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Biomedical subjects

H M Pollack

Publications and source records attributed to H M Pollack.

At least 37 records · Page 2Linked to original sources

Computed tomography and magnetic resonance imaging of the female lower urinary tract.

Computed tomography (CT) and magnetic resonance (MR) imaging have become invaluable imaging modalities in the diagnosis of diseases involving the lower urinary tract. Both CT and MR imaging are able to accurately stage bladder carcinoma, with MR imaging able to distinguish between superficial and deep muscle invasion of tumor. CT and MR are also the studies of choice for evaluating retroperitoneal fibrosis, which often affects the urinary tract; MR imaging is often able to detect the presence of active inflammation and occasionally rule out a malignant cause. MR imaging holds promise for the evaluation of stress urinary incontinence and urethral disease. Although diseases of the distal ureter continue to be most accurately diagnosed by intravenous urography and retrograde studies, CT and MR imaging may serve a helpful secondary role.

Female↗

Prostate cancer: local staging with endorectal surface coil MR imaging.

Endorectal surface coil magnetic resonance (MR) imaging was used to stage the local extent of prostate cancer in 22 patients. The endorectal coil images were acquired with a 10-12-cm field of view and a 4-mm section thickness. All pathologic specimens were reviewed by one pathologist. Endorectal surface coil MR imaging was 82% accurate in the differentiation of stage B from stage C cancer. One case was overestimated, and three cases were underestimated. The three underestimated cases consisted of two cases of microscopic capsular invasion and one case of minimal seminal vesicle invasion. In a comparison of retrospective, blinded readings of endorectal coil and body coil images, there was an average improvement in accuracy of 16% in staging prostate cancer with endorectal coil images.

Carcinoma↗

Imaging of the prostate gland.

The advent of ultrasonography and the development of intrarectal techniques have made possible semiquantitative prostatic volumetrics for more accurate preoperative assessment of benign prostatic hyperplasia (BPH) as well as earlier diagnosis of prostatic carcinoma (PC). Computed tomography has increased the scope of prostatic imaging by including regional lymph nodes as well. Magnetic resonance imaging (MRI) has enabled viewing of the internal architecture of the prostate gland, thus allowing precise diagnosis of BPH and recognition of carcinoma. MRI is also the most exact method of staging PC.

Diagnostic Imaging↗

Imaging of patients with stage D prostatic carcinoma.

In conclusion, it would appear from present evidence that several statements can be made. First, MRI is the most accurate method of staging the periprostatic spread of carcinoma. Both the prostate and the regional nodes can be evaluated. The role of ultrasound is, at present, unclear. Second, the utility of CT has diminished with the emergence of high-quality MRI, but in situations in which MRI scans are inconclusive (e.g., in the assessment of paraaortic node disease, in which images are degraded by peristaltic movement), CT may be useful. Third, the choice of method for the assessment of nodal disease is a more difficult question. Although MRI and CT have replaced lymphography in most centers, the latter study, especially when combined with fine-needle aspiration biopsy, still is useful. Fourth, bone metastases are best assessed with scintigraphy, which can point to areas requiring supplemental plain radiography. An MRI study of the spine, although highly sensitive, is not practical. Fifth, MRI is superior to CT myelography in assessing spinal disease. Finally, the chest radiograph is the mainstay of assessing chest involvement.

Abdominal Neoplasms↗

Staging of renal carcinoma using magnetic resonance imaging at 1.5 Tesla.

The preoperative magnetic resonance imaging (MRI) studies of 31 patients with surgically proven renal cell carcinomas obtained with a 1.5 Tesla unit were retrospectively reviewed to assess the accuracy of MRI for staging of tumor. According to the Robson classification 12 patients were found at surgery to have Stage I renal carcinoma, three patients had Stage II, ten had Stage IIIA, one had Stage IIIB, two had Stage IIIC, one had Stage IVA, and two had Stage IVB disease. Twenty-five (81%) of 31 patients were staged correctly by MRI. Clearly MRI showed venous tumor extension without the need for intravenous contrast administration. Also, MRI had a negative predictive value of 95%, and a positive predictive value of 100% for the evaluation of inferior vena cava tumor thrombus. At 1.5 Tesla MRI is an excellent staging modality in the preoperative evaluation of renal carcinoma. It is especially recommended in patients with equivocal computed tomography findings and in all patients with contraindications to the intravenous use of iodinated contrast material.

Adolescent↗

Magnetic resonance imaging of the prostate gland.

MRI, because of its multiplaner capability and high soft tissue contrast, is ideally suited for examination of the prostate. The normal prostatic zonal architecture and periprostatic anatomy can be visualized. The use of an endorectal surface coil greatly enhances resolution. Clinical application to the study of BPH, prostate carcinoma, prostatic cysts, and inflammatory disease is discussed. MRI appears to be emerging as the modality of choice for imaging the prostate.

Adenocarcinoma↗

Masson's tumor of the kidney: a new renal lesion.

Intravascular papillary endothelial hyperplasia (Masson's tumor) is a rare benign reactive lesion usually found in thrombosed subcutaneous blood vessels. We report a case of Masson's tumor of the kidney, and discuss the relevant clinical, radiographical and pathological aspects.

