会议信息

iBioMed 2024: International Conference on Biomedical Engineering

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截稿日期:
2024-07-31 延期
通知日期:
2024-08-31
会议日期:
2024-10-23
会议地点:
Bali, Indonesia
届数:
5
浏览: 8878   关注: 0   参加: 1
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iBioMed
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会伴指数 (CP-I)

43.2 / 100
全站第 3,711 名 / 共 5,693 个会议 · 前 66%

生物信息学与健康信息学 第 102 / 184

学术认可 (35%) 无数据 —— 按中性基准 50 分计入 —
投稿选择性 (20%) 无数据 —— 按中性基准 50 分计入 —
会议传承 (20%)
48
社区关注 (10%)
8
资料公开度 (15%)
35

用到的输入: 有据可查的届次:5 · 过去 24 个月打开过本页的研究者:2 人

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主办方认领本会议后,可直接在这一页补上;分数每晚重算。如何提升这个分数

置信度 45% —— 分数中有多大比例来自实际观测到的数据,而不是中性基准。 这个分数是怎么算出来的 · 查看完整榜单 · 算法版本 1.1 · 算于 2026-10-05

征稿

iBioMed 2024 (International Conference on Biomedical Engineering) is an academic conference held in Bali, Indonesia on 2024-10-23. The paper submission deadline is 2024-07-31 (extended). Acceptance notifications are sent on 2024-08-31.

The topics of interest include but are not limited to the following areas: BIOMEDICAL SIGNAL PROCESSING Biomedical signal processing involves the analysis of these measurements to provide useful information upon which clinicians can make decisions. Engineers are discovering new ways to process these signals using a variety of mathematical formulae and algorithms. Working with traditional bio-measurement tools, the signals can be computed by software to provide physicians with real-time data and greater insights to aid in clinical assessments. BIOMEDICAL IMAGING AND IMAGE PROCESSING Biomedical imaging concentrates on the capture of images for both diagnostic and therapeutic purposes. Snapshots of in vivo physiology and physiological processes can be garnered through advanced sensors and computer technology. Biomedical image processing is similar in concept to biomedical signal processing in multiple dimensions. It includes the analysis, enhancement and display of images captured via x-ray, ultrasound, MRI, nuclear medicine and optical imaging technologies. BIOINSTRUMENTATION, BIOSENSORS, AND BIO-MICRO/NANO TECHNOLOGY A biosensor is any piece of hardware that interacts with a biological or physiological system to acquire a signal for either diagnostic or therapeutic purposes. Data gathered using biosensors are then processed using biomedical signal processing techniques as a first step toward facilitating human or automated interpretation. The body sends out very weak electrical signals, which must somehow be captured and converted into useful information. BIOINFORMATICS AND COMPUTATIONAL BIOLOGY, SYSTEMS BIOLOGY, AND MODELING METHODOLOGIES Both computational biology and bioinformatics draw upon many of the same disciplines to derive distinct, but related, information about biological processes. Understanding the functioning of living systems is the realm of the physiologist. Bioengineers working in computational biology might explore, for example, how blood flows through the body or how air flows through the lungs. This "plumbing"" can be mathematically modeled to help determine the health of an individual patient. BIOMECHANICS AND BIOROBOTICS The term "biomechanics" is used to describe the application of mechanics-the study of how motor systems create force and motion-to biological systems. Biomechanics often employs traditional engineering techniques. Biorobotic technologies are often utilized to provide assistance to accommodate a deficiency-either as fully-functioning robots or highly advanced prosthetics; the latter represents one area in which neural engineering and biorobotics intersect as both disciplines are required in order to first signal and then generate movement. HEALTHCARE INFORMATION SYSTEMS AND TELEMEDICINE With critical care doctors in short supply and located in regional medical centers, ICUs became the first specialty to turn to the power of telemedicine. Telemedicine allows attending physicians in rural hospitals to consult with specialists at renowned institutions. This means that patient data must be transmitted and received both reliably and timely. Biomedical engineers are involved in the development of communication technologies and applications. THERAPEUTIC AND DIAGNOSTIC SYSTEMS, DEVICES AND TECHNOLOGY, AND CLINICAL ENGINEERING The engineers who focus specifically on diagnostic and therapeutic systems address the practical aspects of research. Rather than exploring the features of cardiac arrhythmias, for example, they consider what, specifically, could be developed to detect such arrhythmias. They look at what is needed in medicine and then help to figure out how to apply the findings of researchers into a functional product.
由 Dou Sun 最后更新于

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