• Title/Summary/Keyword: Anterior horn

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Abnormal insertion of the anterior horn of medial meniscus to misdiagnosis to horizontal tear - A case report - (횡 파열로 오인하게 하는 내측 반월상 연골 전각부의 비정상적 삽입 - 증례 보고 -)

  • Kim, Dong-Hee;Gwark, Ji-Yong;Park, Jin-Seung;Hwang, Sun-Chul
    • Journal of Korean Orthopaedic Sports Medicine
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    • v.10 no.2
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    • pp.124-128
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    • 2011
  • Many types of meniscal anomalies have been reported. The authors encountered one case of anomalous insertion of the anterior horn of the medial meniscus to the anterior horn of the lateral meniscus, which ran up along the course of the transverse ligament. This anomalous band was detected in MRI of the knee as a horizontal tear of anterior horn of the lateral meniscus but found during the operation as a anomalous insertion of the anterior horn of the medial meniscus. We report the case with a review of the literature.

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Anomalous Insertion of Posterior Horn of Medial Meniscus - A Case Report - (내측 반월상 연골 후각의 비정상적 부착 - 1례 보고 -)

  • Min Byoung-Hyun;Ok Soon-Jong
    • Journal of the Korean Arthroscopy Society
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    • v.5 no.1
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    • pp.45-48
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    • 2001
  • The anterior horn of the medial meniscus is attached to the anterior surface of the tibia. The anterior horns of the medial and lateral menisci are connect with the transverse ligament. The posterior horn of the medial meniscus is firmly attached to the posterior aspect of the tibia just anterior to the insertion of the posterior cruciate ligament. The authors incidentally found an anomalous insertion of posterior horn of medial meniscus into the anterior horn area during arthroscopic examination in the symptomatic knee joint, which had been ruptured anterior cruciate ligament, and report with literature review.

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A Simple Arthroscopic Resection Technique for Inferior Leaf of the Deep Horizontal Tear in the Anterior Meniscal Horn - Technical Note - (반월상 연골 전각의 깊은 수평 파열에서의 간단한 관절경 하부 연골편 절제술 - 수술술기 -)

  • Lee, Kee-Byoung;Lee, Seok-Beom;Chang, Ho-Guen;Moon, Young-Wan;Kang, Ki-Hoon;Kim, Kye-Won
    • Journal of the Korean Arthroscopy Society
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    • v.3 no.1
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    • pp.62-65
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    • 1999
  • A new method for arthroscopic resection of the inferior leaf for the horizontal tear in the anterior horn of the meniscus extending deep toward the capsule was developed. Resection of this tear is difficult-perhaps more so than any other meniscal tear. At arthroscopy, a small incision on the meniscotibial ligament of the anterior horn was made after the deep horizontal tear was carefully debrided. A retrograde punch was introduced through the incision and underneath the inferior leaf of the anterior meniscus. The inferior leaf of the anterior horn was resected by the punch without difficulty. This simple technique minimizes the risk of superior leaf injury and can be used for a horizontal tear in the anterior horn as well as the mid horn with sweeping motion of the retrograde punch.

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Anomalous Insertion of the Anterior horn of the Discoid Lateral Meniscus into the Anterior ACL - A Case Report - (외측 원판형 연골 전각부의 전방십자인대 전방부로의 부착변형에 관한 증례보고)

  • Lee, Sang-Hoon;Yi, Seung-Rim;Noh, Jung-Ho;Ryu, Ho-Kwang
    • Journal of the Korean Arthroscopy Society
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    • v.13 no.2
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    • pp.165-169
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    • 2009
  • The lateral meniscus is morphologically more variable than the medial meniscus. An abnormal lateral meniscus also varies with respect to its size, shape and stability, and such variations can occur in any patient of any age. The most common variant is a discoid lateral meniscus. We recently encountered a patient with a discoid lateral meniscus for which the anterior horn of the meniscus was anomalously inserted into the anterior ACL. The patient was forty five years old women who had persistent pain for three to four years without any specific trauma history. She was preoperatively diagnosed as having discoid lateral meniscus by MRI, and was confirmed the presence of the complex tear and anomalous insertion of the anterior horn of the discoid lateral meniscus into the anterior ACL by arthroscopic examination. Arthroscopic subtotal meniscectomy was performed and the symptoms were improved after surgery.

