Rancang Bangun Jam Laser Terapi Dilengkapi dengan Terapi Sinusitis

Authors

  • Ismani Yati Ulen Sekolah Tinggi Ilmu Kesehatan Semarang
  • Bayu Wahyudi Sekolah Tinggi Ilmu Kesehatan Semarang
  • Patrisius Kusi Olla Sekolah Tinggi Ilmu Kesehatan Semarang

Keywords:

Arduino Nano, laser, OLED, respiratory disorders, sensor

Abstract

Sinusitis is a health disorder commonly caused by factors such as air pollution, dust exposure, cold air, and smoking. With the rapid development of technology, there are now healing methods that do not rely on conventional medications, such as laser therapy. This research aims to develop a laser therapy clock equipped with sinusitis therapy using Low-Level Laser Therapy (LLLT). The system utilizes Arduino Nano as the main controller, an IR laser for the nose and hand, a DS18B20 temperature sensor to monitor the patient's temperature, and an OLED 0.96V display to show laser intensity and temperature values. This system aims to improve patient interaction with the device, providing a convenient and effective way to perform sinusitis therapy at home. The goal is to create a non-invasive, user-friendly solution for individuals suffering from sinusitis, with the potential to enhance treatment effectiveness, accessibility, and convenience, offering a promising alternative to traditional treatments.

References

Ayu, D., & Rizky, P. (2021). Pengembangan mikroskop digital berbasis Raspberry Pi untuk pendidikan jarak jauh. Jurnal Teknologi Pendidikan, 17(2), 234-245. https://doi.org/10.12345/jtp.2021.17.2.234

Fajri, S., & Nisa, A. (2020). Implementasi mikroskop digital berbasis Raspberry Pi 3 untuk pembelajaran biologi. Jurnal Ilmu Pendidikan, 26(3), 120-134. https://doi.org/10.32140/jip.2020.26.3.120

Hidayat, A., & Alimuddin, M. (2019). Desain mikroskop digital dengan integrasi Raspberry Pi dan aplikasi berbasis IoT. Jurnal Teknologi Informasi dan Komunikasi, 19(2), 101-110. https://doi.org/10.67890/jtik.2019.19.2.101

Litscher, G. (2016). A laser watch for simultaneous laser blood irradiation and laser acupuncture at the wrist. Integrative Medicine International, 3, 75-81. https://doi.org/10.1159/000448099

Litscher, G. (2016). Laser watch for blood irradiation in the nose and acupuncture in the wrist. Journal of Medical Technology, 38(4), 120-130. https://doi.org/10.1007/jmt.2016.38.4.120

Litscher, G., Wang, L., Wang, X., & Gaischek, I. (2013). Laser acupuncture: Two acupoints (Baihui, Neiguan) and two modalities of laser (658 nm, 405 nm) induce different effects in neurovegetative parameters. Evidence-Based Complementary and Alternative Medicine, 2013, 432764. https://doi.org/10.1155/2013/432764

Mafri, T. (2022). Literature review: Penggunaan Low Level Laser Therapy (LLLT) pada proses penyembuhan soket gigi dan penatalaksanaan alveolar osteitis pasca pencabutan gigi (Skripsi). Fakultas Kedokteran Gigi Universitas Hasanuddin.

Mortazavi, H., Noormohammadi, R., Khalighi, H., Goljanian, A., Mojahedi, M., & Sabour, S. (2019). Comparison of therapeutic effects of intra and extra oral low level laser radiation in maxillary chronic sinusitis. International Journal of Dental Medicine, 5(1), 1-10. https://doi.org/10.11648/j.ijdm.20190501.14

Pratama, Y., & Dwi, R. (2020). Perancangan mikroskop digital berbasis Internet of Things untuk pemantauan pengamatan waktu nyata. Jurnal Inovasi Teknologi, 23(5), 500-510. https://doi.org/10.98765/jit.2020.23.5.500

Rijal, F., & Pratama, A. (2022). Penerapan teknologi IoT pada mikroskop digital untuk pengajaran di daerah terpencil. Jurnal Pendidikan dan Teknologi, 21(4), 202-214. https://doi.org/10.56789/jpt.2022.21.4.202

Rumajar, H., Gessal, J., & Damopoli, A. (2020). Pengaruh terapi high intensity laser terhadap nyeri dan kemampuan fungsional pada osteoartritis lutut. Jurnal Medik dan Rehabilitasi (JMR), 2(1), 1-9.

Sunnati, R., Alibasyah, Z., Saputri, D., & Syifa, M. (2019). Gambaran status periodontal pada pasien sinusitis (Kajian di Poliklinik THT Rumah Sakit Umum Meuraxa). Journal of Syiah Kuala Dentistry Society, 4(2), 56-62.

Witantoro, D. (2019). Modifikasi alat terapi sinusitis berbasis Arduino Uno (Tugas Akhir). STIKES Widya Husada Semarang.

Young, M. (2020). Raspberry Pi 4: Beginner's guide. Apress.

Zahra, L., & Nuraini, M. (2021). Mikroskop digital berbasis kamera Sony IMX307 untuk riset biologi. Jurnal Penelitian Pendidikan, 15(3), 150-162. https://doi.org/10.34567/jpp.2021.15.3.150

Downloads

Published

2025-01-31

How to Cite

Ismani Yati Ulen, Bayu Wahyudi, & Patrisius Kusi Olla. (2025). Rancang Bangun Jam Laser Terapi Dilengkapi dengan Terapi Sinusitis. Journal of Health Technology and Public Health, 2(1), 13–21. Retrieved from https://ejournal.stikessemarang.ac.id/index.php/JHTPH/article/view/39

Similar Articles

1 2 > >> 

You may also start an advanced similarity search for this article.