Showing 1 - 20 results of 96 for search '((((espina OR pin) OR (spinal OR espinar)) OR ((spine OR sine) OR spike)) OR (pinna OR peng))', query time: 0.08s Refine Results
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    Development of a wireless current controlled stimulator for individuals with spinal cord injury by Masdar, Aizan

    Published 2016
    “…A spinal cord injury (SCI) has a severe impact on human life in general as well as on the physical status and condition. …”
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    Thesis
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    Ethnoichthyology of the First Record of Spine Bahaba (Bahaba polykladiskos) from Muar, Johor, Malaysia by Ilham-Norhakim, Mohd Lokman, Mohd Faudzir, Najmuddin, Hidayah, Haris, Othman, Nursyuhada, Ramli, Ramli, Sariyati Nur Hartini, Sariyati Nur Hartini, Rasul Abdullah, Halim Muhammad, Abdullah-Fauzi, Abdullah-Fauzi, Akmal, Fawwazah, Abdul-Latiff, Muhammad Abu Bakar

    Published 2024
    “…The Spine Bahaba (Bahaba polykladiskos), locally known as 'Gelama Tirusan,' is a member of the Sciaenidae fish family that is distributed across Southeast Asia, reaching as far as North Australia. …”
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    Article
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    Frequency reconfiguration mechanism of a PIN diode on a reconfigurable antenna for LTE and WLAN Applications by Mohd Shah, Shaharil, Daud, M. F. M., Zainal Abidin, Zuhairiah, Che Seman, Fauziahanim, Hamzah, Shipun Anuar, Katiran, Norshidah

    Published 2018
    “…In this work, a frequency reconfigurable antenna with a BAR63-02V Positive-Intrinsic-Negative (PIN) diode is designed, simulated and fabricated. …”
    Article
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    Enhancing Mechanical Characteristics of 6061-T6 with 5083-H111 Aluminum Alloy Dissimilar Weldments: A New Pin Tool Design for Friction Stir Welding (FSW) by Khalafe, Wazir Hassan, Sheng, Ewe Lay, Isa, Mohd Rashdan, Shamsudin, Shazarel

    Published 2024
    “…The experiment involved the welding of dissimilar aluminum alloys (AA5086-H111 to AA6061-T6) using a novel pin tool design with welding parameters such as holding time, pin tool length, tool spindle speed, and linear speed fine-tuned through a design of experiment (DOE) approach. …”
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    Article
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    Biomedical Analysis of Lateral Lumbar Interbody Fusion (LLIF) Cage for Lumbar Vertebrae by Zulkefli, Aiman Asiqin, Mazlan, Muhammad Hazli, Takano, Hiromitsu, Md Salleh, Nur Saliha, Jalil, Muhammad Hilmi

    Published 2023
    “…Objective: To develop the interbody cages implanted between the lumbar vertebrae by evaluating the strength of the bone model and the spinal cage. Materials and methods: In this study, finite element analysis (FEA) was applied using Mechanical Finder software (MF) to develop a 3D spine model lumbar vertebrae of the fourth and fifth lumbar vertebrae (L4 - L5) with various interbody cage designs, including honeycomb and rectilinear patterns with 50%, 70%, and 100% infill densities. …”
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    Article