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Hasil Pencarian

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Leonard Williem
"Heart is one of the most vital organs in human body. Without it, blood is impossible to be transferred to a 11 body. Nowadays, there are many factors that can cause heart fail, and the cases of heart fails are increasing. In some of these cases, the heart is permanently fails, so that the replacement or support for the heart is needed. While the heart donors is lagging behind the rate needed, then Total Artificial Heart is needed.
Development of TAH has grown rapidly, so many TAH product are in market. Some of them have already implanted in human body.
The original pump developed by Hoang Tran (1996) was used as based to which this scaled up pump was modeled after. The rig testing that was used by Daniel Timms was used as the starting point to develop the new rig.
The new rig was designed with better features the rig before. Measurement devices, especially for head pressure was improved by using electronic pressure transducer. This new rig was not using motor from Daniel Timms Rig, DC motor that is safer and easy to control was used. To control this Motor, power supply with variable voltage option was used.
Pump Characteristic Graph was measured by the pump performance testing. From this testing, the efficiency from this pump and system can be measured based on the voltage and current that was used by motor."
Depok: Fakultas Teknik Universitas Indonesia, 2004
S38051
UI - Skripsi Membership  Universitas Indonesia Library
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Ho, Yvonne
"The thesis focuses on the control of blood glucose devices and design of implantable devices, and offers valuable insights on diabetes mellitus and related physiology and treatments. Diabetes mellitus is a widespread chronic disease in the modern world that affects millions of people around the globe. In Singapore, one in ten of the population has diabetes, and the severity of the problem has prompted the country’s prime minister to talk about the disease at the National Day Rally in 2017.
Designing an artificial pancreas that can provide effective blood glucose control for individuals with diabetes is one of the most challenging engineering problems. The author reports on research into the development of an implantable artificial pancreas that can regulate blood glucose levels by delivering appropriate dosages of insulin when necessary.
By sensing blood glucose and injecting insulin directly into the vein, the implantable device aims to remove delays that occur with subcutaneous blood glucose sensing and insulin delivery. Preliminary in-vitro and in-vivo experimental results suggest that the implantable device for blood glucose control could be a clinically viable alternative to pancreas transplant."
Singapore: Springer Singapore, 2019
e20502633
eBooks  Universitas Indonesia Library
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"This book presents state-of-the-art experimental and modelling techniques for skin biophysics that are currently used in academic and industrial research. It also identifies current and future challenges, as well as a growing number of opportunities in this exciting research field. The book covers the basics of skin physiology, biology, microstructural and material properties, and progressively introduces the reader to established experimental characterisation protocols and modelling approaches. Advanced topics in modelling theories and numerical implementation are also presented.
The book focusses especially on:
1. Basic physiology, molecular biology, microstructural and material properties of the skin.
2. Experimental characterisation techniques for the skin (including imaging): in vivo and in vitro techniques and combination of those with in silico approaches.
3. State-of-the-art constitutive models of the skin: elastic, anelastic and mechanobiological formulations (e.g. growth, ageing, healing).
4. Applications: mechanics, damage, biological growth, healing, ageing and skin tribology."
Switzerland: Springer Fachmedien Wiesbaden, 2019
e20509782
eBooks  Universitas Indonesia Library
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Ricky
"Teknik Biomedis mempelajari penerapan prinsip teknik, konsep desain alat kesehatan dan biologi untuk kesehatan (misalnya diagnostik, terapi atau preventif). Teknik Biomedis sekarang ini disebut sebagai salah satu bidang terkemuka dalam area global dan dapat menjadi katalisator untuk terobosan kesehatan dan biologi di masa depan[1]. Pada Program Studi Magister Teknik Biomedis Universitas Indonesia terdapat tiga peminatan; yakni instrumentasi medis, informatika medis, dan teknik klinis. Peminatan Pendidikan Teknik Biomedis ini membutuhkan keputusan yang tepat karena akan berpengaruh terhadap pendidikan serta pengembangan karir. Pembuatan web akademis Program Studi Magister Teknik Biomedis dengan menggabungkan metode SDS dengan DSS-AHP ini diharapkan akan membantu mahasiswa dalam menentukan peminatannya dan pengembangan karir yang akan dipilihnya. Pembuatan web akan menggunakan framework ASP.NET.

