synthesis of sex pheromone of the pine sawfly, Macrodiprion Nemoralis (SRRS-1). The key features of our strategy are: (I) one-pot DIBAL-H reduction–Wittig olefination, (II) olefin cross metathesis of fragment A and fragment B, and (III) a CuI-Tol-BINAP-catalyzed asymmetric conjugate addition using Grignard reagents in good yields and excellent stereoselectivities. …”
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    Thesis
  7. 27

    Using magnetic resonance relaxometry to evaluate the safety and quality of induced pluripotent stem cell-derived spinal cord progenitor cells by Tan, Jerome, Chen, Jiahui, Roxby, Daniel, Chooi, Wai H., Nguyen, Tan D., Ng, Shi Y., Han, Jongyoon, Chew, Sing Y.

    Published 2024
    “…Background The emergence of induced pluripotent stem cells (iPSCs) offers a promising approach for replacing damaged neurons and glial cells, particularly in spinal cord injuries (SCI). Despite its merits, iPSC differentiation into spinal cord progenitor cells (SCPCs) is variable, necessitating reliable assessment of differentiation and validation of cell quality and safety. …”
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    Article
  8. 28

    Induction of neuronal phenotypes from NG2+ glial progenitors by inhibiting epidermal growth factor receptor in mouse spinal cord injury by Ju, Peijun, Zhang, Si, Yeap, Yeeshan, Feng, Zhiwei

    Published 2013
    “…In this study, we showed that antagonizing epidermal growth factor receptor (EGFR) function with EGFR inhibitor caused a significant number of proliferative NG2+ glial progenitors to acquire neuronal phenotypes in contusive spinal cord injury (SCI), which presumably led to an accumulation of newly generated neurons and contributed to the improved neural behavioral performance of animals. …”
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    Journal Article
  9. 29

    Label-free assessment of differentiation efficiency in iPSC-derived spinal cord progenitor cells via Magnetic Resonance Relaxometry (MRR) by Tan, Jerome Zu Yao, Chen, Jiahui, Roxby, Daniel, Chooi, Wai Hon, Nguyen, Tan Dai, Ng, Shi-Yan, Chew, Sing Yian, Han, Jongyoon

    Published 2022
    “…In this study, human iPSCs derived from Cord Lining Endothelial cells were differentiated into Spinal-cord Progenitor Cells (SCPCs) through a 10-day process. …”
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    Conference Paper
  10. 30

    Effects of ifenprodil treatment on pain behaviour, inflammation, and nociceptive responses in the spinal cord of complete freund’s adjuvant-induced chronic polyarthritis rat by Noh, Ain’ Sabreena Mohd

    Published 2024
    “…Histopathological examination was performed on the ipsilateral ankle joint while the lumbar region of the spinal cord (L4-L5) was collected for ELISA, immunohistochemistry and RT-qPCR analyses. …”
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    Thesis
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