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{{Infobox Ligament |
{{Infobox ligament
Name = {{PAGENAME}} |
| Name = Plantar plate
Latin = ligamenta plantaria |
| Latin = ligamenta plantaria
GraySubject = 99 |
| Image =
GrayPage = 359 |
| Caption =
Image = |
| Image2 =
Caption = |
| Caption2 =
Image2 = |
| From = Metatarsal and phalanx
Caption2 = |
| To = Phalanx
From = Metatarsal/phalanx |
To = Phalanx |
MeshName = |
MeshNumber = |
<!-- 404
DorlandsPre = l_09 |
DorlandsSuf = 12492834 |
-->
}}
}}
In the human [[foot]], the '''[[Anatomical terms of location#Relative directions in the limbs|plantar]]''' or '''[[Anatomical terms of location#Relative directions in the limbs|volar]] plates''' (also called '''plantar''' or '''volar [[ligament]]s''') are [[Fibrocartilage|fibrocartilaginous]] structures found in the [[Metatarsophalangeal articulations|metatarsophalangeal]] (MTP) and [[Interphalangeal articulations of foot|interphalangeal]] (IP) joints. The anatomy and composition of the plantar plates is similar to the [[palmar plate]]s in the [[Metacarpophalangeal joint|metacarpophalangeal]] (MCP) and [[Interphalangeal articulations of hand|interphalangeal]] joints in the hand; the proximal origin is thin but the distal insertion is stout. Due to the weight-bearing nature of the human foot, the plantar plates are exposed to extension forces not present in the human hand.
In the human foot, the '''[[Anatomical terms of location#Relative directions in the limbs|plantar]]''' or '''[[Anatomical terms of location#Relative directions in the limbs|volar]] plates''' (also called '''plantar''' or '''volar [[ligament]]s''') are [[Fibrocartilage|fibrocartilaginous]] structures found in the [[Metatarsophalangeal articulations|metatarsophalangeal]] (MTP) and [[Interphalangeal articulations of foot|interphalangeal]] (IP) joints. The anatomy and composition of the plantar plates are similar to the [[palmar plate]]s in the [[Metacarpophalangeal joint|metacarpophalangeal]] (MCP) and [[Interphalangeal articulations of hand|interphalangeal joints in the hand]]; the proximal origin is thin but the distal insertion is stout. Due to the weight-bearing nature of the human foot, the plantar plates are exposed to extension forces not present in the human hand.
<ref name="Johnston-1994">{{harvnb|Johnston|Smith|Daniels|1994}}</ref>
<ref name="Johnston-1994">{{harvnb|Johnston|Smith|Daniels|1994}}</ref>


The plantar plate supports the weight of the body and restricts dorsiflexion, whilst the main [[Collateral ligaments of metatarsophalangeal articulations|collateral ligament]] and the accessory collateral ligament (together referred as the Collateral Ligament Complex, CLC), prevent motions in the transverse and sagittal planes.
The plantar plate supports the weight of the body and restricts dorsiflexion, whilst the main [[Collateral ligaments of metatarsophalangeal articulations|collateral ligament]] and the accessory collateral ligament (together referred as the collateral ligament complex, CLC) prevent motions in the transverse and sagittal planes.
<ref name="Mohana-Borges-2005-179">{{harvnb|Mohana-Borges|Theumann|Pfirrmann|Chung|2003| loc=Discussion, pp. 179–80}}</ref>
<ref name="Mohana-Borges-2005-179">{{harvnb|Mohana-Borges|Theumann|Pfirrmann|Chung|2003| loc=Discussion, pp. 179–80}}</ref>
The major difference between the plantar plates of the MTP and IP joints, is that they blend with the [[transverse metatarsal ligament]] in the MTP joints (not present in the toes). The MTP joint of the first toe differs from those of the other toes in that other muscles act on the joint, and in the presence of two sesamoid bones.
The major difference between the plantar plates of the MTP and IP joints is that they blend with the [[transverse metatarsal ligament]] in the MTP joints (not present in the toes). The MTP joint of the first toe differs from those of the other toes in that other muscles act on the joint, and in the presence of two sesamoid bones.