Biomedical Engineering studying the application of engineering principles, the design concept for the medical devices and biological health (eg, diagnostic, therapeutic or preventive). Biomedical engineering is now known as one of the leading areas of the global area and can be a catalyst for groundbreaking health and biology in the future [1]. In the Master of Biomedical Engineering, University of Indonesia, there are three specializations: medical instrumentation, medical informatics and clinical engineering. Biomedical Engineering Education Specialization requires the right decision because it will affect the education and career development. Making a web of academic Master of Biomedical Engineering by combining SDS method with AHP-DSS is expected to assist students in determining their specialization and career development. The ASP.NET framework will be use to make the web"
Depok: Program Pascasarjana Universitas Indonesia, 2016
T46393
UI - Tesis Membership  Universitas Indonesia Library
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"This volume presents the contributions of the 6th International Conference on Advancements of Medicine and Health Care through Technology-MediTech 2018, held between 17-20 October 2018 in Cluj-Napoca, Romania.
The papers of this Proceedings volume present new developments in :
- Health Care Technology
- Medical Devices, Measurement and Instrumentation
- Medical Imaging, Image and Signal Processing
- Modeling and Simulation
- Molecular Bioengineering
- Biomechanics"
Singapore: Springer Nature, 2019
e20505406
eBooks  Universitas Indonesia Library
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Nur Mukhayaroh
"ABSTRAK
ISFET, Ion Sensitive Field Effect Transistor, merupakan salah satu aplikasi
sensor dalam bidang kimia, yang digunakan untuk mengukur konsentrasi suatu ion tertentu, seperti H+, 0H-, Na+, Cl-, dan berbagai jenis ion lainnya. Yang dimaksud dengan pH-ISFET adalah ISFET yang dipakai dalam pengukuran konsentrasl H+ (atau 0H-) dalam larutan. Divais ini mengubah reaksi kimia yang terjadi dalam larutan menjadi potensial listrik yang nantinya merupakan parameter yang digunakan untuk mengetahui nilai pH.
Temperatur sistem pengukuran mempengaruhi kondisi sistem. Yang dimaksud
di sini adalah pengaruh pada potensial elektroda referensi yang dipakai sebagai gate pada ISFET, pengaruh pada reaksi kimia yang terjadi yang kemudian mengakibatkan perubahan parameter pada lapisan interface antara sensitive layer-larutan, dan juga parameter-parameter pada silicon. Semua perubahan ini berdampak pada tingkat sensitivitas lSFET.
Pada skripsi ini, akan dipeiajari dan disimulasikan hubungan antara temperatur
dengan sensitivitas pH-ISFET yang menggunakan Si3N4 sebagai sensitive layar-nya. Akan dicari juga hubungan antara konsentrasi ion H+ (atau 0H-) dengan koefisien Temperature. Hasil simulasi utama menunjukkan bahwa sensitivitas ISFET bertambah sesuai peningkatan temperature. Dani hasil simulasi sensitivitas ISFET pada temperatur T=300, 325, 350. 375. dan 400 0K berturut-turut sebesar 58.95 mV/pH, 60 mV/pH, 06.67 mV/pH, 73.33 mV/pH, dan 83.33 mV/pH.

"
2001
S39092
UI - Skripsi Membership  Universitas Indonesia Library
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Nuraisyah Marlina
"Pengukuran kalibrasi alat ukur tegangan kerja non-invasive dengan sistem spektroskopi menggunakan pesawat sinar-x generator single phase, generator constant potential, detektor XR?100?CdTe serta software ADMCA telah dilakukan. Untuk mengkalibrasi sistem spektroskopi, digunakan dua sumber standar yaitu Americium241 dan Barium133. Dari hasil pengukuran, bahwa nilai tegangan puncak pada pesawat sinar-x generator single phase berbeda dengan hasil pengukuran menggunakan detektor unfors dan CdTe, sehingga perlu dikoreksi dengan nilai rasio yang diperoleh sebesar 0,91. Untuk pesawat sinar-x generator constant potential tidak perlu dilakukan koreksi karena nilai tegangan puncak pesawat sesuai dengan hasil pengukuran pada detektor unfors dan CdTe. Pada pesawat satu fase, ripple mempengaruhi nilai tegangan puncak yang terukur oleh spektroskopi, sedangkan pada pesawat constant potential pengaruh ripple sangat kecil.

Measurement of calibration kilovoltage peak meter non-invasive with spectroscopy system using x-ray generator single phase, generator constant potential using detector XR-100-CdTe and ADMCA software has been done. To calibrate the spectroscopy system we use two standard sources, Americium241 and Barium133. The the measurement results showed that the value of the peak voltage at single phase x-ray generator different from the measurement results of CdTe and unfors detector, so we need to correct it by 0.91, for constant potential x-ray generator we do not need correction because the value of peak voltage is within agreement with the results of CdTe and unfors detector measurement. single phase x-ray generator measurement showed that ripple will affect the value of the peak voltage that measured using spectroscopy system, while for constant potential X-ray generator ripples have very small effects."
Depok: Universitas Indonesia, 2012
S45622
UI - Skripsi Membership  Universitas Indonesia Library
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Habte, Temesghen Tekeste
"​This book describes an ECG processing architecture that guides biomedical SoC developers, from theory to implementation and testing. The authors provide complete coverage of the digital circuit implementation of an ultra-low power biomedical SoC, comprised of a detailed description of an ECG processor implemented and fabricated on chip. Coverage also includes the challenges and tradeoffs of designing ECG processors.
- Describes digital circuit architecture for implementing ECG processing algorithms on chip;
- Includes coverage of signal processing techniques for ECG processing;
- Features ultra-low power circuit design techniques;
- Enables design of ECG processing architectures and their respective on-chip implementation."
Switzerland: Springer Cham, 2019
e20502587
eBooks  Universitas Indonesia Library
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London: Taylor and Francis, 2006
R 610.28 BIO
Buku Referensi  Universitas Indonesia Library
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