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Models and policies for family development, population control, and family planning: a scoping review Astuti, Dhesi Ari; Hasibuan, Khoirunnisah; Realita, Friska; Hisan, Urfa Khairatun
International Journal of Public Health Science (IJPHS) Vol 13, No 2: June 2024
Publisher : Intelektual Pustaka Media Utama

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.11591/ijphs.v13i2.22960

Abstract

Uncontrolled population growth causes poverty, hunger, disease and death. Ironically, population explosions usually occur in developing countries, while population growth is usually low, zero, or even negative in developed countries. Considering these factors, this research aims to formulate effective family planning and population control methods to improve the quality of family development. In this research we present a scoping review article regarding family development models and policies, population control, and family planning. A comprehensive search was conducted in major databases, including PubMed, EBSCO, ProQuest, and ScienceDirect, via presentation methods using PRISMA-ScR guidelines. As a result, we found 16 articles meeting the eligibility criteria. The findings of this research provide insight to stakeholders and researchers into how family development, population control, and family planning policies can be modeled so that effective results can be achieved.
Implantable Antennas for Biomedical Purposes: State-of-the-Art, Challenges, and Future Directions Amri, Muhammad Miftahul; Hisan, Urfa Khairatun; Sulisworo, Dwi
Indonesian Review of Physics Vol. 7 No. 1 (2024)
Publisher : Universitas Ahmad Dahlan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.12928/irip.v7i1.9562

Abstract

This article provides a comprehensive review of implantable antennas in the context of their application within the biomedical field. Through a systematic exploration of cutting-edge developments and associated challenges, a thorough understanding of antenna design, performance considerations, and safety implications is obtained. The investigation thoroughly examines diverse antenna types, including planar, microstrip, fractal-geometry, and others, elucidating the design considerations that govern their suitability for a wide array of implantable medical devices (IMDs). Substrate and material choices are critical factors influencing antenna efficiency and biocompatibility. The utilization of available frequency bands is evaluated, highlighting the inherent tradeoffs that dictate their applicability in biomedical applications. Additionally, the promising domain of rectenna technology is explored for its potential in sustainable energy harvesting. The discourse on miniaturization techniques underscores their pivotal role in enabling the seamless integration of antennas within intricate implant structures. Safety aspects are paramount, encompassing metrics such as specific absorption range (SAR), maximum permissible exposure (MPE) limits, and thresholds for localized temperature changes. The intricate interplay between human body effects and antenna performance is briefly elaborated. Methodologies for thorough evaluation, spanning computer simulations, as well as experiments in in vivo and in vitro scenarios, are discussed for their pivotal role in iteratively refining antenna functionality.