scholarly journals implementasi teknologi informasi dibidang kesehatan

2021 ◽  
Author(s):  
Muhammad Aldi Pratama

Kondisi Infrastruktur TIK di Daerah data Riset Fasilitas Kesehatan (Rifaskes) yang dilakukan Kemenkes pada tahun 2011, menggambarkan kondisi infrastruktur TIK di fasilitas pelayanan kesehatan di daerah pada umumnya belum cukup memadai.Di Puskesmas, Mengutip sebanyak 87,4% Puskesmas sudah tersambung listrik 24 jam, sebanyak 78,4% sudah memiliki perangkat komputer. Namun, baru 17,1% yang telah dilengkapi internet dan 15% yang memiliki sistem informasi Puskesmas (SIMPUS) dengan local area network (LAN).Sementara itu, kondisi infrastuktur TIK di rumah sakit (RS), sebanyak 82% RS Pemerintah sudah memiliki akses internet. Selain itu, dilaporkan juga bahwa sebanyak 740 RS telah memiliki sistem informasi manajemen rumah sakit (SIMRS). SIMRS merupakan sebuah sistem informasi yang terintegrasi yang disiapkan untuk menangani keseluruhan proses manajemen RS, mulai dari pelayanan diagnosa dan tindakan untuk pasien, medical record, apotek, gudang farmasi, penagihan, database personalia, penggajian karyawan, proses akuntansi sampai dengan pengendalian oleh manajemen. Di era JKN saat ini, 1.227 RS telah menggunakan aplikasi Indonesia Case Base Group (INA-CBG), meliputi RS Pemerintah maupun swasta. INA-CBG merupakan sistem pembayaran dengan sistem paket, berdasarkan penyakit yang diderita pasien dan cara pembayaran perawatan pasien berdasarkan diagnosis atau kasus-kasus yang relatif sama. “Dengan demikian, sistem INA-CBG sudah menghitung layanan apa saja yang akan diterima pasien tersebut berikut pengobatannya sampai dinyatakan sembuh”, jelas Menkes. Telemedicine Di beberapa RS juga tengah dikembangkan pilot project telemedicine yng merupakan pelayanan kesehatan jarak jauh melalui pemanfaatkan teknologi informasi dalam upaya diagnosis dan tatalaksana. Pelayanan telemedicine yang dapat dikembangkan yaitu teleradiologi, telekardiologi, radio komunikasi medik (teleconference), videoconference (vicon), teleradiotherapy, dan sebagainya. Kondisi Infrastruktur TIK di Daerah data Riset Fasilitas Kesehatan (Rifaskes) yang dilakukan Kemenkes pada tahun 2011, menggambarkan kondisi infrastruktur TIK di fasilitas pelayanan kesehatan di daerah pada umumnya belum cukup memadai.Di Puskesmas, Mengutip sebanyak 87,4% Puskesmas sudah tersambung listrik 24 jam, sebanyak 78,4% sudah memiliki perangkat komputer. Namun, baru 17,1% yang telah dilengkapi internet dan 15% yang memiliki sistem informasi Puskesmas (SIMPUS) dengan local area network (LAN).Sementara itu, kondisi infrastuktur TIK di rumah sakit (RS), sebanyak 82% RS Pemerintah sudah memiliki akses internet. Selain itu, dilaporkan juga bahwa sebanyak 740 RS telah memiliki sistem informasi manajemen rumah sakit (SIMRS). SIMRS merupakan sebuah sistem informasi yang terintegrasi yang disiapkan untuk menangani keseluruhan proses manajemen RS, mulai dari pelayanan diagnosa dan tindakan untuk pasien, medical record, apotek, gudang farmasi, penagihan, database personalia, penggajian karyawan, proses akuntansi sampai dengan pengendalian oleh manajemen. Di era JKN saat ini, 1.227 RS telah menggunakan aplikasi Indonesia Case Base Group (INA-CBG), meliputi RS Pemerintah maupun swasta. INA-CBG merupakan sistem pembayaran dengan sistem paket, berdasarkan penyakit yang diderita pasien dan cara pembayaran perawatan pasien berdasarkan diagnosis atau kasus-kasus yang relatif sama. “Dengan demikian, sistem INA-CBG sudah menghitung layanan apa saja yang akan diterima pasien tersebut berikut pengobatannya sampai dinyatakan sembuh”, jelas Menkes. Telemedicine Di beberapa RS juga tengah dikembangkan pilot project telemedicine yng merupakan pelayanan kesehatan jarak jauh melalui pemanfaatkan teknologi informasi dalam upaya diagnosis dan tatalaksana. Pelayanan telemedicine yang dapat dikembangkan yaitu teleradiologi, telekardiologi, radio komunikasi medik (teleconference), videoconference (vicon), teleradiotherapy, dan sebagainya.

