Biomechanical Biofeedback Systems and Applications
This book deals with the topic of biomechanical biofeedback systems and applications that are primarily aimed at motor learning in sports and rehabilitation. The book also describes the technologies needed for the adequate operation of biofeedback systems, such as motion tracking, communication, pro...
Saved in:
Main Authors | , |
---|---|
Format | eBook Book |
Language | English |
Published |
Cham
Springer Nature
2018
Springer Springer International Publishing AG Springer International Publishing |
Edition | 1 |
Series | Human–Computer Interaction Series |
Subjects | |
Online Access | Get full text |
ISBN | 3319913492 9783319913490 3319913484 9783319913483 |
ISSN | 1571-5035 2524-4477 |
DOI | 10.1007/978-3-319-91349-0 |
Cover
Abstract | This book deals with the topic of biomechanical biofeedback systems and applications that are primarily aimed at motor learning in sports and rehabilitation. The book also describes the technologies needed for the adequate operation of biofeedback systems, such as motion tracking, communication, processing, and sensor technologies. |
---|---|
AbstractList | This book deals with the topic of biomechanical biofeedback systems and applications that are primarily aimed at motor learning in sports and rehabilitation. The book also describes the technologies needed for the adequate operation of biofeedback systems, such as motion tracking, communication, processing, and sensor technologies. |
Author | Umek, Anton Kos, Anton |
Author_xml | – sequence: 1 fullname: Kos, Anton – sequence: 2 fullname: Umek, Anton |
BackLink | https://cir.nii.ac.jp/crid/1130282268856834944$$DView record in CiNii |
BookMark | eNpN0M1u1DAUBWBDC-pM6QOwGyEkxML0-jfOsh21UKlSFyC21o3tdMJk7BCnoL49zgQhNraO_N0j-a7JaUwxEPKWwScGUF3WlaGCClbTmglZU3hB1qLEY-IvyYorLqmUVXXy_8MpWTFVMapAqNdkzUBJzSsO_Ixc5PwDADgYo4VcEX7dpUNwO4ydw35TUhuCb9DtN1-f8xQOeYPRb66GoS9g6lLMb8irFvscLv7e5-T77c237Rd6__D5bnt1T5HVWtW08cEp5aqmZTKYILgzhkt00Gjf-rry3DdBo3ANMvQgqxa8YoBaO5StQHFOPi7FmPfhd96lfsr2Vx-alPbZlt38-zEUe7nYPIxdfAyjXRQDO29y1lbY4u1xwM4TH5aJYUw_n0Ke7LHYhTiN2Nub661SXBkti3y_yNh11nXzyZgAbjjXxihtSqGc2buFOczYF2YPKabHEYddtkrWgnEj_gCvfINt |
ContentType | eBook Book |
Copyright | Springer Nature Switzerland AG 2018 |
Copyright_xml | – notice: Springer Nature Switzerland AG 2018 |
DBID | I4C RYH |
DEWEY | 005 |
DOI | 10.1007/978-3-319-91349-0 |
DatabaseName | Casalini Torrossa eBooks Institutional Catalogue CiNii Complete |
DatabaseTitleList | |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Computer Science Anatomy & Physiology |
EISBN | 3319913492 9783319913490 |
EISSN | 2524-4477 |
Edition | 1 1st ed. 2018. |
Editor | Umek, Anton |
Editor_xml | – sequence: 1 fullname: Umek, Anton |
ExternalDocumentID | 9783319913490 453774 EBC5525864 BB28822812 5493128 |
