Showing posts with label Guest Posts. Show all posts
Showing posts with label Guest Posts. Show all posts

January 15, 2011

Lumbosacral Agenesis

Authors: Sanjay B. Nathani, M.D. (Radiodiagnosis), J.P. Agarwal, M.D. (Paediatrics).
Editor: Rathachai Kaewlai, M.D.

Fig. 1: There is poor development of the lower extremities with popliteal webbing, deformed hip, ankles and calcaneus.
Fig. 2: AP and lateral spinal radiographs demonstrate absence of normal vertebra distal to T12, with L1 and L2 hemi- and butterfly vertebra. The sacrum is absent. Both iliac bones articulate with each other resulting in decreased transverse pelvic diameter.
Fig. 3: T1W and T2W sagittal MR images of the spine shows complete agenesis of L3, L4, L5 and sacrum. Conus medullaris ends at the level of T8 with a blunted tip. The distal thecal sac tapers to a narrow channel at T12.

Brief Facts
  • Caudal regression syndrome is characterized by absence of segment(s) of the lumbosacral spine
  • Unknown etiology but associated with maternal insulin-dependent diabetes
  • Associated with multiple congenital anomalies
  • On radiography, absence of segment(s) of lumbosacral spine is characteristic. There may be fusion of the iliac bones resulting in small pelvis.
  • MR imaging provides information about the position and appearance of conus medullaris, which defines two distinct groups of this disease. In group I the conus ends cephalad to the lower border of L1. In group II the conus terminates below L1 known as tethered cord.

Facts
Caudal regression syndrome is a rare congenital malformation characterized by absence of variable segments of lumbosacral spine. The etiology of the syndrome is unknown. It is possibly associated with maternal insulin-dependent diabetes (16% - 50% of cases). A dominant inheritant form of lumbosacral agenesis has been shown to result from defects in the HLXB9 homeobox gene mapping to chromosome 7q36. This gene is also expressed in pancreas perhaps accounting for the association of lumbosacral agenesis with insulin and diabetes.
Motor deficits are present and correspond to the level of vertebral agenesis. Associated conditions are OEIS complex (omphalocele, cloacal extrosphy, imperforate anus, spinal deformities), VATER syndrome, congenital heart defects, genitourinary complaints with unilateral renal agenesis, hydronephrosis, pelvic and horseshoe kidneys, epispadias and hypospadias, orthopedic deformities such as hip dislocation, flexion contractures, genu recurvatum, posterior compartment atrophy, talipes deformities and scoliosis, progressive neurological deficits and back and leg pain, uterine anomalies or rectovaginal fistulas.
Renshaw reviewed 22 patients over 18 years and proposed a classification as follows:
Type I - total or partial unilateral sacral agenesis
Type II - partial sacral agenesis but bilaterally symmetrical defect
Type III - variable lumbar and total sacral agenesis with the ilia articulating with the sides of the lowest vertebra present
Type IV - variable lumbar and total sacral agenesis with the caudal endplate of the lowest vertebra resting above either fused ilia or an iliac amphiarthrosis.
As seen on MR imaging, the position of the conus defines two distinct groups of patients with sacral agenesis. In group I, the conus ends cephalic to the lower border of L1. The conus typically deforms and terminates abruptly at T11 or T12 as if the normal distal tip was absent. The distal central canal may be slightly dilated as a terminal hydromyelia. In this group, the sacrum usually ends at or above S1. Coronal T1WI will show Christmas tree configuration formed by the distal thecal sac, root sleeves and nerve roots within the epidural fat of the spinal canal.
In group II, the conus ends lower, below L1, and is elongated, tethered by a thick filum. There can be associated terminal myelocystocele, transitional lipoma, or elongated cord with terminal hydromyelia. Neurological deficit is more in patients with low tethered cords.


About Authors: Drs. Nathani and Agarwal work for Goyal Hospital and Research Center in Jodhpur, Rajasthan, India. Their work does not have any support for the work in the form of grants, equipments or drugs.

