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Biomedical subjects

Richard H Wiggins

Publications and source records attributed to Richard H Wiggins.

7 recordsLinked to original sources

Personal digital assistants.

Personal digital assistant sales are growing exponentially, and as medical technology advances the amount of information available becomes staggering, making a handheld device, with the ability to store a great amount of information, progressively more valuable to health care providers. Mobile computing allows for a great deal of knowledge in a small package, creating a "walking library" with a mobile collection of data always accessible. There are many diverse types of PDAs, and this article discusses the history of PDAs, general purchasing issues, general PDA features, and the most significant differences between the Palm and the Windows CE operating systems.

Computer Communication Networks↗

Digital imaging.

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Artificial Intelligence↗

Beyond PACS: getting images to referring physicians.

The digital imaging hospital has the potential advantage that imaging studies are available anytime, and anywhere they are needed, with negligible loss. Fulfilling this promise in reality, however, presents challenges as described in this paper. No single best formula for successful deployment exists, since each institution is unique, and its medical staff may have varying preferences. This requires a collaborative team approach to design a solution acceptable to all parties, inside and outside of radiology. We have attempted to identify the significant issues. In addition, hardware and software technology continuously evolve and improve. What is clear is that all institutions will adopt this technology for the reasons described. The successful implementations will be those that are collaboratively and thoughtfully designed. User training of all members of the healthcare team involved with image study access is essential.

Computer Security↗

Earring lesions of the parotid tail.

BACKGROUND AND PURPOSE: Masses in the parotid tail can be a source of consternation to radiologists and clinicians; inaccurate localization may lead to significant iatrogenic complication. We sought to review the pertinent anatomic localizing features of the parotid tail, relevant facial nerve anatomy, and sources of clinical and radiologic confusion. To conclude, we review imaging features that are helpful in generating a diagnosis in this location. METHODS: We retrospectively reviewed the imaging and clinical features of 111 parotid tail masses in 103 patients (56 male, 45 female, two of unknown sex; age range, 5 months-81 years). The following imaging findings were noted: size, enhancement, multiplicity of lesions, attenuation on CT scans, signal intensity on MR images, and appearance of the surrounding parotid gland. Diagnosis was confirmed by either surgical resection or biopsy findings or by specific clinical data or characteristic imaging findings. RESULTS: Seventeen types of parotid tail masses were identified. Benign lesions were: pleomorphic adenoma (n = 15), Warthin tumor (n = 14), infectious process (n = 13), venous malformation (n = 9), and Sjögren disease (n = 9), lymphatic malformations (n = 7), lipoma (n = 6), HIV lymphoepithelial lesion (n = 4), first brachial cleft cyst (n = 3), oncocytoma (n = 2), sarcoid (n = 1), and lymph node (n = 1). Malignant lesions were: Non-Hodgkin lymphoma (n = 14), metastatic disease (n = 7), mucoepidermoid carcinoma (n = 4), acinic cell carcinoma (n = 1), and undifferentiated carcinoma (n = 1). Eight patients had two diagnoses. CONCLUSION: Understanding normal parotid tail anatomy is important to radiologists, because accurate localization has implications for appropriate management of masses in this location, potentially reducing the occurrence of marginal mandibular nerve injury.

Adolescent↗

Handheld computers in radiology.

The next phase of the digital revolution in medicine is taking place through the dissemination of powerful handheld computers. Handheld computers, or personal digital assistants (PDAs), are no longer considered either a curiosity or a toy. The current handheld computer has many features (Internet access, simple e-mail client software, spreadsheet and database programs, word processing, and digital media) that make it an ideal tool for healthcare providers. Improvements in handwriting recognition, display characteristics, and wireless networking capabilities provide a platform for real-time review of both large static and dynamic repositories of patient data. Although earlier PDA models lacked the ability to display medical images appropriately, current PDAs boast display characteristics that approach low-resolution computer monitors. Although the handheld computer is not yet a reliable option for soft-copy reading, it offers many features that can improve work flow and efficiency for the radiologist. These features include improved personal information management, decision support via access to educational materials, and remote access to radiology-related information systems.

Computers, Handheld↗