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Observation of Lateral Compartment through Posteromedial Trans-posterior Septal Portal in Knee Joints (슬관절 후내측 후격막 통과 도달법을 이용한 외측 구획의 관찰)

  • Lee, Ghun-Shik;Park, Han-Sung;Kim, Sang-Hyo
    • Journal of the Korean Arthroscopy Society
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    • v.9 no.1
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    • pp.56-59
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    • 2005
  • Trans-posterior septal posterior arthroscopic portals are useful in performing arthroscopic diagnosis and treatment of the lesions located in posterior aspect of knee joints. Except inferior surface of posterior horn of lateral meniscus, we easily observed entire lateral compartment, especially inferior surface of anterior horn and lateral tibial condyle by figure of 4 position through posteromedial trans-posterior septal arthroscopic portal. And it was possible to obtain visual field from posterior aspect and we could use anteromedial and anterolateral portals for instrumentation without clouding. So, this procedure may be useful in performing surgery of lateral compartment especially, anterior aspect in the knee joints.

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Comparison the Preoperative MRI Findings with Postoperative Arthroscopic Findings on Meniscus Injury with Anterior Cruciate Ligament Rupture (전방십자인대 파열에 동반된 반월상 연골판 손상의 관절경 수술 소견과 수술 전 자기공명영상 검사와의 비교)

  • Sohn, Hong Moon;Lee, Gwang Chul;Kim, Dong Hwi;Park, Sang Soo
    • Journal of the Korean Arthroscopy Society
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    • v.16 no.2
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    • pp.147-152
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    • 2012
  • Purpose: The purpose of this study was to compare the preoperative magnetic resonance image (MRI) findings with postoperative arthroscopic findings on meniscus injury with anterior cruciate ligament (ACL) rupture. Materials and Methods: We reviewed MRI images and arthroscopic findings of 225 patients treated by ACL reconstruction due to rupture, from February 2001 to November 2010. There were 154 cases of meniscus tear in arthroscopic findings. We examined the sensitivity for detecting meniscal tears varied with the presence of a rupture of the ACL, with the location of the tear within the meniscus, and among configurations of meniscal tears. Results: In the presence of a rupture of the ACL, the sensitivity of MRI was 0.88 for medial meniscal tears and 0.69 for lateral meniscal tears. And sensitivity of MRI was lowest in posterior horn and peripheral portion tears in lateral meniscus injury accompanying ACL rupture, sensitivity was low in anterior horn and flap shape tears in medial meniscus injury accompanying ACL rupture. Conclusion: In Meniscus injury with ACL rupture, a special attention shoulder given to the posterior horn and peripheral portion injury in lateral meniscus during arthroscopic surgery due to difficulty in detecting on MRI.

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Symptomatic Abnormal Insertion of the Anterior Horn of Medial Meniscus - A Case Report - (증상을 유발하는 내측 반월상 연골 전각부의 비정상적 삽입 - 1예 보고 -)

  • Yoo, Jae-Doo;Shin, Sang-Jin;Kim, Tae-Ho
    • Journal of the Korean Arthroscopy Society
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    • v.11 no.1
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    • pp.45-49
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    • 2007
  • We report a case of a girl with a symptomatic anomaly of medial meniscus. The complaint of the patient was pain and snapping of the knee. The anterior horn of medial meniscus has anomalous insertion which was extended to the intercondylar notch of the femur on the surface of the anterior cruciate ligament, it attached to lateral wall of medial femoral condyle. This anomalous band was not detected in MRI of knee but found during the operation. After resection of anomalous band, the symptoms completely disappeared.

