Plantar heel pain is a common musculoskeletal foot disorder that can have a negative impact on activities of daily living and it is of multifactorial etiology. A variety of mechanical factors, which result in excessive load at the plantar fascia insertion, are thought to contribute to the onset of the condition. This review presents the evidence for associations between commonly assessed mechanical factors and plantar heel pain, which could guide management. Plantar heel pain is associated with a higher BMI in non-athletic groups, reduced dorsiflexion range of motion, as well as reduced strength in specific foot and ankle muscle groups. There is conflicting, or insufficient evidence regarding the importance of foot alignment and first metatarsophalangeal joint range of motion. Plantar heel pain appears to be common in runners, with limited evidence for greater risk being associated with higher mileage or previous injuries. Conflicting evidence exists regarding the relationship between work-related standing and plantar heel pain, however, longer standing duration may be associated with plantar heel pain in specific worker groups. The evidence presented has been generated through studies with cross-sectional designs, therefore it is not known whether any of these associated factors have a causative relationship with plantar heel pain. Longitudinal studies are needed to ascertain whether the strength and flexibility impairments associated with plantar heel pain are a cause or consequence of the condition, as well as to establish activity thresholds that increase risk. Intervention approaches should consider strategies that improve strength and flexibility, as well as those that influence plantar fascia loading such as body weight reduction, orthoses and management of athletic and occupational workload.
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http://dx.doi.org/10.1016/j.foot.2019.08.007 | DOI Listing |
J Am Podiatr Med Assoc
January 2025
†Jesse Brown VA Medical Center,820 S Damen Ave, Chicago, IL.
Total contact casting is the gold standard for plantar foot ulcers but has been questioned in heel pressure ulcers. Current offloading of heel ulcers is typically removable offloading boots. We describe using a modified posterior splint to offload heel ulcers in nonweightbearing patients.
View Article and Find Full Text PDFJ Funct Morphol Kinesiol
January 2025
Faculty of Sport and Physical Education, University of Belgrade, 11000 Belgrade, Serbia.
Foam rolling is widespread and deeply rooted in exercise practice. The optimal duration and role of this treatment still lack scientific consensus. A relatively novel foam rolling treatment that combines vibration during application targets different muscle characteristics that are not well understood.
View Article and Find Full Text PDFFront Bioeng Biotechnol
January 2025
Department of Physical Education, Tsinghua University, Beijing, China.
Purpose: Plantar soft tissue properties affect foot biomechanics during movement. This study aims to explore the relationship between plantar pressure features and soft tissue stiffness through interpretable neural network model. The findings could inform orthotic insole design.
View Article and Find Full Text PDFFoot Ankle Int
January 2025
Sirindhorn Hospital, Bangkok Metropolitan Administration, Bangkok, Thailand.
Background: To determine whether a combined endoscopic suprafascial and infrafascial approach with medial and lateral portals is a safe and effective technique for the endoscopic treatment of chronic plantar fasciitis with plantar heel spur pain.
Methods: An interventional, prospective study was conducted. A total of 61 patients with plantar fasciitis with plantar heel spur pain underwent an endoscopic plantar fasciotomy with plantar heel spur resection, using a combined suprafascial and infrafascial approach between January 2018 and August 2022.
Med Biol Eng Comput
January 2025
Auckland Bioengineering Institute, The University of Auckland, Auckland, New Zealand.
Lower limb biomechanics of chronic ankle instability (CAI) individuals has been widely investigated, but few have evaluated the internal foot mechanics in CAI. This study evaluated bone and soft tissue stress in CAI contrasted with copers and non-injured participants during a cutting task. Integrating scanned 3D foot shapes and free-form deformation, sixty-six personalized finite element foot models were developed.
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