首页> 外文期刊>International Journal of Impotence Research >The engineering analysis of bioheat equation and penile hemodynamic relationships in the diagnosis of erectile dysfunction: part I|[mdash]|theoretical study and mathematical modeling
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The engineering analysis of bioheat equation and penile hemodynamic relationships in the diagnosis of erectile dysfunction: part I|[mdash]|theoretical study and mathematical modeling

机译:生物热方程与阴茎血流动力学关系在勃起功能障碍诊断中的工程分析:第一部分| [mdash] |理论研究与数学建模

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The extent to which skin surface bioheat perfusion predicts penile physiological response such as an erection has not been extensively investigated. A biomechanical engineering study was performed to compare bioheat distribution on penile skin surface resulting from an induced erection at steady state to examine the efficacy of such method as an adjunct tool for the diagnosis and classification of erectile dysfunction (ED) due to different etiology. We based our arguments on the principle that blood vessel activity and perfusion to corpus cavernosa at the erect state are almost always higher than that in the flaccid state. Our results showed that a difference of 0.1–0.3?°C can be observed and hence used to develop database of ‘smart diagnosis’ for ED using the machine artificial intelligence. It is anticipated that such basic research into blood flow is critical, as blood perfusion into corpus cavernosa is the most influential factor determining functional erectile quality contributing to successful coitus. Increased understanding of the hemodynamic response profile contributes toward optimal treatment and thus enables clinicians to adopt an appropriate management scheme for ED.
机译:尚未深入研究皮肤表面生物热灌注预测阴茎生理反应如勃起的程度。进行了一项生物力学工程研究,比较了稳态诱导勃起在阴茎皮肤表面产生的生物热分布,以检查这种方法作为诊断和分类因勃起功能障碍(ED)而引起的分类的辅助工具的功效。我们的论据基于这样的原理:在勃起状态下,血管活动和对海绵体的灌注几乎总是高于松弛状态。我们的结果表明,可以观察到相差0.1–0.3?C,因此可以使用机器人工智能将其用于ED的“智能诊断”数据库的开发。可以预料的是,这种对血流的基础研究是至关重要的,因为对海绵体的血液灌注是决定功能性勃起质量的最有影响力的因素,从而有助于性交成功。对血液动力学反应特征的更多了解有助于最佳治疗,从而使临床医生能够采用适当的ED管理方案。

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