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Stuart R Pomerantz

Publications and source records attributed to Stuart R Pomerantz.

5 recordsLinked to original sources

Intradiscal therapies for discogenic pain.

Since the first injection of chymopapain in 1963, percutaneous intradiscal therapies have been used to treat discogenic back and leg pain. The percutaneous discectomy techniques treat contained disc herniations not by resecting the prolapsed disc material but rather through central decompression of the disc. By removing a small volume of tissue from the disc nucleus, a large reduction in overall disc pressure is achieved with consequent relief of neural compression. DISC Nucleoplasty and Dekompressor are the two leading percutaneous discectomy technologies currently. Although rigorous clinical testing of their efficacy is ongoing, there has now been a 40-year history confirming the concept of percutaneous disc decompression, and initial results are very promising. Discogenic low back pain can also arise from annular tears and other forms of internal disc derangement (IDD). Annuloplasty techniques, such as IntraDiscal Electrothermal Therapy (IDET) and discTRODE, have been developed over the past decade that thermally treat the lesions of IDD. Although the therapeutic mechanisms of thermal annuloplasty have yet to be fully elucidated, research studies demonstrate that the procedure can be effective for appropriately selected patients with degenerative disc disease characterized by discographically proven painful annular fissures. Other novel intradiscal therapies are emerging for percutaneous treatment of discogenic pain and await more widespread clinical evaluation.

Chymopapain↗

Computed tomographic angiography in stroke imaging: fundamental principles, pathologic findings, and common pitfalls.

The development of multidetector row computed tomography (MDCT) now permits visualization of the entire vascular tree that is relevant for the management of stroke within 15 seconds. Advances in MDCT have brought computed tomography angiography (CTA) to the frontline in evaluation of stroke. CTA is a rapid and noninvasive modality for evaluating the neurovasculature. This article describes the role of CTA in the management of stroke. Fundamentals of contrast delivery, common pathologic findings, artifacts, and pitfalls in CTA interpretation are discussed.

Angiography↗

Computed tomography angiography and computed tomography perfusion in ischemic stroke: A step-by-step approach to image acquisition and three-dimensional postprocessing.

Recent technical advances in both image acquisition and postprocessing have enabled computed tomography angiography (CTA) with computed tomography perfusion to become front-line tools for acute stroke evaluation in many institutions. This article provides a step-by-step approach to utilizing these technologies, particularly in the rapid triage of appropriate stroke patients to reperfusion therapies. The specific contrast injection, image acquisition, and 3D postprocessing protocols for high-quality CTA, currently in use at our institution, are delineated. An important point of emphasis is how preliminary angiographic and cerebral perfusion observations can be made immediately at the scanner to expedite emergent therapy. Also explored is the manner in which a dedicated 3D lab can support a high clinical volume, including a large percentage of emergent studies. An accurate yet time-efficient approach for the neuroradiologist to integrate 3D interpretation with CTA source data review is offered. Several important imaging and interpretive pitfalls in stroke CTA are illustrated.

Angiography↗

"SKyphoplasty": a single institution's initial experience.

PURPOSE: The treatment of painful compression fractures has been revolutionized by vertebroplasty and kyphoplasty, two recently developed techniques that continue to evolve. This article describes a new device for the performance of kyphoplasty that uses a polymer device rather than a balloon to create a void in the bone. MATERIALS AND METHODS: In nine consecutive patients, kyphoplasty was performed at 12 vertebral levels with osteoporotic compression with use of the new SKy bone expander polymer device. RESULTS: The device was successful in creating a void in the bone at all levels. The procedure was also effective in alleviating pain from compression fractures. There were no technical failures or complications. CONCLUSION: The SKy bone expander polymer device is effective and safe for the performance of kyphoplasty to alleviate pain from vertebral compression fractures.

Aged↗

Kyphoplasty for vertebral compression fracture via a uni-pedicular approach.

BACKGROUND: Percutaneous kyphoplasty using a bone expander polymer device, such as percutaneous vertebroplasty and balloon kyphoplasty, is a therapeutic intervention for painful osteoporotic vertebral body compression fractures. Typically the procedure involves placement of bilateral Sky Bone Expanders in the fractured vertebral body via a transpedicular approach. We describe performance of "SKy"phoplasty using the Disc-O-Tech Sky Bone Expander (Disc-O-Tech Medical Technologies, Herzliya, Israel, and Monroe Township, New Jersey) via a unilateral transpedicular approach. The advantage of a unilateral approach is that it reduces the risks associated with large-bore needle placement. These risks include pedicle fracture, medial transgression of the pedicle or transgression into the spinal canal, nerve injury, cement leakage along the cannula tract, and spinal epidural hematoma. Additionally, using a unilateral approach reduces operative time and costs. CASE ILLUSTRATION: A 68-year-old man with osteoporosis presented with severe upper back pain which occurred following a fall. The pain was reproducible on palpation of the L1 spinous process. A lumbar spine magnetic resonance imaging (MRI) with STIR (short tau inversion recovery) sequence demonstrated an acute L1 vertebral body compression fracture. A L1 "SKy"phoplasty was performed using a single Sky Bone Expander polymer device via a unilateral transpedicular approach. The patient reported immediate relief of pain after the procedure. He denied any residual back pain at his follow-up visit. He was able to resume his normal activities including walking, which had been inhibited by pain prior to the procedure. CONCLUSION: "SKy"phoplasty can be performed using a single Sky Bone Expander via a unilateral pedicular approach. The key is a medial needle trajectory with a final Sky Bone Expander position in the midline of the vertebral body.

Journal Article↗