GroupedDBID | 0D6 0DA 38. AABBV ACBPT ACOUV AEJLV AEKFX AEZAY ALMA_UNASSIGNED_HOLDINGS ANXHU AZZ BBABE BICGV BJAWL BUBNW CVGDX CZZ FOYMO I4C IEZ NQNQZ OEBZI SBO TPJZQ Z5O Z7R Z7S Z7U Z7V Z7W Z7X Z7Y Z7Z Z81 Z82 Z83 Z84 Z87 Z88 RYH |
ID | FETCH-LOGICAL-a19659-bdec55c7bf14e8e32c8824ac0b6dfd97d2dbe6a3cba1ad047f0d510a66ca4f3a3 |
ISBN | 3319913492 9783319913490 3319913484 9783319913483 |
ISSN | 1571-5035 |
IngestDate | Sun Jul 13 06:50:40 EDT 2025 Wed Sep 17 03:48:38 EDT 2025 Fri May 30 21:36:05 EDT 2025 Thu Jun 26 21:40:23 EDT 2025 Sun May 11 05:58:48 EDT 2025 |
IsPeerReviewed | false |
IsScholarly | false |
LCCallNum_Ident | Q |
Language | English |
LinkModel | OpenURL |
MergedId | FETCHMERGED-LOGICAL-a19659-bdec55c7bf14e8e32c8824ac0b6dfd97d2dbe6a3cba1ad047f0d510a66ca4f3a3 |
Notes | Includes bibliographical references and index |
OCLC | 1054627202 |
PQID | EBC5525864 |
PageCount | 192 |
ParticipantIDs | askewsholts_vlebooks_9783319913490 springer_books_10_1007_978_3_319_91349_0 proquest_ebookcentral_EBC5525864 nii_cinii_1130282268856834944 casalini_monographs_5493128 |
PublicationCentury | 2000 |
PublicationDate | 2018 c2018 20180925 2018-09-24 |
PublicationDateYYYYMMDD | 2018-01-01 2018-09-25 2018-09-24 |
PublicationDate_xml | – year: 2018 text: 2018 |
PublicationDecade | 2010 |
PublicationPlace | Cham |
PublicationPlace_xml | – name: Netherlands – name: Cham |
PublicationSeriesTitle | Human–Computer Interaction Series |
PublicationSeriesTitleAlternate | Human–Computer Interaction Series |
PublicationYear | 2018 |
Publisher | Springer Nature Springer Springer International Publishing AG Springer International Publishing |
Publisher_xml | – name: Springer Nature – name: Springer – name: Springer International Publishing AG – name: Springer International Publishing |
RelatedPersons | Tan, Desney Vanderdonckt, Jean |
RelatedPersons_xml | – sequence: 1 givenname: Desney surname: Tan fullname: Tan, Desney – sequence: 2 givenname: Jean surname: Vanderdonckt fullname: Vanderdonckt, Jean |
SSID | ssj0002088634 |
Score | 2.2185853 |
Snippet | This book deals with the topic of biomechanical biofeedback systems and applications that are primarily aimed at motor learning in sports and rehabilitation.... |
SourceID | askewsholts springer proquest nii casalini |
SourceType | Aggregation Database Publisher |
SubjectTerms | Biomechanics Communications Engineering, Networks Computer programming, programs, data Computer Science Signal, Image and Speech Processing Sport Science User Interfaces and Human Computer Interaction |
TableOfContents | 4.5 Classification and Comparison -- 4.5.1 User Architecture -- 4.5.2 Instructor Architecture -- 4.5.3 Cloud Architecture -- References -- 5 Biofeedback Systems in Sport and Rehabilitation -- 5.1 Background -- 5.2 Sensing -- 5.2.1 Optical Motion Capture Systems -- 5.2.2 Inertial Sensor Motion Capture Systems -- 5.2.3 Sensor Properties and Limitations -- 5.3 Processing -- 5.3.1 System Implementations -- 5.3.2 Motion Signal Processing -- 5.4 Communication -- 5.4.1 Transmission Delay -- 5.4.2 Communication Technologies -- 5.5 Feedback -- 5.5.1 Biofeedback Loop Delays -- 5.6 Real-Time Systems -- 5.6.1 Processing -- 5.6.2 Communication -- References -- 6 Performance Limitations of Biofeedback System Technologies -- 6.1 Selected Technologies -- 6.2 Requirements of Biofeedback Applications -- 6.3 Inertial Sensor Properties -- 6.3.1 Accelerometer and Gyroscope Biases -- 6.3.2 Constant Bias Errors -- 6.3.3 Bias Variation -- 6.3.4 Noise Measurement Methodology -- 6.3.5 Bias Measurement Error -- 6.3.6 Influence of the Sensor White Noise on the Derived Parameters -- 6.3.7 Bias Compensation Options -- 6.4 Smartphone Inertial Sensor Performance Comparison -- 6.4.1 Measurement Results -- 6.4.2 Long Term Bias Variation -- 6.5 Motion Acquisition with Inertial Sensors -- 6.5.1 Experimental Design -- 6.5.2 System Comparison and Validation -- 6.6 Processing and Communication -- 6.6.1 Signal and Data Processing -- 6.6.2 Communication Demands of Sensors and Actuators -- 6.6.3 Communication Technologies -- References -- 7 Applications -- 7.1 Application Variety -- 7.1.1 Properties and Requirements -- 7.1.2 Typical Application Scenarios -- 7.2 Application Examples -- 7.3 Golf Swing Trainer Application -- 7.3.1 Objective and Functionality -- 7.3.2 System Architecture and Setup -- 7.3.3 Results -- 7.3.4 Discussion -- 7.4 Smart Golf Club Application Intro -- Preface -- Acknowledgements -- Contents -- 1 Introduction -- 1.1 Benefits to the Society and Individuals -- 1.1.1 Quality of Life -- 1.1.2 Health-Rehabilitation and Injury Prevention -- 1.1.3 Physical Well-Being-Sport and Recreation -- 1.2 Sport and Rehabilitation -- 1.2.1 Advantages of Biofeedback -- 1.2.2 Biofeedback Requirements and Success Conditions -- 1.2.3 Motor Learning -- 1.3 Elements of Biofeedback System -- 1.3.1 Sensing -- 1.3.2 Processing -- 1.3.3 Feedback -- 1.3.4 System Example -- 1.4 Technology -- 1.4.1 Quantification -- 1.4.2 Sensors -- 1.4.3 Devices -- 1.4.4 Communication -- 1.5 Vision -- References -- 2 Biomechanical Biofeedback -- 2.1 Biofeedback -- 2.1.1 Definition -- 2.1.2 Categorization -- 2.2 Biofeedback Use -- 2.3 Operation of the Biofeedback Loop -- 2.3.1 Biofeedback Success Conditions -- 2.3.2 Sensing -- 2.3.3 Feedback Categories -- 2.3.4 Feedback Modalities -- 2.3.5 Feedback Timing -- 2.4 Example-Motor Learning with Augmented Feedback -- 2.4.1 Motor Learning Basics -- 2.4.2 Biomechanical Biofeedback with Augmented Feedback -- 2.5 Benefits and the Need for Augmented Biofeedback -- Note -- References -- 3 Biofeedback System -- 3.1 Background -- 3.2 Architecture -- 3.3 System Elements -- 3.3.1 Sensor(s) -- 3.3.2 Processing Device -- 3.3.3 Feedback Device (Actuator) -- 3.3.4 Users and Communication Channels -- 3.3.5 Optional Elements -- 3.4 System Operation -- 3.4.1 Operation Modes -- 3.4.2 Timing -- References -- 4 Biofeedback System Architectures -- 4.1 Implementation