References:

1 . Renshaw T.S. Sacral Agenesis. The Pediatric Spine -Principles and Practice. 1:2214,1994, Raven Press, NewYork

2. Phillips W.A. Sacral Agenesis. Spine - Principles andPractice. 1:2214,1994, Raven Press, New York

3. A.James Barkovich, Congenital Anomalies of the spine.In: Paediatric Neuroimaging ,Vol 2 ,3rd edition, Lippincott Williams & Wilkins,2000 (650-651),

4. Phyllis Glanc et al, The Fetal Musculoskeletal System. In : Carol M. Rumack's Diagnostic Ultrasound;Vol 2, 2nd edition, Mosby. (1224).

5. Beryl R. Benacerraf,Caudal Regression Syndrome and Sirenomelia; in Ultrasound of Fetal Syndromes,edition 1998, (page 250-254); Churchill Livingstone,Philadelphia.

6. Thomas.P.Naidich,Susan I.Blaser,Bradley M.Delman,Congenital Anomalies of Spine and Spinal Cord. In:Scott W. Atlas, Magnetic Resonance Imaging of the Brain and Spine(vol 1) 3rd edition. Philadelphia: Lippincott Williams & Wilkins,2002;( 1589-1593)

7. Renshaw, T. S., 1978. Sacral agenesis: a classification and review of twenty-two cases. Journal of Bone and Joint Surgery, 60A, 373-383.

July 24, 2010

Primary Brachial Plexus Tumor

Case Contributor: Gopalaratnam Balachandra, M.D.
Editor: Rathachai Kaewlai, M.D.


Coronal T1W and T2W MR images of the brachial plexus show a fusiform-shaped mass (large arrows) along the course of the right cervical nerve root (small arrow). The mass demonstrates heterogeneous low T1 and high T2 signal intensity. It has smooth, well circumscribed borders.

Axial T1W post contrast MR image shows heterogeneous enhancement of the mass (arrows) with a central area of non-enhancement.

Facts: Primary Brachial Plexus Tumor
  • Rare tumor, most commonly benign with good prognosis after surgical resection
  • Clinical presentations: pain, paresthesia, palpable mass
  • Common pathology: schwannoma, neurofibroma. Other possibilities: malignant peripheral nerve sheath tumor (MPNST), desmoid, ganglion, epidermoid
Imaging
  • MRI is the study of choice to delineate the margins of tumor from surrounding tissues
  • Characteristic feature on any imaging techniques is close relationship with the parent nerve, which helps to exclude other possibilities such as lymphadenopathy, vascular anomalies, etc.
  • Low signal on T1, high signal on T2 and heterogeneous enhancement
  • MRI cannot differentiate schwannoma from neurofibroma
This case - Schwannoma of the brachial plexus in a 32-year-old woman who presented with pain in the right arm and right neck mass.

References:

1. Binder DK, Smith JS, Barbaro NM. Primary brachial plexus tumors: imaging, surgical, and pathological findings in 25 patients. Neurosurg Focus 2004;16.

2. Rettenbacher T, Sogner P, Springer P, et al. Schwannoma of the brachial plexus: cross-sectional imaging diagnosis using CT, sonography, and MR imaging. Eur Radiol 2003;13:1872-1875.


About Case Contributor: Dr. Balachandra is the head of the Department of Radiology at Government General Hospital in Pondicherry, S. India.

July 12, 2010

Scimitar Syndrome

Author: Santip Srisuwan, M.D.

Fig. 1: Chest radiograph of an asymptomatic young woman shows small right lung volume with cardiomediastinal shift toward the right side, small right hilum and a characteristic scimitar-shaped structure in the right lower lobe (arrow).


Figs 2&3: Contrast-enhanced CT images (maximal intensity projection, and 3D volumetric images) show an anomalous right lower lobe pulmonary vein (arrows) descending vertically, draining the right lower lobe and entering the IVC.