The plantar plate is firm but flexible fibrocartilage with a composition similar to that found in the [[Meniscus (anatomy)|menisci]] of the knee (composed roughly of 75% [[type-I collagen]]), and can thus withstand compressive loads and act as a supportive articular surface. Most of its fibers are oriented longitudinally, in the same direction as the plantar fascia, and the plate can thus sustain substantial tensile loads in this direction.
The plantar plate is firm but flexible fibrocartilage with a composition similar to that found in the [[Meniscus (anatomy)|menisci]] of the knee (composed roughly of 75% [[type-I collagen]]), and can thus withstand compressive loads and act as a supportive articular surface. Most of its fibers are oriented longitudinally, in the same direction as the plantar fascia, and the plate can thus sustain substantial tensile loads in this direction.
<ref name="Mohana-Borges-2005-179" />
<ref name="Mohana-Borges-2005-179" />


Line 30: Line 22:
At the metatarsophalangeal joint the plantar plate plays an important role in the foot's weight-bearing function.
At the metatarsophalangeal joint the plantar plate plays an important role in the foot's weight-bearing function.


The plantar plate is attached to the proximal phalanx, to the major longitudinal bands of the [[plantar fascia]], and to the collateral ligaments. Together with the collateral ligaments, it forms a soft tissue box which is connected to the sides of the metatarsal head. The plate from the substantial distal insertion of the plantar fascia and can withstand ''tensile'' loads in line with the fascia itself. The plate can witstand ''compressive'' loads from the metatarsal head because of the orientation of the fibers in its fibrocartilage.
The plantar plate is attached to the proximal phalanx, to the major longitudinal bands of the [[plantar fascia]], and to the collateral ligaments. Together with the collateral ligaments, it forms a soft tissue box which is connected to the sides of the metatarsal head. The plate from the substantial distal insertion of the plantar fascia and can withstand ''tensile'' loads in line with the fascia itself. The plate can withstand ''compressive'' loads from the metatarsal head because of the orientation of the fibers in its fibrocartilage.
<ref name="Deland-1995">{{harvnb|Deland|Lee|Sobel|DiCarlo|1995}}</ref>
<ref name="Deland-1995">{{harvnb|Deland|Lee|Sobel|DiCarlo|1995}}</ref>


The skeleton of the foot rests on a multi-layered ligamentous system of beams and trusses that responds to weight-bearing on irregular surfaces. A transverse system at the MTP joints is formed by the plantar plates and the [[deep transverse metatarsal ligament]]. The strong, longitudinal fibres of the deep [[plantar fascia]] are inserted along this transverse system to form a strong longitudinal system. The longitudinal system controls the longitudinal arches of the foot, whilst the transverse system controls the splay of the forefoot. Both systems are centered on the plantar plates and activated weight-bearing pressure on the metatarsal heads.
The skeleton of the foot rests on a multi-layered ligamentous system of beams and trusses that responds to weight-bearing on irregular surfaces. A transverse system at the MTP joints is formed by the plantar plates and the [[deep transverse metatarsal ligament]]. The strong, longitudinal fibres of the deep [[plantar fascia]] are inserted along this transverse system to form a strong longitudinal system. The longitudinal system controls the longitudinal arches of the foot, whilst the transverse system controls the splay of the forefoot. Both systems are centered on the plantar plates and activated weight-bearing pressure on the metatarsal heads.
<ref name="Stainsby-1997">{{harvnb|Stainsby|1997| p=60–1}}</ref>
<ref name="Stainsby-1997">{{harvnb|Stainsby|1997| pp=60–1}}</ref>


