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Faktor Genetik Sebagai Risiko Kejang Demam Berulang Tjipta Bahtera; Susilo Wibowo; AG Soemantri Hardjojuwono
Sari Pediatri Vol 10, No 6 (2009)
Publisher : Badan Penerbit Ikatan Dokter Anak Indonesia (BP-IDAI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (188.235 KB) | DOI: 10.14238/sp10.6.2009.378-84

Abstract

Latar belakang. Sepertiga pasien kejang demam pertama mengalami bangkitan ulang kejang demam. Riwayat keluarga adalah pernah kejang demam dan mutasi gen merupakan faktor risiko bangkitan kejang demam berulang.Tujuan. Membuktikan faktor genetik sebagai risiko terjadi kejang demam berulang.Metode. Rancangan penelitian kohort prospektif. Subjek pasien kejang demam pertama, selama 18 bulan diamati terjadi bangkitan ulang kejang demam. Amplifikasi DNA dengan teknik PCR dan sequencing untuk melihat mutasi gen pada kanal ion Natrium. Pengujian hipotesis memakai regresi logistik, dan uji korelasi memakai Rank Sperman corelation.Hasil. Sepertiga pasien kejang demam pertama mengalami kejang demam berulang. Mutasi gen kanal ion Na+ SCNIA 19(61,3%) pasien, terdapat pergantian Argenin (R) oleh asam glutamat (Glu) (Arg1627Glu) (mutasi missense) dan kodon stop (TGA).(mutasi nonsense), sedangkan pada SCNIB 12(38,7%) pasien, terdapat mutasi heterozigot, yaitu kodon 130:GAA /AAA, kodon 96:CGG/TGG, kodon 138:GTC/ATC, kodon 95:AGC /ATT dan kodon:154 GCT/AAT. Ada hubungan mutasi gen dengan umur, suhu dan riwayat keluarga pernah kejang demam, saat kejang pertama. (koefisien korelasi berturut-turut –0,359; -0,339; 0,278). Riwayat keluarga pernah kejang demam dan mutasi gen berisiko 2-3 kali terjadi kejang demam berulang (RR 2.9, p<0,05 dan RR 3.556 p>0,05)Kesimpulan. Sepertiga pasien kejang demam pertama mengalami kejang demam berulang. Riwayat keluarga pernah kejang demam dan mutasi gen merupakan faktor risiko kejang demam berulang. Terdapat hubungan mutasi gen dengan umur, suhu dan riwayat keluarga pernah kejang demam, saat kejang pertama
Kajian Pelatihan Digitalisasi Pada UMKM Binaan Melalui Program Teman Kreasi PT Smartfren Telecom. Tbk Wibowo, Susilo; Hubeis, Musa; Sarma, Ma'mun
MANAJEMEN IKM: Jurnal Manajemen Pengembangan Industri Kecil Menengah Vol. 18 No. 1 (2023): Manajemen IKM
Publisher : Institut Pertanian Bogor

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29244/mikm.18.1.91-99

Abstract

PT Smartfren Telecom, Tbk with its corporate social responsibility (CSR) program has established a forum called "Teman Kreasi". Teman Kreasi Smartfren has been running for seven years. This CSR program has a mission to develop a spirit of co-creation and social entrepreneurship for the younger generation, as well as to open opportunities for the growth of creative MSMEs in various areas. The Smartfren Community is located. and has reached 52 cities in Indonesia. Currently, there are 1,085 SMEs, whereas 70% of which are located in Java, Sumatra, Sulawesi, and Kalimantan.This research was conducted to examine the benefits experienced by the mentored SMEs, as well as to provide input for future activities. Generally, the research was conducted to evaluate the digitalization training provided by the Teman Kreasi program. The Strength, Weakness, Opportunities, Threats (SWOT) method, Analytic Hierarchy Process, and Training Need Assessment (TNA) approach were used to obtain strategic improvements and provide feedback for future training programs. The evaluation of the digital training activities of the mentored SMEs by Teman Kreasi Smartfren concluded that the training was very good and should be continued. Furthermore, there was a significant difference in the sales of the SMEs before and after receiving the training. The training led to an increase in sales and a shift from conventional sales to digital sales through marketplaces to expand sales coverage. Additionally, collaborating with influencers was found to be effective in providing direct promotion impact on social media users.
Perancangan Kontroler Pointing Antena Yagi pada Frekuensi Radio Berbasis Mikrokontroler Yosefhan, Ronald Alexander; Wibowo, Susilo
Keluwih: Jurnal Sains dan Teknologi Vol. 2 No. 1 (2021): Keluwih: Jurnal Sains dan Teknologi (February)
Publisher : Direktorat Penerbitan dan Publikasi Ilmiah, Universitas Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24123/saintek.v2i1.4052

