Design and investigation of the effectiveness of a metatarsophalangeal assistive device on the muscle activities of the lower extremity
The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremiti...
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Published in | PloS one Vol. 17; no. 2; p. e0263176 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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10.02.2022
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Abstract | The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremities during walking while wearing the device. The MTP assistive device is designed to support MTP flexion by transmitting force through a cable that runs parallel with the plantar fascia. Eight participants were instructed to walk at a constant speed on a treadmill while wearing the device. The muscle activities of their lower extremities and MTP joint kinematics were obtained during walking under both actuated and non-actuated conditions. Paired
t
-tests were performed to compare the differences in each dependent variable between the two conditions. The muscle activity of the MTP flexor was significantly reduced during walking under actuated conditions (
p
= 0.013), whereas no differences were found in the muscle activities of other muscles or in the MTP joint angle between actuated and non-actuated conditions (
p
> 0.05 for all comparisons). In conclusion, the cable-driven MTP assistive device is able to properly assist the MTP flexor without interfering with the action of other muscles in the lower extremities; as such, this MTP assistive device, when integrated into existing exoskeleton designs, has the potential to offer improved walking assistance by reducing the amount of muscle activity needed from the MTP flexor. |
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AbstractList | The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremities during walking while wearing the device. The MTP assistive device is designed to support MTP flexion by transmitting force through a cable that runs parallel with the plantar fascia. Eight participants were instructed to walk at a constant speed on a treadmill while wearing the device. The muscle activities of their lower extremities and MTP joint kinematics were obtained during walking under both actuated and non-actuated conditions. Paired t-tests were performed to compare the differences in each dependent variable between the two conditions. The muscle activity of the MTP flexor was significantly reduced during walking under actuated conditions (p = 0.013), whereas no differences were found in the muscle activities of other muscles or in the MTP joint angle between actuated and non-actuated conditions (p > 0.05 for all comparisons). In conclusion, the cable-driven MTP assistive device is able to properly assist the MTP flexor without interfering with the action of other muscles in the lower extremities; as such, this MTP assistive device, when integrated into existing exoskeleton designs, has the potential to offer improved walking assistance by reducing the amount of muscle activity needed from the MTP flexor. The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremities during walking while wearing the device. The MTP assistive device is designed to support MTP flexion by transmitting force through a cable that runs parallel with the plantar fascia. Eight participants were instructed to walk at a constant speed on a treadmill while wearing the device. The muscle activities of their lower extremities and MTP joint kinematics were obtained during walking under both actuated and non-actuated conditions. Paired t -tests were performed to compare the differences in each dependent variable between the two conditions. The muscle activity of the MTP flexor was significantly reduced during walking under actuated conditions ( p = 0.013), whereas no differences were found in the muscle activities of other muscles or in the MTP joint angle between actuated and non-actuated conditions ( p > 0.05 for all comparisons). In conclusion, the cable-driven MTP assistive device is able to properly assist the MTP flexor without interfering with the action of other muscles in the lower extremities; as such, this MTP assistive device, when integrated into existing exoskeleton designs, has the potential to offer improved walking assistance by reducing the amount of muscle activity needed from the MTP flexor. The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremities during walking while wearing the device. The MTP assistive device is designed to support MTP flexion by transmitting force through a cable that runs parallel with the plantar fascia. Eight participants were instructed to walk at a constant speed on a treadmill while wearing the device. The muscle activities of their lower extremities and MTP joint kinematics were obtained during walking under both actuated and non-actuated conditions. Paired t-tests were performed to compare the differences in each dependent variable between the two conditions. The muscle activity of the MTP flexor