Aims:Intravenous (IV) dexmedetomidine with excellent sedative properties has been shown to reduce analgesic requirements during general anaesthesia. A study was conducted to assess the effects of IV dexmedetomidine on sensory, motor, haemodynamic parameters and sedation during subarachnoid block (SAB).Methods:A total of 50 patients undergoing infraumbilical and lower limb surgeries under SAB were selected. Group D received IV dexmedetomidine 0.5 mcg/kg bolus over 10 min prior to SAB, followed by an infusion of 0.5 mcg/kg/h for the duration of the surgery. Group C received similar volume of normal saline infusion. Time for the onset of sensory and motor blockade, cephalad level of analgesia and duration of analgesia were noted. Sedation scores using Ramsay Sedation Score (RSS) and haemodynamic parameters were assessed.Results:Demographic parameters, duration and type of surgery were comparable. Onset of sensory block was 66±44.14 s in Group D compared with 129.6±102.4 s in Group C. The time for two segment regression was 111.52±30.9 min in Group D and 53.6±18.22 min in Group C and duration of analgesia was 222.8±123.4 min in Group D and 138.36±21.62 min in Group C. The duration of motor blockade was prolonged in Group D compared with Group C. There was clinically and statistically significant decrease in heart rate and blood pressures in Group D. The mean intraoperative RSS was higher in Group D.Conclusion:Administration of IV dexmedetomidine during SAB hastens the onset of sensory block and prolongs the duration of sensory and motor block with satisfactory arousable sedation.
SEER sonorheometry demonstrates very strong correlation with ROTEM for determining clot stiffness and assessing fibrinogen and platelet contribution to clot strength in major spine surgery. An advantage of SEER sonorheometry is direct measurement of clot elasticity with no need to transform amplitude oscillation to elasticity.
Pain is a common source of suffering for seriously ill patients. Typical first-line treatments consist of lifestyle modifications and medication therapy, including opioids. However, medical treatments often fail or are associated with limiting systemic toxicities, and more targeted interventional approaches are necessary. Herein, we present options for minimally invasive techniques for the alleviation of pain in palliative patients from a head-to-toe approach, with a focus on emerging therapies and advanced techniques.Head and neck: image-guided interventions targeted to sympathetic ganglia of the head and neck, such as sphenopalatine ganglion (SPG) and stellate ganglion, have been shown to be effective for some forms of sympathetically-maintained and visceral pain. Interventions targeting branches of cranial nerves and upper cervical nerves, such as the glossopharyngeal nerve (GPN), are options in treating somatic head and face pain. Abdominal and Pelvic: sympathetic blocks, including celiac plexus, inferior hypogastric, and ganglion impar can relieve visceral abdominal and pelvic pain. Spine and somatic pain: fascial plane blocks of the chest and abdominal wall and myofascial trigger point injections can be used for somatic pain indications.Cementoplasties, such as kyphoplasty and vertebroplasty, are used for pain related to bony metastases and compression fractures. Tumor ablative techniques can also be used for lytic lesions of the bone. Spinal cord stimulation (SCS), intrathecal drug delivery systems (IDDS), and cordotomy have also been used successfully in patients requiring advanced options, such as those with significant spinal, ischemic, or visceral pain.
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