Endothelium, Vascular↗

Radiographic imaging and urologic decision making in the management of renal and ureteral calculi.

Without question, significant changes, and for the most part significant advances, have been made in the management of patients with urolithiasis during the past decade. The newer therapeutic measures have generally made it easier for patients to be treated, but the decision-making process for the urologist has become more complex. In the past, the issue whether to follow a patient with a stone or to intervene with surgery or transurethral cystoscopic basketing was decided based on well-established guidelines that had developed over many years. Today, the indications for intervention appear to be less stringent, and in the minimally symptomatic or asymptomatic patient who would not have been operated on previously, there appears to be an expanding desire for prophylactic management. For whatever reasons, once it has been established that a stone is present and the decision has been made to intervene, subsequent decisions regarding the technical approach may also not be as simple as in the past. Ten years ago, for example, a stone in the abdominal ureter was removed by a ureterolithotomy, and the principal decision involved placement of the incision. Today, the same calculus may be approached by ESWL with or without a stent, by antegrade percutaneous techniques, or by retrograde ureteroscopic techniques using rigid or flexible endoscopes with baskets, ultrasonic lithotrites, or lasers. Although the specific indication for specific techniques continue to evolve, it has become evident that information obtained by the radiographic evaluation of the urinary tract is critical in the decision-making process. The intravenous urogram, including the initial plain film, remains the primary diagnostic modality and, in the absence of extenuating clinical features, is often the sole test required to make a decision regarding the best therapeutic modality. A variety of clinical features from the history or physical examination, or concerns raised by the intravenous urogram, may necessitate alternative or additional techniques to better define the anatomy, the renal function, or other pathology. The urologist therefore needs to be familiar with the information that can be obtained from the uroradiologist's vast armamentarium in order to make the most appropriate recommendations to the patient for diagnosis and management.

Diagnostic Imaging↗

Extracorporeal shock wave lithotripsy treatment of calculi in horseshoe kidneys.

From June 1985 to November 1986, 17 patients with calculi in horseshoe kidneys presented to our hospital for evaluation and possible treatment with extracorporeal shock wave lithotripsy. Of these patients 14 were treated with extracorporeal shock wave lithotripsy; the calculi in 2 could not be localized and focused at the F2 focal point, and 1 was asymptomatic and has been followed conservatively. Four patients required repeat extracorporeal shock wave lithotripsy. Adjunctive procedures included preoperative retrograde catheter placement (5 patients), postoperative percutaneous nephrostolithotomy (1), ureteroscopy for ureteral fragments (2) and placement of a double pigtail stent (1). Of 14 patients 11 (79 per cent) have been rendered free of fragments with extracorporeal shock wave lithotripsy and adjunctive measures as needed. We conclude that most patients with calculi in a horseshoe kidney can be managed primarily with extracorporeal shock wave lithotripsy.

Adult↗

Anastomosed ureters: fluoroscopically guided transconduit retrograde catheterization.

Fluoroscopically guided, transconduit retrograde catheterization of ureters that have been diverted to a bowel conduit is often feasible in patients with patient ureteroenteral anastomoses who might otherwise require a percutaneous nephrostomy (PCN) for reasons other than high-grade anastomotic obstruction. This procedure was attempted on 14 occasions and successfully accomplished on 12. In 11 of these cases, retrograde catheterization obviated PCN to provide renal drainage for a partially obstructing ureteral stricture or obstructing renal calculi, to remove ureteral calculi, or to insert a new ureteral stent after an unsuccessful attempt to exchange an existing occluded retrograde ureteral stent. The procedure also obviated Whitaker testing. On one occasion the retrograde procedure greatly facilitated subsequent PCN in an obese patient with faintly opaque calyceal calculi. These procedures were accomplished with standard angiographic equipment and, in many instances, Teflon sheaths in the bowel conduit to stabilize catheters and guide wires. No complications were encountered. The two patients whose ureters could not be catheterized in retrograde fashion subsequently required PCN.

Fluoroscopy↗

Prostatic carcinoma and benign prostatic hyperplasia: correlation of high-resolution MR and histopathologic findings.

High-resolution magnetic resonance (MR) imaging of 24 fresh radical prostatectomy specimens was performed on an experimental 1.9-T system. Direct correlation between the findings in 7-micron-thick macrosections and their corresponding MR images was possible. Fourteen patients had macroscopic evidence of cancer. In all 14 cases, the carcinoma nodules appeared as areas of low signal intensity on images obtained with a repetition time of 2,500 msec and an echo time of 80 msec. Ten of 14 nodules had well-defined margins and consisted of densely packed glandular elements, which displaced the surrounding normal glandular material of higher signal intensity. Ten specimens displayed benign prostatic hyperplasia (BPH). The MR characteristics of this entity were quite variable but relatively predictable, depending on the distribution and size of the glandular elements, as well as the composition of the surrounding stroma. In BPH, the changes began in the central portion of the gland. The areas of highest signal intensity corresponded to dilated glandular elements (cystic ectasia), while the areas of lowest signal intensity corresponded to collagen (scar) and fibromuscular stroma. Nodules of mixed glandular BPH and fibromuscular BPH were found to have signal intensities similar to those of well-differentiated nodules of prostatic adenocarcinoma.

Aged↗