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Published on: May 26, 2010
Effect of penehyclidine hydrochloride on heart rate variability in hysteroscopy
Xiao-Bo Liu1, Shu Pan1, Xi-Ge Yang1
1Department of Anesthesiology, First Hospital of Jilin University, Changchun, Jilin 130021, P.R. China.
Insights
Penehyclidine hydrochloride at 0.5 mg stabilized heart rate variability during hysteroscopy. A higher dose of 1.0 mg maintained heart rate but was less effective at balancing autonomic nervous activity.
Area of Science:
- Anesthesiology
- Cardiovascular Physiology
Background:
- Hysteroscopy necessitates careful anesthetic management to maintain hemodynamic stability.
- Understanding the impact of anesthetic agents on heart rate (HR) and heart rate variability (HRV) is crucial for patient safety.
Purpose of the Study:
- To evaluate the effects of different doses of penehyclidine hydrochloride on HR and HRV during hysteroscopy.
- To compare the autonomic nervous system modulation under varying penehyclidine doses and anesthesia techniques.
Main Methods:
- 180 patients (ASA grade I-II) were randomized into three groups: 0.5 mg penehyclidine, 1.0 mg penehyclidine, or control (saddle + IV anesthesia).
- HR and HRV parameters (TP, LF, HF, LF/HF) were recorded at four time points: pre-anesthesia, post-anesthesia, start of surgery, and end of surgery.
- Statistical analysis compared HR and HRV changes across groups and time points.
Main Results:
- Heart rate decreased in controls but remained stable in penehyclidine groups. Group II (1.0 mg) showed higher HR than Group I (0.5 mg) at T2.
- Total power (TP) was higher in Group II compared to Group I at T2.
- Low-frequency (LF) and high-frequency (HF) power were lower in Group I than controls, but higher in Group II than Group I at T2. HF increased in controls but not significantly within penehyclidine groups.
Conclusions:
- 0.5 mg penehyclidine stabilized HRV without altering autonomic HR modulation during hysteroscopy.
- 1.0 mg penehyclidine may be more effective in maintaining HR but less effective in balancing sympathetic and parasympathetic activity compared to 0.5 mg.
Abstract:
In order to evaluate the effect of different doses of penehyclidine hydrochloride (penehyclidine) on heart rate (HR) and HR variability (HRV) in hysteroscopy, 180 patients (American Society of Anesthesiologists grade I-II) were randomized equally to three groups: 0.5 mg penehyclidine and intravenous anesthesia (group I), 1.0 mg penehyclidine and intravenous anesthesia (group II) and saddle anesthesia combined with intravenous anesthesia (control group). HR and HRV, including total power (TP), low-frequency power (LF), high-frequency power (HF) and the LF to HF ratio (LF/HF), were recorded prior and subsequent to the induction of anesthesia (T0 and T1, respectively), following the start of surgery (T2) and following completion of surgery (T3). HR was lower at T2 than at T0 in the control patients, but no differences were observed in groups I and II. The HR at T2 was increased in group II compared with that in group I. TP in group II was significantly higher compared with that in group I at T2. At T1 and at T2, the LF and HF values were lower in group I than those in the controls. Patients in group II also had higher LF and HF at T2 than patients in group I. The HF was higher at T2 than that at T0 in the controls; however, the HF and LF did not change significantly within groups I and II. No significant differences were observed in the LF/HF ratio among the three groups. At a dose of 0.5 mg, penehyclidine stabilized HRV and did not alter the autonomic nervous modulation of HR. A penehyclidine dose of 1.0 mg may be superior to a dose of 0.5 mg in maintaining HR, but is less effective at balancing sympathetic and parasympathetic activity.
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