Abstract

Abstrak--Pada sistem komunikasi nirkabel yang menggunakan antena, arah antena pusat memegang peranan penting. Hal ini dikarenakan penyimpangan arah antena mempengaruhi kinerja komunikasi. Oleh karena itu, dibutuhkan sebuah proses pointing untuk mendapatkan arah antena yang lebih baik. Pada Tugas Akhir ini penulis merancang kontroler pointing antena untuk memudahkan proses pointing dan menguji ketepatan pointing dengan parameter yang dapat diukur. Perancangan tersebut diimplementasikan di gedung Fakultas Teknik Universitas Surabaya. Perancangan tersebut mampu melakukan pointing ke arah target pointing berdasarkan nilai masukkan koordinat geografis dan nilai tekanan udara yang dikonversi menjadi nilai azimut dan elevasi. Perancangan alat pointing ini terdiri dari empat komponen utama, yakni modul komunikasi, desain antena, motor servo, dan mikrokontroler. Fokus Tugas Akhir ini adalah merancang alat pointing berdasarkan keempat komponen utama serta menguji ketepatan alat pointing berdasarkan parameter gerak kontroler dan sinyal daya terima. Pengerjaan dibagi menjadi dua belas tahap: konsep desain alat pointing keseluruhan, perancangan modul komunikasi, perancangan motor servo, desain rangkaian mikrokontroler, konsep komunikasi modul komunikasi, konsep desain antena Yagi, penggabungan antena Yagi dengan alat pointing, kalibrasi motor servo setelah diberi beban alat pointing, desain user interface, perancangan target pointing, perhitungan waktu pemakaian maksimum baterai, dan desain akhir alat pointing dan target pointing. Pengujian meliputi uji antena, uji gerak kontroler, uji sinyal daya terima, uji user interface, dan uji transceiver. Hasil menunjukkan parameter antena yang didapatkan berupa SWR 1.33, kuat sinyal ±12 dB, dan beamwidth ±62°. Kontroler azimut memiliki error rate gerak 1°. Nilai sinyal daya terbaik didapatkan -88 dB pada spreading factor 7 dan bandwidth 500 kHz. Uji data sensor menggunakan modul sensor BMP280 pada Tugas Akhir ini memiliki error rate sebesar ±2 °C.Kata kunci: alat pointing, RSSI, gerak kontroler, antena yagi, servo Abstract--Wireless communication systems that use antennas, the direction of the central antenna plays an important role. This is because antenna deviations affect the communication performance. Therefore, we need a pointing process to get a better antenna direction. In this Final Project, the author designed the antenna pointing controller to facilitate the pointing process and test the accuracy of pointing with parameters that can be measured. The design was implemented at Faculty of Engineering building, Surabaya university. The design is able to do pointing in the direction of target pointing based on geographic coordinate input values and air pressure values that are converted to azimuth and elevation values. The design of this pointing tool consists of four main components, namely the communication module, antenna design, servo motor, and microcontroller. The focus of this Final Project is to design a pointing tool based on the four main components and test the accuracy of the pointing tool based on the controller motion parameters and the received power signal. Workmanship is divided into twelve stages: overall pointing tool design concept, communication module design, servo motor design, microcontroller circuit design, communication module communication concept, Yagi antenna design concept, merging of Yagi antenna with pointing tool, servo motor calibration after pointing load , user interface design, target pointing design, calculation of maximum battery usage time, and final design of pointing and target pointing tools. The tests include antenna test, controller motion test, received signal test, user interface test, and transceiver test. The results showed that the antenna parameters obtained were SWR 1.33, signal strength ± 12 dB, and beamwidth ± 62°. The azimuth controller has a motion error rate of 1°. The best power signal values obtained -88 dB at spreading factor 7 and bandwidth of 500 kHz. Sensor data test using BMP280 sensor module in this Final Project has an error rate of ± 2 °C.Keywords: pointing device, RSSI, motion controller, yagi antenna, servo
Revolutionizing Classroom Attendance: A Wireless Smart System Using ESP-NOW Protocol Onggo, Leonardo; Wibowo, Susilo; Ainul, Rafina Destiarti
JURNAL INFOTEL Vol 16 No 4 (2024): November 2024
Publisher : LPPM INSTITUT TEKNOLOGI TELKOM PURWOKERTO

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20895/infotel.v16i4.1259

Abstract

In an era where technological advancements drive improvements across various sectors, enhancing efficiency in educational management systems is crucial. This paper presents a novel wireless attendance system that leverages the ESP-NOW protocol, which offers advantages over traditional Wi-Fi by enabling low-power, low-latency, and direct device-to-device communication without the need for an intermediary network. The system employs ESP32 modules configured as both slave and master devices. Slave devices, positioned on the lecturer’s desk, interact with students' smartphones when the lecturer initiates the class, while master devices, strategically placed at multiple locations within the classroom, compile and consolidate attendance data for each room. The system incorporates RSSI-based restrictions via the ESP-NOW protocol to prevent overlapping attendance between rooms and ensure that students can only record their presence if they are physically within the designated classroom. Attendance data is automatically logged and made accessible in real-time through a dedicated mobile application for lecturers. Empirical testing demonstrates 100% accuracy in attendance recording, with an average verification time of less than 1 second and a data transmission rate ranging from 700 to 800 Bytes/seconds.