was significantly reduced during walking under actuated conditions (p = 0.013), whereas no differences were found in the muscle activities of other muscles or in the MTP joint angle between actuated and non-actuated conditions (p > 0.05 for all comparisons). In conclusion, the cable-driven MTP assistive device is able to properly assist the MTP flexor without interfering with the action of other muscles in the lower extremities; as such, this MTP assistive device, when integrated into existing exoskeleton designs, has the potential to offer improved walking assistance by reducing the amount of muscle activity needed from the MTP flexor.The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The purpose of this study was to develop a new MTP assistive device and investigate its effectiveness on the muscle activities of the lower extremities during walking while wearing the device. The MTP assistive device is designed to support MTP flexion by transmitting force through a cable that runs parallel with the plantar fascia. Eight participants were instructed to walk at a constant speed on a treadmill while wearing the device. The muscle activities of their lower extremities and MTP joint kinematics were obtained during walking under both actuated and non-actuated conditions. Paired t-tests were performed to compare the differences in each dependent variable between the two conditions. The muscle activity of the MTP flexor was significantly reduced during walking under actuated conditions (p = 0.013), whereas no differences were found in the muscle activities of other muscles or in the MTP joint angle between actuated and non-actuated conditions (p > 0.05 for all comparisons). In conclusion, the cable-driven MTP assistive device is able to properly assist the MTP flexor without interfering with the action of other muscles in the lower extremities; as such, this MTP assistive device, when integrated into existing exoskeleton designs, has the potential to offer improved walking assistance by reducing the amount of muscle activity needed from the MTP flexor. |
Audience | Academic |
Author | Shin, Choongsoo S. Lee, Donghwan Kim, Pankwon Lee, Jinkyu Kim, Jiyoun Jeong, Jiyoung |
AuthorAffiliation | National Tsing Hua University, TAIWAN Department of Mechanical Engineering, Sogang University, Seoul, Republic of Korea |
AuthorAffiliation_xml | – name: Department of Mechanical Engineering, Sogang University, Seoul, Republic of Korea – name: National Tsing Hua University, TAIWAN |
Author_xml | – sequence: 1 givenname: Jiyoun surname: Kim fullname: Kim, Jiyoun – sequence: 2 givenname: Jinkyu orcidid: 0000-0003-4698-4538 surname: Lee fullname: Lee, Jinkyu – sequence: 3 givenname: Donghwan surname: Lee fullname: Lee, Donghwan – sequence: 4 givenname: Jiyoung surname: Jeong fullname: Jeong, Jiyoung – sequence: 5 givenname: Pankwon surname: Kim fullname: Kim, Pankwon – sequence: 6 givenname: Choongsoo S. orcidid: 0000-0003-4674-6222 surname: Shin fullname: Shin, Choongsoo S. |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35143528$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1109_TNSRE_2023_3336360 crossref_primary_10_3390_jcm13247771 |
Cites_doi | 10.1093/rheumatology/kei168 10.1038/nature14288 10.1109/TBME.2014.2307698 10.1016/j.foot.2008.11.012 10.1016/j.jbiomech.2010.08.003 10.1186/1757-1146-7-13 10.1109/TBME.2016.2586891 10.1016/j.clinbiomech.2015.08.002 10.1242/jeb.019885 10.1016/j.robot.2014.09.032 10.1109/TBME.2007.901024 10.2106/00004623-199909000-00005 10.1016/j.gaitpost.2018.03.001 10.1682/JRRD.2013.05.0126 10.1016/S1050-6411(00)00027-4 10.1115/1.4032274 10.1016/j.gaitpost.2007.07.007 10.1177/107110079401500708 10.1109/10.102791 10.1016/j.gaitpost.2009.06.002 10.1016/S0268-0033(98)00012-6 10.1109/TII.2020.2974232 10.3389/fnins.2018.00069 10.3389/fbioe.2014.00073 10.1371/journal.pone.0152602 10.2106/00004623-199507000-00011 10.1016/0966-6362(93)90054-5 10.1054/foot.1999.0518 |
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Snippet | The metatarsophalangeal (MTP) joint is not considered in most current walking assistive devices even though it plays an important role during walking. The... |
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SubjectTerms | Adult Ambulation aids Ankle Biology and Life Sciences Biomechanical Phenomena Complications and side effects Dependent variables Design Electromyography Engineering and Technology Equipment Design Exoskeleton Exoskeletons Extremities Fascia Female Gait Humans Joints (anatomy) Kinematics Lower Extremity - physiology Male Mechanical engineering Medicine and Health Sciences Metabolism Metatarsophalangeal Joint - physiology Muscle, Skeletal - physiology Muscles Open source software Patient outcomes Physical Sciences Plantar tissues Self-Help Devices Simulation Treadmills Walking Walking - physiology Young Adult |
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Title | Design and investigation of the effectiveness of a metatarsophalangeal assistive device on the muscle activities of the lower extremity |
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