The tendon of the [[extensor digitorum longus muscle]] extends the MTP joint by using the plantar [[Fibrous connective tissue|fibro]][[Aponeurosis|aponeurotic]] structure as a sling. The muscle becomes a deforming force if the MTP joint is held in an extended position over a long time, such as in a [[high-heeled footwear]]. The muscle extends at the IP joints when the MTP joint is flexed or in neutral position. Flexion is primarily performed by intrinsic foot muscles; the second toe (the) is unique as it has two [[Dorsal interossei of the foot|dorsal interossei]] but no [[plantar interossei muscles]]. The [[Lumbrical muscle (foot)|lumbrical muscles]], attached to the medial side of the lesser toes, act as unopposed adductor, but become insufficient plantar flexors with chronic extension.
The tendon of the [[extensor digitorum longus muscle]] extends the MTP joint by using the plantar [[Fibrous connective tissue|fibro]][[Aponeurosis|aponeurotic]] structure as a sling. The muscle becomes a deforming force if the MTP joint is held in an extended position over a long time, such as in a [[high-heeled footwear]]. The muscle extends at the IP joints when the MTP joint is flexed or in neutral position. Flexion is primarily performed by intrinsic foot muscles; the second toe (the) is unique as it has two [[Dorsal interossei of the foot|dorsal interossei]] but no [[plantar interossei muscles]]. The [[Lumbrical muscle (foot)|lumbrical muscles]], attached to the medial side of the lesser toes, act as unopposed adductor, but become insufficient plantar flexors with chronic extension.
<ref name="Canale-2008">{{harvnb|Canale|Beaty|2008| loc=Anatomy}}</ref>
<ref name="Canale-2008">{{harvnb|Canale|Beaty|Ishikawa|2008| loc=Anatomy}}</ref>


