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1.
J Wound Ostomy Continence Nurs ; 49(3): 240-246, 2022.
Article in English | MEDLINE | ID: mdl-35523239

ABSTRACT

Convex pouching systems have been available for ostomy patients for decades; however, controversy remains over the use of convexity in the postoperative period. A group of 10 nurses and physicians with expertise caring for patients with an ostomy completed a scoping review identifying research-based evidence and gaps in our knowledge of the safety and effectiveness related to the use of a convex pouching system following ostomy surgery. Results of this scoping review demonstrated the need for a structured consensus to define best practices when selecting a pouching system that provides a secure and reliable seal around the stoma, avoids undermining and leakage of effluent from the pouching system, and contributes to optimal health-related quality of life for patients following ostomy surgery. The expert panel reached consensus on 8 statements for the use of convex products immediately after surgery and throughout the first 6 months after stoma creation, as well as describing goals in choosing the best pouching system for the patient with an ostomy.


Subject(s)
Ostomy , Surgical Stomas , Consensus , Humans , Postoperative Period , Quality of Life , Surgical Stomas/adverse effects
2.
J Wound Ostomy Continence Nurs ; 49(3): 247-250, 2022.
Article in English | MEDLINE | ID: mdl-35523240

ABSTRACT

PURPOSE: The purpose of this study was to validate time frames for postoperative care following stoma surgery and to determine participants' current practice with convex pouching systems during the postoperative period. DESIGN: A Cross-sectional survey. SUBJECTS AND SETTING: The sample comprised 332 ostomy care specialists practicing in the United States. Most (n = 220; 66%) had more than 10 years' experience caring for patients with ostomies, 82% (n = 272) were certified WOC or ostomy care nurses (CWOCN and COCN), and 7% (n = 23) were board-certified colorectal surgeons. METHODS: A 23-item online questionnaire was created for purposes of the study. Items in the questionnaire queried professional background and experience caring for patients with an ostomy. A single item was used to identify postoperative care periods following ostomy surgery. Additional items queried current practice patterns related to use of convex pouching systems and the timing of their use. Data were collected from January 18 to February 8, 2021. RESULTS: Most respondents (n = 270; 90%) agreed with the following postoperative periods after ostomy surgery: immediate postoperative period (days 0-8); postoperative period (days 9-30); and transition phase (days 31-180). Most respondents (n = 274; 95%) indicated they would use a convex pouching system when clinically appropriate during the first 30 days following ostomy surgery and 79% (n = 228) indicated using a convex pouching system regardless of when the surgery was performed. Less than 1% (n = 2) indicated never using convexity within the first 30 days following stoma surgery, and only 3% (n = 8) indicated avoidance of convexity pouching systems in the immediate postoperative period. CONCLUSIONS: Findings indicate that use of convexity during the postoperative period is prevalent to provide a secure seal and predictable wear time.


Subject(s)
Ostomy , Surgical Stomas , Cross-Sectional Studies , Humans , Postoperative Period , Surveys and Questionnaires
3.
Neuromodulation ; 24(3): 556-565, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33296127

ABSTRACT

BACKGROUND AND OBJECTIVES: Multiple variables play a role in spinal cord stimulation (SCS) treatment outcomes, including patient anatomy, pain pattern, lead location, stimulation parameters, and so on. A wide range of stimulation parameters are considered safe and on-label, and as a result a growing number of new frequencies and frequency-combinations are being incorporated into standard practice. A standardized approach to therapy delivery may provide more consistent outcomes for more patients. The Vectors study evaluated whether there is significant sustained improvement in pain and functional outcomes when therapy is delivered using a standardized approach. MATERIALS AND METHODS: Vectors, a post-market, single-arm study evaluated the safety and efficacy of SCS with an implantable neurostimulator starting with 1 kHz stimulation, targeting the T9-T10 disc space following paresthesia mapping. Subjects with chronic intractable low back and leg pain (visual analogue scale [VAS] ≥ 50 mm) were enrolled. The primary endpoint was change in overall pain (VAS) at the three-month visit compared to baseline. Subjects were followed through 12 months. Secondary endpoints included changes in low back and leg pain, quality of life (European Quality of Life - Five Dimensions, EQ-5D-5L), disability (Oswestry Disability Index, ODI), individual subject goals, and subject satisfaction. RESULTS: There was a significant reduction in overall pain (VAS; 45.4 mm) through the three-month visit, which was sustained through 12 months. At 12 months, 79% of subjects had ≥50% improvement in at least one pain domain (overall, lowback or leg) with 85% of subjects reporting therapy satisfaction. There was a decrease in disability and an improvement in quality of life with 70% of subjects achieving a personal activity goal by the three-month visit. CONCLUSIONS: Long-term pain relief and improvement in quality of life and function were achieved when following a standardized workflow. CLINICAL TRIAL REGISTRATION: The Clinicaltrials.gov registration number for the study is NCT03345472.


Subject(s)
Chronic Pain , Spinal Cord Stimulation , Chronic Pain/therapy , Humans , Pain Measurement , Quality of Life , Spinal Cord , Treatment Outcome , Workflow
4.
Exp Neurol ; 273: 69-82, 2015 Nov.
Article in English | MEDLINE | ID: mdl-26231574

ABSTRACT

Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is used to treat movement disorders, including advanced Parkinson's disease (PD). The pathogenesis of PD and the therapeutic mechanisms of DBS are not well understood. Large animal models are essential for investigating the mechanisms of PD and DBS. The purpose of this study was to develop a novel sheep model of STN DBS and quantify the stimulation-evoked motor behaviors. To do so, a large sample of animals was chronically-implanted with commercial DBS systems. Neuroimaging and histology revealed that the DBS leads were implanted accurately relative to the neurosurgical plan and also precisely relative to the STN. It was also possible to repeatedly conduct controlled evaluations of stimulation-evoked motor behavior in the awake-state. The evoked motor responses depended on the neuroanatomical location of the electrode contact selected for stimulation, as contacts proximal to the STN evoked movements at significantly lower voltages. Tissue stimulation modeling demonstrated that selecting any of the contacts stimulated the STN, whereas selecting the relatively distal contacts often also stimulated thalamus but only the distal-most contact stimulated internal capsule. The types of evoked motor behaviors were specific to the stimulation frequency, as low but not high frequencies consistently evoked movements resembling human tremor or dyskinesia. Electromyography confirmed that the muscle activity underlying the tremor-like movements in the sheep was consistent with human tremor. Overall, this work establishes that the sheep is a viable a large-animal platform for controlled testing of STN DBS with objective motor outcomes. Moreover, the results support the hypothesis that exaggerated low-frequency activity within individual nodes of the motor network can drive symptoms of human movement disorders, including tremor and dyskinesia.


Subject(s)
Electric Stimulation/methods , Evoked Potentials, Motor/physiology , Motor Activity/physiology , Subthalamic Nucleus/physiology , Animals , Biophysics , Electrodes, Implanted , Electromyography , Female , Magnetic Resonance Imaging , Male , Sheep , Statistics as Topic , Statistics, Nonparametric
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