19th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics (eBook, PDF)
Proceedings of NBC 2023, June 12–14, 2023, Liepaja, Latvia
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19th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics (eBook, PDF)
Proceedings of NBC 2023, June 12–14, 2023, Liepaja, Latvia
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This book reports on new trends, challenges and solutions, in the multidisciplinary fields of biomedical engineering and medical physics. Contributions spans from biomechanics, to robotic rehabilitation, radiation oncology, and image and signal processing, among many other topics. They cover advanced devices for diagnosis or patient monitoring, as well as for therapy (non-invasive surgery, rehabilitation and more). Gathering the proceedings of the 19th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics, NBC 2023, held on June 12–14, 2023, in Liepaja, Latvia, this book is…mehr
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This book reports on new trends, challenges and solutions, in the multidisciplinary fields of biomedical engineering and medical physics. Contributions spans from biomechanics, to robotic rehabilitation, radiation oncology, and image and signal processing, among many other topics. They cover advanced devices for diagnosis or patient monitoring, as well as for therapy (non-invasive surgery, rehabilitation and more). Gathering the proceedings of the 19th Nordic-Baltic Conference on Biomedical Engineering and Medical Physics, NBC 2023, held on June 12–14, 2023, in Liepaja, Latvia, this book is expected to inform a wide audience of researchers, engineers and other professionals working in the broad field of biomedical engineering, and to offer a timely snapshot of research and projects that have been carried out within Nordic and Baltic countries, in particular, but not limited to them.
Produktdetails
- Produktdetails
- Verlag: Springer Nature Switzerland
- Erscheinungstermin: 15. Juli 2023
- Englisch
- ISBN-13: 9783031371325
- Artikelnr.: 68432385
- Verlag: Springer Nature Switzerland
- Erscheinungstermin: 15. Juli 2023
- Englisch
- ISBN-13: 9783031371325
- Artikelnr.: 68432385
The Impact of Engineering Enabling Technologies on the Further Development of Personalized Orthopedics.- The Development of Objective and Quantitative Eye-Tracking-Based Method for the Diagnostics of Oculomotor Dysfunctions.- A Novel Algorithm for the Compensation of Hemoglobin Interference on Bilirubin Measurement Applied to a Two-Wavelengths Reflectance Photometer.- Method for Muscle Fatigue Detection Using Inertial Sensors.- Accurate Registration of 3D Models with Organs in Augmented Reality Through Inertial Sensors.- Dynamic Testing of Piezoresistive Fabrics for Use in Smart Wearable Personal Protective Equipment.- Studies of UV-A inactivation of Escherichia coli by 365 nm Light.- A Prototype Device for Continuous Monitoring of Breathing Mode: Nasal Versus Mouth.- Investigation of Electrospun Keratin Mats Containing Biosynthesized Silver Nanoparticles.- Finite Element Method Modelling of Iron - Oxide Nanoparticle Heat Generation Under Low Radio Frequency Field Conditions.- Detection of Physical Stressors in Patients with Frailty Syndrome Using Wearable Devices.- Expediency of Using a Physical and Mathematical Model in Cell Engineering.- Smart textile in Post Stroke Patient Rehabilitation Exercises Evaluation for Lower Extremities.- Application of DAid Smart Shirt in Rehabilitation for Subacromial Pain Syndrome Patients Participating in High-risk for Overuse Injury Sports.- Effects of Tactical Boots on Foot and Ankle Biomechanics.- The Reverse Engineering of Human Organs Based on the Application of Method of Anatomical Features.
