Lower extremity function for shock attenuation during landing on one leg

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Deutscher übersetzter Titel:Schockdaempfende Funktionen der unteren Extremitaeten bei Landung auf einem Bein
Autor:Maeda, A.; Ebashi, H.; Nishizono, H.; Shibayama, H.
Erschienen in:Japanese journal of physical fitness and sports medicine
Veröffentlicht:43 (1994), 3, S. 219-227, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource
Sprache:Japanisch
ISSN:0039-906X, 1881-4751
Schlagworte:
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Erfassungsnummer:PU199704204305
Quelle:BISp
id PU199704204305
bisp-collection db
format Literatur
last_indexed 2009-04-27T15:32:46Z
first_indexed 2001-07-24T13:34:25Z
publication_source BISp
subformat Zeitschriftenartikel
hierarchy_top_id JO00000000690
hierarchy_parent_id JOI199400030000690
hierarchy_top_title Japanese journal of physical fitness and sports medicine
hierarchy_parent_title Japanese journal of physical fitness and sports medicine, 1994, 3
is_hierarchy_id PU199704204305
is_hierarchy_title Lower extremity function for shock attenuation during landing on one leg
hierarchy_sequence 0219
recordtype bisparticle
publishDate 1994
publishDate_facet 1994
language jpn
title Lower extremity function for shock attenuation during landing on one leg
spellingShingle Lower extremity function for shock attenuation during landing on one leg
Belastung, bilaterale
Belastung, unilaterale
Biomechanik
Bodenreaktionskraft
Extremität, untere
Gelenkwinkel
Landung
Muskelaktivität
Schockabsorption
title_sort lower extremity function for shock attenuation during landing on one leg
title_short Lower extremity function for shock attenuation during landing on one leg
title_alt Schockdaempfende Funktionen der unteren Extremitaeten bei Landung auf einem Bein
title_alt_lang deu
media_type Gedruckte Ressource
city Tokio
abstract A study was conducted to investigate the cushioning effects of lower extremity functions on shock attenuation during landing on one leg. Optical methods were used to investigate the cushioning effects of lower extremity functions, since these facilitated the quantitation of kinematic variables such as angle, change in angle, position, displacement and velocity during the landing. The subjects were 5 healthy students ranging in age from 21 to 24 years. Ground reaction force (GRF) was measured with a force platform. The impact force peaks showed vertical force-time averages for 1 subject landing on one leg or two legs for 10 trials each from a height of 10 cm. The peak/body weight of impact force of GRF upon landing was attenuated by the cushioning effects of the lower extremity functions, i.e. bending of the knee and ankle joints, more effectively on two legs than on one. Supination and pronation of the ankle joint influenced the impact force peaks, and the results of this experiment demonstrated significant difference between the number of discharge bursts of leg muscles upon landing on one leg and those landing on two, the former being higher. Verf.-Referat
abstract_lang eng
abstract_type author
author2 Maeda, A.
Ebashi, H.
Nishizono, H.
Shibayama, H.
author_facet Maeda, A.
Ebashi, H.
Nishizono, H.
Shibayama, H.
author2-role Autor
Autor
Autor
Autor
author2-authorityid



author_author_facet Maeda, A.
Ebashi, H.
Nishizono, H.
Shibayama, H.
author2-synonym



author2_hierarchy_facet 0/Autor/
1/Autor/Maeda, A./
0/Autor/
1/Autor/Ebashi, H./
0/Autor/
1/Autor/Nishizono, H./
0/Autor/
1/Autor/Shibayama, H./
issn 0039-906X
1881-4751
spelling 0039-906X
1881-4751
TAKAA
600775-2
Belastung, bilaterale
Belastung, unilaterale
Biomechanik
Bodenreaktionskraft
Extremität, untere
Gelenkwinkel
Landung
Muskelaktivität
Schockabsorption
bilateral load
biomechanics
ground reaction force
joint angle
landing
lower extremity
muscle activity
shock absorption
unilateral load
Landephase
Landetechnik
Gelenkstellung
Körperwinkel
Belastung
Belastung, einseitige
Reaktionskraft
Muskelaktion
Bein
Beinversehrter
Beinigkeit
Beinamputierter
Bewegung, physikalische
Merkmal, biomechanisches
Biokinematik
Prinzip, biomechanisches
shock attenuation
articular angle
lower limb
Lower extremity function for shock attenuation during landing on one leg
PU199704204305
199704204305
coden TAKAA
zdb 600775-2
location_hierarchy_facet 0/Japan/
topic Belastung, bilaterale
Belastung, unilaterale
Biomechanik
Bodenreaktionskraft
Extremität, untere
Gelenkwinkel
Landung
Muskelaktivität
Schockabsorption
topic_facet Belastung, bilaterale
Belastung, unilaterale
Biomechanik
Bodenreaktionskraft
Extremität, untere
Gelenkwinkel
Landung
Muskelaktivität
Schockabsorption
topic_en bilateral load
biomechanics
ground reaction force
joint angle
landing
lower extremity
muscle activity
shock absorption
unilateral load
topic_en_facet bilateral load
biomechanics
ground reaction force
joint angle
landing
lower extremity
muscle activity
shock absorption
unilateral load
synonym Landephase
Landetechnik
Gelenkstellung
Körperwinkel
Belastung
Belastung, einseitige
Reaktionskraft
Muskelaktion
Bein
Beinversehrter
Beinigkeit
Beinamputierter
Bewegung, physikalische
Merkmal, biomechanisches
Biokinematik
Prinzip, biomechanisches
synonym_en shock attenuation
articular angle
lower limb
journal_facet Japanese journal of physical fitness and sports medicine
container_title Japanese journal of physical fitness and sports medicine
container_volume 43
container_issue 3
container_start_page S. 219-227
has_references 1
institution BISp
journal_fac JO00000000690
journal_year 1994
journal_issue 3
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score 13,558404