Facts: Scimitar Syndrome
  • Also known as venolobar syndrome, hypogenetic lung syndrome
  • Associations: congenital heart disease 25% (usually atrial septal defect)
  • Symptoms: usually asymptomatic. Patients may have dyspnea if there is a large left to right shunt
Imaging Findings
  • Small right lung
  • Diminutive right hilum
  • Dextroposition of the heart
  • Characteristic scimitar vein draining below the diaphragm
Reference:
Hansell DM, et al. Imaging of diseases of the chest. Elsevier Mosby, 4th edition, 2005.

About Guest Author: Dr. Santip Srisuwan is a radiologist at Samitivej Hospital, Bangkok, Thailand.

August 21, 2009

Importance of Visualization of Normal Acetabular Landmarks

Author: Aasis Unnanantana, M.D.

Figure 1: Pelvic radiograph (AP) shows a displaced left femoral neck fracture (arrow) in an old woman who fell.

Do you see anything else?

What normal bony structures do you expect to see in the acetabulum?
  • Iliopectineal line
  • Ilioischial line (Kohler's line)
  • Acetabular roof (dome) or sourcil
  • Radiographic teardrop
  • Anterior wall
  • Posterior wall

In this case, there is bowel gas overlying the left hemipelvis - making it difficult to assess. However, normal anatomic landmarks of the left acetabulum and pelvis are not visualized.

Same figure, with an outline of "non-visualized" acetabulum and left hemipelvis due to involvement of lytic metastasis. The patient also has a history of known renal cell carcinoma. Findings were confirmed on a CT scan.

Take Home Messages
  • When normal radiographic features of acetabulum are not visualized on conventional radiographs, further imaging should be considered (e.g. additional radiographic views such as obliques, or CT) to assess the particular structures.
  • Be aware of "satisfaction of search".
Reference:
Barrack RL, Booth Jr RE, Lonner JH, et al (eds). Orthopedic Knowledge Update: Hip and Knee Reconstruction 3. 2006
Line art: Rathachai Kaewlai, MD

About Guest Author: Dr. Aasis Unnanantana, MD, is a clinical fellow in orthopedics (Metabolic Bone Diseases Service) at the Hospital for Special Surgery, Cornell University, New York, NY. He is a member of orthopedic instructor at Siriraj Hospital, Mahidol University, Bangkok, Thailand.

June 2, 2009

Spontaneous Osteonecrosis of the Knee (SPONK)

Author: Aasis Unnanantana, M.D.


Figure 1 and 2: AP and lateral radiographs of the left knee show subchondral sclerosis and lucency at the medial femoral condyle with narrowing of the joint space and osteophytes. Note that the lateral and patellofemoral compartments are normal.


SPontaneous OsteoNecrosis of the Knee (SPONK)
  • Well-recognized cause of spontaneous, sudden onset of knee pain
  • Common in woman during their 50s and 60s
  • Pain typically locates around medial joint line
  • Almost all cases are unilateral, one condylar involvement and epiphyseal to subchondral surface
Differential Diagnosis and Diagnosis
  • Once SPONK is suspected, other DDx should be considered including osteochondritis dissecans (OCD), secondary osteonecrosis, meniscal tears, etc.
  • Diagnosis made in patients with typical clinical symptoms and radiographic findings (as in this case, subchondral lucency in the medial femoral condyle, flattening of the condyle, narrow zone of increased sclerosis adjacent to the depressed osseous surface).
Reference:
Barrack RL, Booth Jr RE, Lonner JH, et al (eds). Orthopedic Knowledge Update: Hip and Knee Reconstruction 3. 2006

About Guest Author:
Dr. Aasis Unnanantana is a clinical fellow in orthopedics (Metabolic Bone Diseases Service) at the Hospital of Special Surgery, Cornell University, New York, NY. He is a member of orthopedic instructor at Siriraj Hospital, Mahidol University, Bangkok, Thailand.

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