== Notes ==
== Notes ==
{{reflist}}
{{Reflist}}


== References ==
== References ==
{{ref begin|colwidth=30em}}
{{ref begin|colwidth=30em}}
* {{cite web | ref = harv
* {{cite web
| last1 = Canale | first1 = S. Terry
|last1 = Canale
| last2 = Beaty | first2 = James H.
|first1 = S. Terry
|last2 = Beaty
| coauthors = Ishikawa, Susan N.; Ishikawa, Susan N.
|first2 = James H.
| title = Hammer Toe Correction
|last3 = Ishikawa
| publisher = Procedures Consult (Elsevier)
|first3 = Susan N.
| url = http://www.proceduresconsult.com/medical-procedures/hammer-toe-correction-OR-procedure.aspx
|title = Hammer Toe Correction
| year = 2008 | accessdate = November 2010
|publisher = Procedures Consult (Elsevier)
|url = http://www.proceduresconsult.com/medical-procedures/hammer-toe-correction-OR-procedure.aspx
|year = 2008
|access-date = 25 November 2010
|url-status = dead
|archive-url = https://web.archive.org/web/20100726060338/http://www.proceduresconsult.com/medical-procedures/hammer-toe-correction-OR-procedure.aspx
|archive-date = 2010-07-26
}}
}}
* {{cite journal | ref = harv
* {{cite journal | last1 = Deland | first1 = JT
| last1 = Deland | first1 = JT
| last2 = Lee | first2 = KT
| last2 = Lee | first2 = KT
| last3 = Sobel | first3 = M
| last3 = Sobel | first3 = M
| last4 = DiCarlo | first4 = EF
| title = Anatomy of the plantar plate and its attachments in the lesser metatarsal phalangeal joint
| last4 = DiCarlo | first4 = EF
| journal = Foot Ankle Int.|date=August 1995 | volume = 16 | issue = 8 | pages = 480–6
| title = Anatomy of the plantar plate and its attachments in the lesser metatarsal phalangeal joint
| pmid = 8520660 | doi=10.1177/107110079501600804
| journal = Foot Ankle Int.| year = 1995 | month = August | volume = 16 | issue = 8 | pages = 480-6
| pmid = 8520660
| s2cid = 24841493 }}
* {{cite journal | last1 = Johnston | first1 = RB 3rd
| last2 = Smith | first2 = J
| last3 = Daniels | first3 = T
| title = The plantar plate of the lesser toes: an anatomical study in human cadavers
| journal = Foot Ankle Int. |date=May 1994 | volume = 15 | issue = 5 | pages = 276–82
| pmid = 7951967 | doi=10.1177/107110079401500508
| s2cid = 41157698 }}
* {{cite journal | last1 = Mohana-Borges | first1 = Aurea V. R.
| last2 = Theumann | first2 = Nicolas H.
| last3 = Pfirrmann | first3 = Christian W. A.
| last4 = Chung | first4 = Christine B.
|author5=Resnick, Donald L. |author6=Trudell, Debra J.
| title = Lesser Metatarsophalangeal Joints: Standard MR Imaging, MR Arthrography, and MR Bursography—Initial Results in 48 Cadaveric Joints
| journal = Radiology |date=April 2003 | volume = 227 | issue = 1 | pages = 175–182
| doi = 10.1148/radiol.2271020283 | pmid=12668744
}}
}}
* {{cite journal | ref = harv
* {{cite journal | last = Stainsby | first = G D
| title = Pathological anatomy and dynamic effect of the displaced plantar plate and the importance of the integrity of the plantar plate-deep transverse metatarsal ligament tie-bar.
| last1 = Johnston | first1 = RB 3rd
| journal = Annals of the Royal College of Surgeons of England |date=January 1997 | volume = 79 | issue = 1 | pages = 58–68
| last2 = Smith | first2 = J
| pmc = 2502622 | pmid=9038498
| last3 = Daniels | first3 = T
| title = The plantar plate of the lesser toes: an anatomical study in human cadavers
| journal = Foot Ankle Int. | year = 1994 | month = May | volume = 15 | issue = 5 | pages = 276-82
| pmid = 7951967
}}
* {{cite journal | ref = harv
| last1 = Mohana-Borges | first1 = Aurea V. R.
| last2 = Theumann | first2 = Nicolas H.
| last3 = Pfirrmann | first3 = Christian W. A.
| last4 = Chung | first4 = Christine B.
| coauthors = Resnick, Donald L.; Trudell, Debra J.
| title = Lesser Metatarsophalangeal Joints: Standard MR Imaging, MR Arthrography, and MR Bursography—Initial Results in 48 Cadaveric Joints
| journal = Radiology | year = 2003 | month = April | issue = 227 | pages = 175-182
| doi = 10.1148/radiol.2271020283
}}
* {{cite journal | ref = harv
| last = Stainsby | first = G D
| title = Pathological anatomy and dynamic effect of the displaced plantar plate and the importance of the integrity of the plantar plate-deep transverse metatarsal ligament tie-bar.
| journal = Ann R Coll Surg Engl. | year = 1997 | month = January | volume = 79 | issue = 1 | pages = 58-68
| pmc = 2502622
}}
}}
{{ref end}}
{{ref end}}


{{Joints of lower limbs}}
{{Joints of lower limbs}}
{{Authority control}}


[[Category:Ligaments of the lower limb]]
[[Category:Ligaments of the lower limb]]

Latest revision as of 20:03, 28 March 2021

Plantar plate
Details
FromMetatarsal and phalanx
ToPhalanx
Identifiers
Latinligamenta plantaria
MeSHD000069262
TA98A03.6.10.803
FMA71425
Anatomical terminology

In the human foot, the plantar or volar plates (also called plantar or volar ligaments) are fibrocartilaginous structures found in the metatarsophalangeal (MTP) and interphalangeal (IP) joints. The anatomy and composition of the plantar plates are similar to the palmar plates in the metacarpophalangeal (MCP) and interphalangeal joints in the hand; the proximal origin is thin but the distal insertion is stout. Due to the weight-bearing nature of the human foot, the plantar plates are exposed to extension forces not present in the human hand. [1]

The plantar plate supports the weight of the body and restricts dorsiflexion, whilst the main collateral ligament and the accessory collateral ligament (together referred as the collateral ligament complex, CLC) prevent motions in the transverse and sagittal planes. [2] The major difference between the plantar plates of the MTP and IP joints is that they blend with the transverse metatarsal ligament in the MTP joints (not present in the toes). The MTP joint of the first toe differs from those of the other toes in that other muscles act on the joint, and in the presence of two sesamoid bones.

