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Year 2020, Volume: 2 Issue: 3, 185 - 193, 30.11.2020
https://doi.org/10.47933/ijeir.768552

Abstract

References

  • [1] Şaşmazel, H. Özkan, O. Mumcu, N. (2013). Dünden Bugüne Protezler. Bilim Teknik Dergisi,824, 62-65.
  • [2] Şenli, K. (2011). Emg (Elektromiyografi) Kontrollü Protez Kol Tasarımı. (Yüksek Lisans Tezi, Dokuz Eylül Üniversitesi Fen Bilimleri Enstitüsü)
  • [3] Demircioglu, P., Böğrekci, I., Sucuoglu, H. S., Güven, E. (2020) The Relationship Between The Fusion Temperature And Dimensıonal Accuracy of 3D Prınted Parts. Sigma, 38.1: 21-28.
  • [4] Çelebi, A. (2019) Investigation of fused deposition modeling processing parameters of 3D PLA specimens by an experimental design methodology. Materials Testing, 61.5: 405-410.
  • [5] Ülkir, O. Ertugrul, İ.(2020). Mikro Kiriş Uzunluğu Değişiminin Deformasyona Etkisinin Araştırılması. Avrupa Bilim ve Teknoloji Dergisi,(18), 136-141.
  • [6] Cinal, Ş., Çelik, M. S., Şahin, İ., Tepe, C., Eminoğlu, İ. (2016). Profitez El Simülatörü Tasarımı Design of Prosthetic Hand Simulator, Tıp Teknolojileri Kongresi (TıpTekno’16) 27-29 Ekim 2016, Antalya, 241-244.
  • [7] Kaya, Z. E. (2019). Eksik Tahrikli El Protezi Geliştirme Platformu Tasarımı ve Yapay Sinir Ağları Tabanlı Denetimi. Hacettepe Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
  • [8] Isler, Y., Isler, O. (2019). Çok Fonksiyonlu Protez El Hareketleri İçin Uzman Sistem Tasarımı. Karaelmas Science and Engineering Journal, 9(2), 237-243.
  • [9] Isler, Y. Usta, Y., Çelik, Y. Ghosheh, M. Isler, (2017). The Control of 3D printed 3 Hooked Myoelectric Hand Prosthesis with sEMG Signals, ASYU-2017.
  • [10] Taşar, B. (2016). Control of the multifunctional prosthetic hand simulator via EMG signals, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
  • [11] Ten Kate, J., Smit, G., Breedveld, P. (2017). 3D-printed upper limb prostheses: a review. Disability and Rehabilitation: Assistive Technology, 12(3), 300-314.
  • [12] Cabibihan, J. J., Abubasha, M. K., Thakor, N. A. (2018). method for 3-d printing patient-specific prosthetic arms with high accuracy shape and size. IEEE Access, 6, 25029-25039.
  • [13] Aksoy, B., Ghazal, Z., Şenol, R., Ersoy, M. (2020). Ses ve Metin Olarak Girilen İşaret Dili Hareketlerinin Robot Kol Tarafından Gerçekleştirilmesi. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 8(1), 220-232.
  • [14] Inmoov, Handn and forarm, https://inmoov.fr/hand-and-forarm/ , Accessed 12.07.2020

DESIGN AND MANUFACTURING OF 3D PRINTERED PROSTHETIC HAND USING MUSCLE SIGNALS

Year 2020, Volume: 2 Issue: 3, 185 - 193, 30.11.2020
https://doi.org/10.47933/ijeir.768552

Abstract

The person who has challenges not meeting needs due to the loss of his / her physical, mental and sensorial abilities to a certain extent on account of birth or any reason is defined as 'disabled' if any care or rehabilitation is required. These people have difficulty adapting to social life. Prostheses have been developed to ensure this compatibility. Today, by measuring directly from the patient, the production in place of the organ lost by the patient is carried out suitably. In this study, It was carried out to control muscle signals with EMG sensor prosthetic hand manufactured by a 3D printer. The movement of the fingers was performed by processing the signals received from the EMG sensor with a microcontroller and transmitting them to the servo motors in the form of meaningful values. Findings obtained were evaluated by comparison.