1981 ◽  
Vol 1 (1) ◽  
pp. 21 ◽  
Author(s):  
David Hutchison ◽  
Doug Shepherd

1991 ◽  
Vol 30 (01) ◽  
pp. 53-64 ◽  
Author(s):  
R. Schosser ◽  
C. Weiss ◽  
K. Messmer

This report focusses on the planning and realization of an interdisciplinary local area network (LAN) for medical research at the University of Heidelberg. After a detailed requirements analysis, several networks were evaluated by means of a test installation, and a cost-performance analysis was carried out. At present, the LAN connects 45 (IBM-compatible) PCs, several heterogeneous mainframes (IBM, DEC and Siemens) and provides access to the public X.25 network and to wide-area networks for research (EARN, BITNET). The network supports application software that is frequently needed in medical research (word processing, statistics, graphics, literature databases and services, etc.). Compliance with existing “official” (e.g., IEEE 802.3) and “de facto” standards (e.g., PostScript) was considered to be extremely important for the selection of both hardware and software. Customized programs were developed to improve access control, user interface and on-line help. Wide acceptance of the LAN was achieved through extensive education and maintenance facilities, e.g., teaching courses, customized manuals and a hotline service. Since requirements of clinical routine differ substantially from medical research needs, two separate networks (with a gateway in between) are proposed as a solution to optimally satisfy the users’ demands.


Author(s):  
Chaithra. H. U ◽  
Vani H.R

Now a days in Wireless Local Area Networks (WLANs) used in different fields because its well-suited simulator and higher flexibility. The concept of WLAN  with  advanced 5th Generation technologies, related to a Internet-of-Thing (IOT). In this project, representing the Network Simulator (NS-2) used linked-level simulators for Wireless Local Area Networks and still utilized IEEE 802.11g/n/ac with advanced IEEE 802.11ah/af technology. Realization of the whole Wireless Local Area Networking linked-level simulators inspired by the recognized Vienna Long Term Evolution- simulators. As a outcome, this is achieved to link together that simulator to detailed performances of Wireless Local Area Networking with Long Term Evolution, operated in the similar RF bands. From the advanced 5th Generation support cellular networking, such explore is main because different coexistences scenario can arise linking wireless communicating system to the ISM and UHF bands.


Jurnal Teknik ◽  
2018 ◽  
Vol 7 (1) ◽  
Author(s):  
Heru Abrianto

Microstrip antenna which designed with dual feeding at 2.4 GHz and 5.8 GHz can meet WLAN (Wireless Local Area Network) application.Antenna fabrication use PCB FR4 double layer with thickness 1.6 mm and dielectric constant value 4.4. The length of patch antenna according to calculation 28.63 mm, but to get needed parameter length of patch should be optimized to 53 mm. After examination, this antenna has VSWR 1.212 at 2.42 GHz and 1.502 at 5.8 GHz, RL -13.94 dB at 2.42 GHz and -20.357 dB at 5.8 GHz, gain of antenna 6.16 dB at 2.42 GHz and 6.91 dB at 5.8 GHz, the radiation pattern is bidirectional. Keywords : microstrip antenna, wireless LAN, dual polarization, single feeding technique


2018 ◽  
Author(s):  
Kiramat

IEEE 802.11 is a set of media access control (MAC) and physical layer (PHY) specifications for implementing wireless local area network (WLAN) computer communications. Maintained by the Institute of Electrical and Electronics Engineers (IEEE) LAN/MAN Standards Committee (IEEE 802). This document highlights the main features of IEEE 802.11n variant such as MIMO, frame aggregation and beamforming along with the problems in this variant and their solutions


2020 ◽  
Author(s):  
Sasqia Ismi Aulia ◽  

This study aims to design a LAN network for data backup systems that are in accordance with certain aspects such as the selection of network design, network hardware, network transmission media, network connection devices, and network operating systems. Data is the most important thing for everyone, data can usually be reused even though it has not been used for some time, and therefore data storage is a serious problem that must be considered. Data on the server computer is very important to be maintained so that a backup process is needed on that data to another computer that is used as a backup in the event of damage to the hardware and software of the server computer. FTP is one of the solutions to the problems faced above,where FTP can be used to process the download and upload between the server and client computers. This design uses the Autobot system. The expected benefit in designing this LAN is that the existing network at SMP Negeri 6 Pekanbaru is not only used by employees and employees but can be used and enjoyed by teachers and students to access the internet anywhere as long as it is still within the scope of the SMP Negeri 6 area Pekanbaru.


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