Jove
Visualize
お問い合わせ
JoVE
x logofacebook logolinkedin logoyoutube logo
JoVEについて
概要リーダーシップブログJoVEヘルプセンター
著者向け
出版プロセス編集委員会範囲と方針査読よくある質問投稿
図書館員向け
推薦の声購読アクセスリソース図書館諮問委員会よくある質問
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experimentsアーカイブ
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教員リソースセンター教員サイト
利用規約
プライバシーポリシー
ポリシー

関連する概念動画

Support Reactions in Three Dimensions01:27

Support Reactions in Three Dimensions

1.6K
Support reactions in three dimensions help maintain the stability and equilibrium of various structures and systems. These reactions prevent the system from translating and rotating, ensuring the design can withstand external forces and perform its intended function efficiently and safely. Some of the supports providing support reactions in three dimensions are discussed below:
Ball and Socket Joint is one of the supports allowing free rotation about any axis. This freedom of rotation is...
1.6K
Ankle Joint01:10

Ankle Joint

2.7K
The ankle is formed by the talocrural joint (crural = leg). It consists of the articulations between the talus bone of the foot and the distal ends of the tibia and fibula of the leg. The superior aspect of the talus bone is square-shaped and has three areas of articulation. The top of the talus articulates with the inferior tibia. This is the portion of the ankle joint that carries the body weight between the leg and foot. The sides of the talus are firmly held in position by the articulations...
2.7K

こちらも読む

関連記事

共著者、ジャーナル、引用グラフによってこの研究に関連する記事。

並び替え
Same author

Comparative biomechanical analysis of volleyball court shoes during sport-specific tasks in competitive adolescent female volleyball players.

Frontiers in sports and active living·2026
Same author

Parental perspectives on youth sport specialization: insights on motivators across specialization levels.

Frontiers in sports and active living·2026
Same author

Stepping into a safer movement: The relationship between foot progression angle and lower extremity biomechanics during a 45-degree run-cut maneuver.

Clinical biomechanics (Bristol, Avon)·2025
Same author

Overhead support systems differentially affect gait analysis of overground and treadmill walking.

Gait & posture·2025
Same author

Electromyography-based fatigue assessment of an upper body exoskeleton during automotive assembly.

Wearable technologies·2024
Same author

Dual tasking increases kinematic and kinetic risk factors of ACL injury.

Sports biomechanics·2023

関連する実験動画

Updated: Jan 8, 2026

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton
09:46

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton

Published on: June 16, 2016

21.3K

人間工学的に設計された杖は、歩行中に標準的な杖と比較して、地面反力、関節モーメント、および脇の下の圧力を軽減します

Shekoofe Saadat1,2, Josh Riesenberg3, Katherine Bricarell4,5

  • 1Department of Kinesiology and Health, Iowa State University, Ames, IA 50011;Department of Sport Science and Health Education, Simpson College, N C Street, Indianola, IA 50125.

Journal of biomechanical engineering
|December 19, 2025
PubMed
まとめ

松葉杖歩行は、自力歩行と比較して身体的負担が増加します。人間工学的な松葉杖は脇の下の圧力を軽減し快適性を向上させますが、標準的な松葉杖は最初は適応しやすい場合があります。

キーワード:
松葉杖歩行分析関節角度関節モーメント運動学モーションキャプチャ圧力

さらに関連する動画

Use of a Foot-Induced Digitally Controlled Resistance Device for Functional Magnetic Resonance Imaging Evaluation in Patients with Foot Paresis
08:55

Use of a Foot-Induced Digitally Controlled Resistance Device for Functional Magnetic Resonance Imaging Evaluation in Patients with Foot Paresis

Published on: July 7, 2023

597
Oscillation and Reaction Board Techniques for Estimating Inertial Properties of a Below-knee Prosthesis
08:08

Oscillation and Reaction Board Techniques for Estimating Inertial Properties of a Below-knee Prosthesis

Published on: May 8, 2014

17.2K

関連する実験動画

Last Updated: Jan 8, 2026

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton
09:46

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton

Published on: June 16, 2016

21.3K
Use of a Foot-Induced Digitally Controlled Resistance Device for Functional Magnetic Resonance Imaging Evaluation in Patients with Foot Paresis
08:55

Use of a Foot-Induced Digitally Controlled Resistance Device for Functional Magnetic Resonance Imaging Evaluation in Patients with Foot Paresis

Published on: July 7, 2023

597
Oscillation and Reaction Board Techniques for Estimating Inertial Properties of a Below-knee Prosthesis
08:08

Oscillation and Reaction Board Techniques for Estimating Inertial Properties of a Below-knee Prosthesis

Published on: May 8, 2014

17.2K

科学分野:

  • 生体力学
  • 整形外科学
  • ヒューマンファクター工学

背景:

  • 松葉杖歩行は、自力歩行よりも効率が悪く、潜在的にリスクが高いです。
  • ユーザーの安全性と快適性にとって、生体力学的な違いと松葉杖のデザインの影響を理解することは非常に重要です。

主な方法:

  • 運動学および動力学データを取得するために、モーションキャプチャとフォースプラットフォームを利用しました。
  • 脇の下の圧力を測定するために、柔軟な圧力パッドを使用しました。
  • 松葉杖の快適性と使いやすさに関するユーザーからの主観的なフィードバックを収集しました。

結論:

  • 松葉杖の使用は歩行の生体力学を著しく変化させ、関節への負荷を増加させます。
  • 人間工学的な松葉杖は、特に脇の下の圧力軽減と快適性において利点を提供します。
  • 標準的な松葉杖は、即時の使いやすさと長期的な快適性/効率とのトレードオフを示唆する、習熟時間を短縮する可能性があります。