Diversity -- 4.2 Constraints -- 4.2.1 Space Constraint -- 4.2.2 Time Constraint -- 4.2.3 Computation Constraint -- 4.2.4 Other Constraints -- 4.3 Properties -- 4.3.1 Structure -- 4.3.2 Functionality -- 4.3.3 Physical Extent -- 4.4 Architectures -- 4.4.1 User Architecture -- 4.4.2 Instructor Architecture -- 4.4.3 Cloud Architecture 7.4.1 Objectives and Functionality -- 7.4.2 Background -- 7.4.3 System Architecture and Setup -- 7.4.4 Application Testing -- 7.4.5 Results -- 7.4.6 Future Development -- 7.5 Smart Ski Application -- 7.5.1 Objectives and Functionality -- 7.5.2 Background -- 7.5.3 System Architecture and Setup -- 7.5.4 Application Tests -- 7.5.5 User Interfaces -- 7.5.6 Results -- 7.5.7 Future Development -- 7.6 Water Sports -- 7.6.1 Objectives and Functionality -- 7.6.2 Background -- 7.6.3 System Architecture and Setup -- 7.6.4 Results -- 7.6.5 Future Development -- 7.7 Swimming Rehabilitation Application -- 7.7.1 Objectives and Functionality -- 7.7.2 Background -- 7.7.3 System Architecture and Setup -- 7.7.4 Results -- 7.7.5 Future Development -- References -- Index |
Title | Biomechanical Biofeedback Systems and Applications |
URI | http://digital.casalini.it/9783319913490 https://cir.nii.ac.jp/crid/1130282268856834944 https://ebookcentral.proquest.com/lib/[SITE_ID]/detail.action?docID=5525864 http://link.springer.com/10.1007/978-3-319-91349-0 https://www.vlebooks.com/vleweb/product/openreader?id=none&isbn=9783319913490&uid=none |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1Lb9QwELZgudALb7GUoghx4BLkZPzIHrvVoqoCTm3VmzV-RFotbKVm4cCvZ5w42WRBQnCxEiuyre-zxhPPi7F3WJdBxDyVdJZBLoQWOWn5NpeIUEhvrbbRovv5izq_Ehc38mZfMqqNLtnZD-7nH-NK_odV6iNeY5TsPzA7DEod9Ez8UksMU3ug_A6vyfwag-ZjzG4LsV3f1nQIWXSblJm5S7w8Nk4PgrVzqzuNpYP7vqtvYTPtTNcARXVwDdBfA05-DwGiYxOIrlTMb8Jy7B8RY5nip4uc70-GwV9vuSxJEy-rWM75vtZ8xh6cri4-XQ-3WSUJKwWxhtYwZ5d1cbSG3qac0vpO5jxiR9hsSKyTyN81UUfABmNoKB352_V6ov4fWKxbReDyMZvF4JAn7F7YPmWP-pIYWZKQz1g5YSYbMZMlZjJiJhsz85xdf1xdnp3nqSxFjm36xdz64KR02taFCFWA0hE4Ah23ytd-oX3pbVAIzmKBngtdc0-iD5VyKGpAeMFm29tteMkyhNoXToMD0GLhCGEFGDhyCHFwnLO3I1zMj6-tCb0xI2AXfM6Oe7gM7fAu1Xlj6M8fSPuYsxNC0Lh1bItopyYmVVVJVcXURGLOsh5b046evILNankmZSkrRZ-87zE33fx9smtahwFDKzHtUgx_9ZfZjtnD_e59zWa7u-_hhNS6nX2T9tQvkPFAkA |
linkProvider | Library Specific Holdings |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&rft.genre=book&rft.title=Biomechanical+biofeedback+systems+and+applications&rft.au=Kos%2C+Anton&rft.au=Umek%2C+Anton&rft.date=2018-01-01&rft.pub=Springer&rft.isbn=9783319913483&rft_id=info:doi/10.1007%2F978-3-319-91349-0&rft.externalDocID=BB28822812 |
thumbnail_m | http://utb.summon.serialssolutions.com/2.0.0/image/custom?url=https%3A%2F%2Fvle.dmmserver.com%2Fmedia%2F640%2F97833199%2F9783319913490.jpg |
thumbnail_s | http://utb.summon.serialssolutions.com/2.0.0/image/custom?url=https%3A%2F%2Fmedia.springernature.com%2Fw306%2Fspringer-static%2Fcover-hires%2Fbook%2F978-3-319-91349-0 |