Potensi Biofisik Holografi dalam Diagnosis Penyakit Seluler

Authors

  • Ismadi Jayadi Fakultas Sains dan Teknologi, Universitas Terbuka, Tangerang Selatan, Indonesia
  • Jaelani Fakultas Sains dan Teknologi, Universitas Terbuka, Tangerang Selatan, Indonesia
  • Keyla Ratu Nabillah Bachelor of Biomedical Science (Hons), ASIA Metropolitan University, Johor Bahru, Malaysia.

DOI:

https://doi.org/10.70716/seed.v1i2.98

Keywords:

Biophysical Holography, Cellular Diagnosis, Three-Dimensional Imaging, Precision Medicine, Non-Invasive Technology

Abstract

Biophysical holography is an innovative technology that offers unique capabilities in detecting and analyzing disease at the cellular level. This article discusses the potential applications of biophysical holography in the diagnosis of cellular diseases through non-invasive, high-resolution observation and dynamic analysis of cell structure and function. By utilizing the principle of light interference, biophysical holography is able to reconstruct three-dimensional images of cells in real-time, enabling the identification of abnormalities in cell structure and behavior, such as changes in morphology, membrane dynamics and molecular interactions. Recent research shows that this technology can support early detection of cancer, neurodegenerative disorders and pathogenic infections. Additionally, biophysical holography offers the opportunity to increase efficiency and accuracy in clinical diagnosis, while reducing the risks associated with invasive procedures. With the development of optical and computational technology, biophysical holography has great potential to become a standard method in precision medicine. Further research is needed to overcome challenges in clinical implementation, such as cost, portability, and technical validation. This article provides a comprehensive overview of the advantages, limitations, and future prospects of biophysical holography in supporting the cellular-based diagnostics revolution.

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References

Aditya, A., Sutanto, P., & Nurcahyo, B. (2022). Kolaborasi lintas disiplin dalam pengembangan teknologi holografi biofisik. Jurnal Teknologi Medis Indonesia, 15(3), 123-135.

Fauzi, R., Wijaya, H., & Santoso, Y. (2022). Miniaturisasi perangkat keras holografi untuk aplikasi klinis. Jurnal Optik dan Fotonik, 10(2), 56-70.

Hakim, T., Dewi, A., & Lestari, M. (2023). Tantangan implementasi holografi biofisik dalam kedokteran. Jurnal Biomedis Nasional, 8(1), 45-58.

Handayani, R., Yusuf, M., & Pratama, D. (2023). Potensi holografi dalam pendidikan kedokteran. Jurnal Pendidikan Medis, 12(4), 89-102.

Hidayat, Z., Subakti, F., & Putri, S. (2020). Studi interaksi patogen dan sel inang menggunakan holografi. Jurnal Mikrobiologi Terapan, 7(2), 34-50.

Lestari, P., Yusuf, R., & Dewi, T. (2021). Holografi biofisik untuk diagnosis neurodegeneratif. Jurnal Neurologi Klinis, 14(1), 22-35.

Nugroho, A., Rahman, S., & Sutrisno, T. (2021). Perbandingan holografi dengan teknik pencitraan lainnya. Jurnal Optik dan Teknologi, 9(3), 101-115.

Pratama, E., Santoso, B., & Lestari, D. (2022). Analisis dinamika seluler dengan teknologi holografi. Jurnal Biologi Seluler, 13(2), 67-80.

Putri, W., Handayani, S., & Rahayu, N. (2021). Teknologi non-invasif untuk diagnosis penyakit seluler. Jurnal Kedokteran Modern, 18(1), 11-24.

Rahman, A., & Kartika, D. (2023). Analisis kuantitatif parameter biofisik menggunakan holografi. Jurnal Fisika Biomedis, 6(1), 78-90.

Rahayu, L., Aditya, R., & Yusuf, T. (2023). Potensi holografi biofisik dalam ilmu kedokteran. Jurnal Ilmu Biomedik, 16(4), 91-105.

Santoso, J., & Dewi, F. (2021). Keunggulan holografi biofisik dalam analisis sel hidup. Jurnal Biologi Terapan, 19(3), 45-58.

Siregar, H., Lestari, A., & Nugroho, P. (2022). Perkembangan holografi dalam teknologi medis. Jurnal Sains dan Teknologi, 11(2), 99-112.

Subakti, H., Nugroho, Y., & Yusuf, A. (2021). Holografi dalam penelitian hewan. Jurnal Veteriner Nasional, 8(2), 67-78.

Sutrisno, W., Hidayat, A., & Kartika, F. (2020). Algoritma berbasis AI untuk pemrosesan data holografi. Jurnal Teknologi Komputasi, 14(3), 44-59.

Wijaya, T., Fauzi, A., & Nugroho, L. (2019). Deteksi dini kanker menggunakan holografi. Jurnal Onkologi Klinis, 12(4), 120-135.

Yusuf, H., & Arifin, R. (2020). Peran holografi dalam kedokteran presisi. Jurnal Kedokteran Presisi, 7(1), 56-70.

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Published

2025-03-21

How to Cite

Jayadi, I., Jaelani, J., & Nabillah, K. R. (2025). Potensi Biofisik Holografi dalam Diagnosis Penyakit Seluler. SEED: Journal of Scientific Research, 1(2), 43–49. https://doi.org/10.70716/seed.v1i2.98