The plantar plate is firm but flexible fibrocartilage with a composition similar to that found in the menisci of the knee (composed roughly of 75% type-I collagen), and can thus withstand compressive loads and act as a supportive articular surface. Most of its fibers are oriented longitudinally, in the same direction as the plantar fascia, and the plate can thus sustain substantial tensile loads in this direction. [2]

Metatarsophalangeal joints[edit]

At the metatarsophalangeal joint the plantar plate plays an important role in the foot's weight-bearing function.

The plantar plate is attached to the proximal phalanx, to the major longitudinal bands of the plantar fascia, and to the collateral ligaments. Together with the collateral ligaments, it forms a soft tissue box which is connected to the sides of the metatarsal head. The plate from the substantial distal insertion of the plantar fascia and can withstand tensile loads in line with the fascia itself. The plate can withstand compressive loads from the metatarsal head because of the orientation of the fibers in its fibrocartilage. [3]

The skeleton of the foot rests on a multi-layered ligamentous system of beams and trusses that responds to weight-bearing on irregular surfaces. A transverse system at the MTP joints is formed by the plantar plates and the deep transverse metatarsal ligament. The strong, longitudinal fibres of the deep plantar fascia are inserted along this transverse system to form a strong longitudinal system. The longitudinal system controls the longitudinal arches of the foot, whilst the transverse system controls the splay of the forefoot. Both systems are centered on the plantar plates and activated weight-bearing pressure on the metatarsal heads. [4]

The tendon of the extensor digitorum longus muscle extends the MTP joint by using the plantar fibroaponeurotic structure as a sling. The muscle becomes a deforming force if the MTP joint is held in an extended position over a long time, such as in a high-heeled footwear. The muscle extends at the IP joints when the MTP joint is flexed or in neutral position. Flexion is primarily performed by intrinsic foot muscles; the second toe (the) is unique as it has two dorsal interossei but no plantar interossei muscles. The lumbrical muscles, attached to the medial side of the lesser toes, act as unopposed adductor, but become insufficient plantar flexors with chronic extension. [5]

Notes[edit]

References[edit]

  • Canale, S. Terry; Beaty, James H.; Ishikawa, Susan N. (2008). "Hammer Toe Correction". Procedures Consult (Elsevier). Archived from the original on 2010-07-26. Retrieved 25 November 2010.
  • Deland, JT; Lee, KT; Sobel, M; DiCarlo, EF (August 1995). "Anatomy of the plantar plate and its attachments in the lesser metatarsal phalangeal joint". Foot Ankle Int. 16 (8): 480–6. doi:10.1177/107110079501600804. PMID 8520660. S2CID 24841493.
  • Johnston, RB 3rd; Smith, J; Daniels, T (May 1994). "The plantar plate of the lesser toes: an anatomical study in human cadavers". Foot Ankle Int. 15 (5): 276–82. doi:10.1177/107110079401500508. PMID 7951967. S2CID 41157698.{{cite journal}}: CS1 maint: numeric names: authors list (link)
  • Mohana-Borges, Aurea V. R.; Theumann, Nicolas H.; Pfirrmann, Christian W. A.; Chung, Christine B.; Resnick, Donald L.; Trudell, Debra J. (April 2003). "Lesser Metatarsophalangeal Joints: Standard MR Imaging, MR Arthrography, and MR Bursography—Initial Results in 48 Cadaveric Joints". Radiology. 227 (1): 175–182. doi:10.1148/radiol.2271020283. PMID 12668744.
  • Stainsby, G D (January 1997). "Pathological anatomy and dynamic effect of the displaced plantar plate and the importance of the integrity of the plantar plate-deep transverse metatarsal ligament tie-bar". Annals of the Royal College of Surgeons of England. 79 (1): 58–68. PMC 2502622. PMID 9038498.