The Impact of Engineering Enabling Technologies on the Further Development of Personalized Orthopedics.- The Development of Objective and Quantitative Eye-Tracking-Based Method for the Diagnostics of Oculomotor Dysfunctions.- A Novel Algorithm for the Compensation of Hemoglobin Interference on Bilirubin Measurement Applied to a Two-Wavelengths Reflectance Photometer.- Method for Muscle Fatigue Detection Using Inertial Sensors.- Accurate Registration of 3D Models with Organs in Augmented Reality Through Inertial Sensors.- Dynamic Testing of Piezoresistive Fabrics for Use in Smart Wearable Personal Protective Equipment.- Studies of UV-A inactivation of Escherichia coli by 365 nm Light.- A Prototype Device for Continuous Monitoring of Breathing Mode: Nasal Versus Mouth.- Investigation of Electrospun Keratin Mats Containing Biosynthesized Silver Nanoparticles.- Finite Element Method Modelling of Iron - Oxide Nanoparticle Heat Generation Under Low Radio Frequency Field Conditions.- Detection of Physical Stressors in Patients with Frailty Syndrome Using Wearable Devices.- Expediency of Using a Physical and Mathematical Model in Cell Engineering.- Smart textile in Post Stroke Patient Rehabilitation Exercises Evaluation for Lower Extremities.- Application of DAid Smart Shirt in Rehabilitation for Subacromial Pain Syndrome Patients Participating in High-risk for Overuse Injury Sports.- Effects of Tactical Boots on Foot and Ankle Biomechanics.- The Reverse Engineering of Human Organs Based on the Application of Method of Anatomical Features.
The Impact of Engineering Enabling Technologies on the Further Development of Personalized Orthopedics.- The Development of Objective and Quantitative Eye-Tracking-Based Method for the Diagnostics of Oculomotor Dysfunctions.- A Novel Algorithm for the Compensation of Hemoglobin Interference on Bilirubin Measurement Applied to a Two-Wavelengths Reflectance Photometer.- Method for Muscle Fatigue Detection Using Inertial Sensors.- Accurate Registration of 3D Models with Organs in Augmented Reality Through Inertial Sensors.- Dynamic Testing of Piezoresistive Fabrics for Use in Smart Wearable Personal Protective Equipment.- Studies of UV-A inactivation of Escherichia coli by 365 nm Light.- A Prototype Device for Continuous Monitoring of Breathing Mode: Nasal Versus Mouth.- Investigation of Electrospun Keratin Mats Containing Biosynthesized Silver Nanoparticles.- Finite Element Method Modelling of Iron - Oxide Nanoparticle Heat Generation Under Low Radio Frequency Field Conditions.- Detection of Physical Stressors in Patients with Frailty Syndrome Using Wearable Devices.- Expediency of Using a Physical and Mathematical Model in Cell Engineering.- Smart textile in Post Stroke Patient Rehabilitation Exercises Evaluation for Lower Extremities.- Application of DAid Smart Shirt in Rehabilitation for Subacromial Pain Syndrome Patients Participating in High-risk for Overuse Injury Sports.- Effects of Tactical Boots on Foot and Ankle Biomechanics.- The Reverse Engineering of Human Organs Based on the Application of Method of Anatomical Features.
The Impact of Engineering Enabling Technologies on the Further Development of Personalized Orthopedics.- The Development of Objective and Quantitative Eye-Tracking-Based Method for the Diagnostics of Oculomotor Dysfunctions.- A Novel Algorithm for the Compensation of Hemoglobin Interference on Bilirubin Measurement Applied to a Two-Wavelengths Reflectance Photometer.- Method for Muscle Fatigue Detection Using Inertial Sensors.- Accurate Registration of 3D Models with Organs in Augmented Reality Through Inertial Sensors.- Dynamic Testing of Piezoresistive Fabrics for Use in Smart Wearable Personal Protective Equipment.- Studies of UV-A inactivation of Escherichia coli by 365 nm Light.- A Prototype Device for Continuous Monitoring of Breathing Mode: Nasal Versus Mouth.- Investigation of Electrospun Keratin Mats Containing Biosynthesized Silver Nanoparticles.- Finite Element Method Modelling of Iron - Oxide Nanoparticle Heat Generation Under Low Radio Frequency Field Conditions.- Detection of Physical Stressors in Patients with Frailty Syndrome Using Wearable Devices.- Expediency of Using a Physical and Mathematical Model in Cell Engineering.- Smart textile in Post Stroke Patient Rehabilitation Exercises Evaluation for Lower Extremities.- Application of DAid Smart Shirt in Rehabilitation for Subacromial Pain Syndrome Patients Participating in High-risk for Overuse Injury Sports.- Effects of Tactical Boots on Foot and Ankle Biomechanics.- The Reverse Engineering of Human Organs Based on the Application of Method of Anatomical Features.