Taneja Samir S
Rev Urol. 2006 Fall;8(4):173-82.
Despite improvements in cancer detection, prostate biopsy still lacks the ability to accurately map locations of cancer within the prostate. Improvements in prostate imaging may allow more accurate mapping of overall disease volume. Magnetic resonance (MR) spectroscopy allows improved specificity in detecting even small foci of disease within the peripheral zone. Improvements in MR-guided biopsy techniques may allow this technology to be adapted to therapeutics as well. Computer modeling of individual prostates serves as a means of designing optimized plans for prostate biopsy. The use of novel targeted biopsy schemes may allow an integration of available technologies in detection and localization of prostate cancer. Computer-directed needle biopsies based on anatomic landmarks within the prostate and computerized three-dimensional reconstruction of the gland may allow a highly reproducible means of identifying small foci of cancer, targeting them for therapy, and monitoring for recurrence. The TargetScan(R) system (Envisioneering Medical Technologies, St. Louis, MO) is the first technology to integrate available targeting methodologies in a systematic fashion.
尽管癌症检测有所改进,但前列腺活检仍缺乏准确绘制前列腺内癌症位置的能力。前列腺成像的改进可能使对整体疾病体积的更精确绘制成为可能。磁共振(MR)光谱能够提高检测外周带内即使是微小病灶的特异性。MR引导活检技术的改进可能也会使该技术适用于治疗。对个体前列腺进行计算机建模是设计优化前列腺活检计划的一种方法。使用新型靶向活检方案可能会整合现有技术用于前列腺癌的检测和定位。基于前列腺内解剖标志的计算机导向针吸活检以及腺体的计算机三维重建可能提供一种高度可重复的方法来识别小癌灶、将其作为治疗靶点并监测复发情况。TargetScan®系统(Envisioneering Medical Technologies,圣路易斯,密苏里州)是首个以系统方式整合现有靶向方法的技术。