References

  • [1] Şaşmazel, H. Özkan, O. Mumcu, N. (2013). Dünden Bugüne Protezler. Bilim Teknik Dergisi,824, 62-65.
  • [2] Şenli, K. (2011). Emg (Elektromiyografi) Kontrollü Protez Kol Tasarımı. (Yüksek Lisans Tezi, Dokuz Eylül Üniversitesi Fen Bilimleri Enstitüsü)
  • [3] Demircioglu, P., Böğrekci, I., Sucuoglu, H. S., Güven, E. (2020) The Relationship Between The Fusion Temperature And Dimensıonal Accuracy of 3D Prınted Parts. Sigma, 38.1: 21-28.
  • [4] Çelebi, A. (2019) Investigation of fused deposition modeling processing parameters of 3D PLA specimens by an experimental design methodology. Materials Testing, 61.5: 405-410.
  • [5] Ülkir, O. Ertugrul, İ.(2020). Mikro Kiriş Uzunluğu Değişiminin Deformasyona Etkisinin Araştırılması. Avrupa Bilim ve Teknoloji Dergisi,(18), 136-141.
  • [6] Cinal, Ş., Çelik, M. S., Şahin, İ., Tepe, C., Eminoğlu, İ. (2016). Profitez El Simülatörü Tasarımı Design of Prosthetic Hand Simulator, Tıp Teknolojileri Kongresi (TıpTekno’16) 27-29 Ekim 2016, Antalya, 241-244.
  • [7] Kaya, Z. E. (2019). Eksik Tahrikli El Protezi Geliştirme Platformu Tasarımı ve Yapay Sinir Ağları Tabanlı Denetimi. Hacettepe Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
  • [8] Isler, Y., Isler, O. (2019). Çok Fonksiyonlu Protez El Hareketleri İçin Uzman Sistem Tasarımı. Karaelmas Science and Engineering Journal, 9(2), 237-243.
  • [9] Isler, Y. Usta, Y., Çelik, Y. Ghosheh, M. Isler, (2017). The Control of 3D printed 3 Hooked Myoelectric Hand Prosthesis with sEMG Signals, ASYU-2017.
  • [10] Taşar, B. (2016). Control of the multifunctional prosthetic hand simulator via EMG signals, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi.
  • [11] Ten Kate, J., Smit, G., Breedveld, P. (2017). 3D-printed upper limb prostheses: a review. Disability and Rehabilitation: Assistive Technology, 12(3), 300-314.
  • [12] Cabibihan, J. J., Abubasha, M. K., Thakor, N. A. (2018). method for 3-d printing patient-specific prosthetic arms with high accuracy shape and size. IEEE Access, 6, 25029-25039.
  • [13] Aksoy, B., Ghazal, Z., Şenol, R., Ersoy, M. (2020). Ses ve Metin Olarak Girilen İşaret Dili Hareketlerinin Robot Kol Tarafından Gerçekleştirilmesi. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 8(1), 220-232.
  • [14] Inmoov, Handn and forarm, https://inmoov.fr/hand-and-forarm/ , Accessed 12.07.2020
There are 14 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Articles
Authors

Emre Arpaçukuroğlu This is me 0000-0002-0949-5498

Samet Çakır This is me 0000-0001-8179-5156

Koray Özsoy 0000-0001-8663-4466

Publication Date November 30, 2020
Acceptance Date August 7, 2020
Published in Issue Year 2020 Volume: 2 Issue: 3

Cite

APA Arpaçukuroğlu, E., Çakır, S., & Özsoy, K. (2020). DESIGN AND MANUFACTURING OF 3D PRINTERED PROSTHETIC HAND USING MUSCLE SIGNALS. International Journal of Engineering and Innovative Research, 2(3), 185-193. https://doi.org/10.47933/ijeir.768552

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