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Hypopharyngeal Wall Exposure within the Surgical Field : The Role of Axial Rotation of the Thyroid Cartilage during Anterior Cervical Surgery

  • Choi, Byung-Kwan;Cho, Won-Ho;Choi, Chang-Hwa;Song, Geun-Sung;Kim, Choon-Grak;Kim, Hak-Jin
    • Journal of Korean Neurosurgical Society
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    • v.48 no.5
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    • pp.406-411
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    • 2010
  • Objective : Esophageal/hypopharyngeal injury can be a disastrous complication of anterior cervical surgery. The amount of hypopharyngeal wall exposure within the surgical field has not been studied. The objective of this study is to evaluate the chance of hypopharyngeal wall exposure by measuring the amount of axial rotation of the thyroid cartilage (ARTC) and posterior projection of the hypopharynx (PPH). Methods : The study was prospectively designed using intraoperative ultrasonography. We measured the amount of ARTC in 27 cases. The amount of posterior projection of the hypopharynx (PPH) also was measured on pre-operative CT and compared at three different levels; the superior border of the thyroid cartilage (SBTC), cricoarytenoid joint and tip of inferior horn of the thyroid cartilage (TIHTC). The presence of air density was also checked on the same levels. Results : The angle of ARTC ranged from $-6.9^{\circ}$ to $29.7^{\circ}$, with no statistical difference between the upper and lower cervical group. The amount of PPH was increased caudally. Air densities were observed in 26 cases at the SBTC, but none at the TIHTC. Conclusion : Within the confines of the thyroid cartilage, surgeons are required to pay more attention to the status of hypopharynx/esophagus near the inferior horn of the thyroid cartilage. The hypopharynx/esophagus at the TIHTC is more likely to be exposed than at the upper and middle part of the thyroid cartilage, which may increase the risk of injury by pressure. Surgeons should be aware of the fact that the visceral component at C6-T1 surgeries also rotates as much as when the thyroid cartilage is engaged with a retractor. The esophagus at lower cervical levels warrants more careful retraction because it is not protected by the thyroid cartilage.

Morphological observation on the subependymal layer of swine brain (자돈뇌실(仔豚腦室) 주위의 subependymal layer의 형태(形態)에 관한 관찰(觀察))

  • Kwak, Soo-dong
    • Korean Journal of Veterinary Research
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    • v.28 no.2
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    • pp.221-226
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    • 1988
  • Normal swine brains at 1 to 70 days after birth were used to investigate the presence and morphology of the subependymal layer (SL) in the ventricle walls. The brain samples were taken from 27 pigs of 4 swine breeds. The results were summarized as follows: 1. SLs were observed on the walls of the lateral ventricle (LV) but none were observed on the walls of the 3th and 4th ventricles. 2. SLs of the LV walls were composed of mainly 3-to 10-cell layers in thickness. The thinest region of SLs was composed of only 1-to 2-cell thick on the dorsal and ventral walls, and the thickest region was composed of 250-to 300-cell thick on extension region of the SLs into the angle between the corpus callosum and caudate nucleus. 3. Of the LV parts observed, the SL thickness were 25-to 45-cell thick on the anterior horn, 3-to 10-cell thick on the body, 100-to 220-cell thick on the angle region between the corpus callosum and caudate nucleus, and 3-to 5-cell thick the superior walls of the posterior horn. Also the SL thickness was more thick on the anterior region than those on the posterior region. 4. SLs may be classified as three types by the cell distribution; one type of them is closely arranged cell region with the distinctive lateral margin from the periventricular white matter, the other type is loosely arranged cell region with the undistinctive lateral margin, and another type is two-subdivided region as the loosely and closely arranged cell layers in a layer. 5. SLs were extensively thick in young age but gradually decreased in size and cell number with age after 20-day age. SL layers were composed of mainly oligodendrocytes, astrocytes and immature cells of them. Morphological differences of SL in different breeds of pigs were not observed.

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