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Biomedical subjects

Erlick A C Pereira

Publications and source records attributed to Erlick A C Pereira.

3 recordsLinked to original sources

Surgical insights into Parkinson's disease.

Surgery for Parkinson's disease was popularized in the mid-twentieth century before the advent of effective medical therapies. Early lesioning treatments contributed to our understanding of the functional anatomy of Parkinson's disease. Observations of the limitations and long-term complications of established pharmacological therapies for Parkinson's disease, together with major contributions from animal research to elucidate the roles of the basal ganglia in movement disorders, inspired a recent renaissance in neurosurgical interventions for Parkinson's disease including deep brain stimulation; this continues to yield much neurophysiological information. The development of potentially restorative treatment modalities, such as gene therapy, neural transplantation and nanotechnology, hold much promise for surgery, both therapeutically and in revealing further insights into Parkinson's disease pathophysiology.

Catheter Ablation↗

Using fishing line for suturing.

Fishing line is an inexpensive and atraumatic suture material. Its properties and uses are summarized here. Comparison is made between different diameters and types of fishing line and commercially available sutures and needles to enable appropriate line selection for its use as suture material.

Humans↗

Minimal hippocampal width relates to plasma homocysteine in community-dwelling older people.

BACKGROUND: The hippocampus is important for memory. Hippocampal atrophy and higher levels of homocysteine may both predict cognitive dysfunction in community-dwelling older people. We tested if higher homocysteine relates to hippocampal thinning in this group. SUBJECTS: 156 community-dwelling volunteers without clinical memory problems. METHOD: We measured minimal hippocampal widths on magnetic resonance images and homocysteine in plasma. RESULTS: Minimal hippocampal widths related inversely to homocysteine levels. CONCLUSIONS: Our results indicate that, even in healthy older people, homocysteine may damage the hippocampus. Reducing homocysteine levels in healthy older people may help to prevent Alzheimer's disease.

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