Artificial Intelligence dalam Praktik Kesehatan
DOI:
https://doi.org/10.32583/pskm.v14i3.2049Keywords:
artificial intelligence, keperawatan, kesehatanAbstract
Kecerdasan buatan atau artificial intelligence (AI) adalah sebuah teknologi baru disiplin ilmu yang menggunakan teknologi komputer. Kombinasi AI dan pengobatan dalam bidang keperawatan dan kesehatan telah banyak dilakukan dan dilaporkan. Apa saja dan bagaimana efektivitas penerapannya tentu sangat dibutuhkan guna mempersiapkan tenaga kesehatan dan system kesehatan yang lebih baik. Penelitian ini merupakan systematic review. Strategi pencarian: artikel dicari melalui basis data sejak Januari–November 2023. Pencarian diperoleh dari berbagai basis data seperti: PUBMED dan Google Scholar. Tidak ada upaya dari penulis untuk mencari secara spesifik artikel - artikel yang tidak terpublikasi. Kata kunci yang digunakan adalah “Artificial Intelligence AND Medicine”ATAU “Artificial Intelligence AND Nursing”, ATAU “Artificial Intelligence AND Medical therapy”. Terdapat 26 artikel yang telah diektraksi dari 497 artikel yang tersaring melalui database yang membahas penerapan AI dalam berbagai bidang keperawatan dan kedokteran yaitu: penegakan diagnose dalam bidang Radiologi, endoskopi, dan berbagai penggunaan USG, peningkatan keterampilan pembedahan dan teknologi bedah jarak jauh, peningkatan terapi pre dan pasca operasi, perbaikan dan efektifitas manajemen kesehatan, perbaruan system pembuatan obat dan vaksin, serta peningkatan kualitas penelitian.
References
Liu, P. R. (2021). Application of artificial intelligence in medicine: an overview. Current Medical Science, 41(6), 1105-1115.
Mintz Y, B. R. (2019). Introduction to artificial intelligence in medicine. Minim Invasive Ther Allied Technol, 28(2):73-81.
Kaul V, E. S. (2020). The history of artificial intelligence in medicine. Gastrointest Endosc, 92(4):807-812.
Kolker E, Ö. V. (2016). How Healthcare can refocus on its Super-Customers (Patients, n=1) and Customers (Doctors and Nurses) by Leveraging Lessons from Amazon, Uber, and Watson. OMICS, 20:329–33.
Wahl B, C.-G. A. (2018). Artificial intelligence (AI) and global health: how can AI contribute to health in resource-poor settings? BMJ Glob Health, 3: e000798.
Malik, P. P. (2019). Overview of artificial intelligence in medicine. Journal of family medicine and primary care, 8(7), 2328.
Sorrentino FS, J. G. (2020). Application of Artificial Intelligence in Targeting Retinal Diseases. Curr Drug Targets, 21(12):1208-1215.
Heydon P, E. C. (2021). Prospective evaluation of an artificial intelligence-enabled algorithm for automated diabetic retinopathy screening of 30 000 patients. Br J Ophthalmol, 105(5):723-728.
Rodriguez RA, L. K. (2019). Stand-Alone Artificial Intelligence for Breast Cancer Detection in Mammography: Comparison With 101 Radiologists. J Natl Cancer Inst, 111(9):916-922.
Stoel, B. C. (2019). Artificial intelligence in detecting early RA. In Seminars in arthritis and rheumatism (pp. Vol. 49, No. 3, pp. S25-S28). WB Saunders.
Namikawa K, H. T. (2020). Utilizing artificial intelligence in endoscopy: a clinician's guide. Expert Rev Gastroenterol Hepatol, 1-18.
Gulati S, E. A. (2020). Artificial intelligence in luminal endoscopy. Ther Adv Gastrointest Endosc, 13:2631774520935220.
Sharma P, P. A. (2020). Artificial intelligence in endoscopy. Gastrointest Endosc, 91(4):925-931.
Nguyen DT, P. T. (2019). Artificial Intelligence-Based Thyroid Nodule Classification Using Information from Spatial and Frequency Domains. J Clin Med, 8(11).
Sun C, Z. Y. (2020). Evaluation of a deep learning-based computer-aided diagnosis system for distinguishing benign from malignant thyroid nodules in ultrasound images. Med Phys, 47(9):3952-3960.
Chen J, Y. H. (2020). A review of thyroid gland segmentation and thyroid nodule segmentation methods for medical ultrasound images. Comput Methods Programs Biomed, 185:105329.
Sun R, L. E. (2018). A radiomics approach to assess tumour-infiltrating CD8 cells and response to anti-PD-1 or anti-PD-L1 immunotherapy: an imaging biomarker, retrospective multicohort study. Lancet Oncol, 19(9):1180-1191.
Tae K. (2020). Robotic thyroid surgery. Auris Nasus Larynx, 48(3):331-338.
Stefanelli LV, M. G. (2020). Accuracy Evaluation of 14 Maxillary Full Arch Implant Treatments Performed with Da Vinci Bridge: A Case Series. Materials (Basel), 13(12):2806.
Jones R, D. R. (2020). Single port robotic radical prostatectomy with the da Vinci SP platform: a step by step approach. Can J Urol, 27(3):10263-10269.
Hashimoto DA, W. E. (2020). Artificial Intelligence in Anesthesiology: Current Techniques, Clinical Applications, and Limitations. Anesthesiology, ,132(2):379-394.
Kamdar N, J. L. (2020). Telemedicine: A Digital Interface for Perioperative Anesthetic Care. Anesth Analg, 130(2):272-275.
Poncette AS, M. L. (2020). Improvements in Patient Monitoring in the Intensive Care Unit: Survey Study. J Med Internet Res, 22(6):e19091.
De CH, C. F. (2020). Wearable Monitoring and Interpretable Machine Learning Can Objectively Track Progression in Patients during Cardiac Rehabilitation. Sensors (Basel), 20(12):3601.
Nas S, K. M. (2019). Emergency Department Capacity Planning: A Recurrent Neural Network and Simulation Approach. Comput Math Methods Med, 4359719.
Yang YY, S. B. (2019). Expert-led and artificial intelligence (AI) system-assisted tutoring course increase confidence of Chinese medical interns on suturing and ligature skills: prospective pilot study. J Educ Eval Health Prof, 16:7.
Bertin H, H. J. (2020). Bilateral sagittal split osteotomy training on mandibular 3-dimensional printed models for maxillofacial surgical residents. Br J Oral Maxillofac Surg, 58(8):953-958.
Mashamba TP, D. P. (2020). Point-of-Care Diagnostic Services as an Integral Part of Health Services during the Novel Coronavirus 2019 Era. Diagnostics (Basel), 10(7):449.
Arash KA, J. W. (2020). Artificial Intelligence for COVID-19 Drug Discovery and Vaccine Development. Front Artif Intell, 3:65.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 Jurnal Ilmiah Permas: Jurnal Ilmiah STIKES Kendal
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.