This paper provides definitions and a discussion of evolving guidelines for conducting research on the effects of distant healing intention (DHI) on living systems in the laboratory. We consider the relevance of DHI laboratory research to applied healing, special theoretical challenges, and other considerations that distinguish DHI research from other domains of laboratory science. Two sample protocols for investigating DHI are provided, one involving the human autonomic nervous system as the "target" of distant intention, and the other involving cell cultures. In essence, DHI differs from other alternative healing modalities because it postulates that mental intention alone can affect living systems at a distance, unbounded by the usual constraints of both space and time. This postulate challenges scientific assumptions that often go unexamined, including the nature of causality, the distinction between subjective and objective states, and the efficacy of double-blind protocols in controlling for experimenters' intentions. Previous laboratory research in this domain suggests that DHI effects warrant serious study, but most scientists and funding agencies are unaware of the evidence or the relevant literature. By following these evolving guidelines, researchers' designs and their ultimate publications will conform more closely to the quality standards expected by scientific journals, and such publications will in turn attract the attention of a broader range of scientists. This seems especially important for alternative healing research in general and for distant healing in particular; both realms enjoy broad public support but have largely eluded serious attention by mainstream science.
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Loss injuries of the hand are a common trauma primarily encountered by outpatient surgeons on the front lines. The aim of this article is to systematically describe a thorough examination of the hand and the various options for reconstructing loss injuries of the hand, thereby creating an overview that can be utilized in practice. The article focuses on methods ranging from simple healing by secondary intention to basic techniques of flap reconstruction.
View Article and Find Full Text PDFNeurosurg Rev
January 2025
Department of Neurological Surgery, University of Virginia, Charlottesville, USA.
Resection is often the primary treatment for large brain tumors but is less practical for multiple brain metastases (BM). Current guidelines recommend stereotactic radiosurgery (SRS) for untreated BMs or following the surgical removal of a solitary BM to reduce the risk of local tumor recurrence. Preoperative SRS (pre-SRS) shows promise with fewer complications and more precise targeting, but it lacks tissue diagnosis and may hinder wound healing.
View Article and Find Full Text PDFbioRxiv
December 2024
Cell Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.
Leukocytes detect distant wounds within seconds to minutes, which is essential for effective pathogen defense, tissue healing, and regeneration. Blood vessels must detect distant wounds just as rapidly to initiate local leukocyte extravasation, but the mechanism behind this immediate vascular response remains unclear. Using high-speed imaging of live zebrafish larvae, we investigated how blood vessels achieve rapid wound detection.
View Article and Find Full Text PDFJ Am Acad Dermatol
December 2024
University of Vermont Medical Center, Division of Dermatology.
Background: Treatment of cutaneous squamous cell carcinoma largely involves surgical excision. Few studies have examined oncologic outcomes of tumors managed by watchful waiting when the lesion appears resolved after the biopsy site has healed.
Objective: To describe oncologic outcomes for patients diagnosed with cutaneous squamous cell carcinoma that was determined clinically resolved at follow-up and subsequently managed by watchful waiting.
Sci Rep
November 2024
Department of Traditional Chinese Medicine, People's Hospital of Longhua, Shenzhen, China.
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